WO2024124747A1 - 一种烹调设备 - Google Patents
一种烹调设备 Download PDFInfo
- Publication number
- WO2024124747A1 WO2024124747A1 PCT/CN2023/085510 CN2023085510W WO2024124747A1 WO 2024124747 A1 WO2024124747 A1 WO 2024124747A1 CN 2023085510 W CN2023085510 W CN 2023085510W WO 2024124747 A1 WO2024124747 A1 WO 2024124747A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- liquid
- feeding
- cooking
- cooking device
- hole
- Prior art date
Links
- 238000010411 cooking Methods 0.000 title claims abstract description 73
- 239000007788 liquid Substances 0.000 claims abstract description 143
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims abstract description 40
- 239000007787 solid Substances 0.000 claims abstract description 33
- 239000000463 material Substances 0.000 claims description 86
- 230000007246 mechanism Effects 0.000 claims description 83
- 238000012546 transfer Methods 0.000 claims description 31
- 230000005540 biological transmission Effects 0.000 claims description 30
- 238000001514 detection method Methods 0.000 claims description 23
- 238000004891 communication Methods 0.000 claims description 7
- 239000011343 solid material Substances 0.000 claims 1
- 235000011194 food seasoning agent Nutrition 0.000 abstract description 21
- 235000013305 food Nutrition 0.000 abstract description 13
- 238000000034 method Methods 0.000 abstract description 13
- 230000008569 process Effects 0.000 abstract description 11
- 238000012545 processing Methods 0.000 abstract description 6
- 240000002234 Allium sativum Species 0.000 abstract description 5
- 235000006886 Zingiber officinale Nutrition 0.000 abstract description 5
- 235000004611 garlic Nutrition 0.000 abstract description 5
- 235000008397 ginger Nutrition 0.000 abstract description 5
- 235000019198 oils Nutrition 0.000 abstract description 5
- 235000013555 soy sauce Nutrition 0.000 abstract description 5
- 235000021419 vinegar Nutrition 0.000 abstract description 5
- 239000000052 vinegar Substances 0.000 abstract description 5
- 244000291564 Allium cepa Species 0.000 abstract 1
- 244000273928 Zingiber officinale Species 0.000 abstract 1
- 235000012041 food component Nutrition 0.000 abstract 1
- 239000005417 food ingredient Substances 0.000 abstract 1
- 238000007789 sealing Methods 0.000 description 25
- 101100441413 Caenorhabditis elegans cup-15 gene Proteins 0.000 description 14
- 238000003825 pressing Methods 0.000 description 11
- 230000009471 action Effects 0.000 description 10
- 238000010438 heat treatment Methods 0.000 description 10
- 239000003921 oil Substances 0.000 description 10
- 238000003756 stirring Methods 0.000 description 10
- 239000004278 EU approved seasoning Substances 0.000 description 6
- 238000004140 cleaning Methods 0.000 description 5
- 241000234282 Allium Species 0.000 description 4
- 235000002732 Allium cepa var. cepa Nutrition 0.000 description 4
- 241000234314 Zingiber Species 0.000 description 4
- 239000004615 ingredient Substances 0.000 description 4
- 230000009977 dual effect Effects 0.000 description 3
- 101100233916 Saccharomyces cerevisiae (strain ATCC 204508 / S288c) KAR5 gene Proteins 0.000 description 2
- 238000010586 diagram Methods 0.000 description 2
- 239000000428 dust Substances 0.000 description 2
- 230000005611 electricity Effects 0.000 description 2
- 238000009434 installation Methods 0.000 description 2
- 238000002955 isolation Methods 0.000 description 2
- 230000007774 longterm Effects 0.000 description 2
- 238000012423 maintenance Methods 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 241000894006 Bacteria Species 0.000 description 1
- 101001121408 Homo sapiens L-amino-acid oxidase Proteins 0.000 description 1
- 101000827703 Homo sapiens Polyphosphoinositide phosphatase Proteins 0.000 description 1
- 102100026388 L-amino-acid oxidase Human genes 0.000 description 1
- 102100023591 Polyphosphoinositide phosphatase Human genes 0.000 description 1
- 101100012902 Saccharomyces cerevisiae (strain ATCC 204508 / S288c) FIG2 gene Proteins 0.000 description 1
- 230000002159 abnormal effect Effects 0.000 description 1
- 238000004026 adhesive bonding Methods 0.000 description 1
- 230000032683 aging Effects 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000008859 change Effects 0.000 description 1
- 238000009833 condensation Methods 0.000 description 1
- 230000005494 condensation Effects 0.000 description 1
- 238000007599 discharging Methods 0.000 description 1
- 238000001035 drying Methods 0.000 description 1
- 230000003670 easy-to-clean Effects 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000005485 electric heating Methods 0.000 description 1
- 230000005674 electromagnetic induction Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 235000013372 meat Nutrition 0.000 description 1
- LPUQAYUQRXPFSQ-DFWYDOINSA-M monosodium L-glutamate Chemical compound [Na+].[O-]C(=O)[C@@H](N)CCC(O)=O LPUQAYUQRXPFSQ-DFWYDOINSA-M 0.000 description 1
- 235000013923 monosodium glutamate Nutrition 0.000 description 1
- 239000004223 monosodium glutamate Substances 0.000 description 1
- 229920001296 polysiloxane Polymers 0.000 description 1
- 230000001681 protective effect Effects 0.000 description 1
- 230000004044 response Effects 0.000 description 1
- 230000002441 reversible effect Effects 0.000 description 1
- 238000010025 steaming Methods 0.000 description 1
- 238000003860 storage Methods 0.000 description 1
- 238000005406 washing Methods 0.000 description 1
Classifications
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47J—KITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
- A47J43/00—Implements for preparing or holding food, not provided for in other groups of this subclass
- A47J43/04—Machines for domestic use not covered elsewhere, e.g. for grinding, mixing, stirring, kneading, emulsifying, whipping or beating foodstuffs, e.g. power-driven
- A47J43/046—Machines for domestic use not covered elsewhere, e.g. for grinding, mixing, stirring, kneading, emulsifying, whipping or beating foodstuffs, e.g. power-driven with tools driven from the bottom side
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47J—KITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
- A47J43/00—Implements for preparing or holding food, not provided for in other groups of this subclass
- A47J43/04—Machines for domestic use not covered elsewhere, e.g. for grinding, mixing, stirring, kneading, emulsifying, whipping or beating foodstuffs, e.g. power-driven
- A47J43/07—Parts or details, e.g. mixing tools, whipping tools
Definitions
- the invention relates to the technical field of kitchen appliances, and in particular to a cooking device.
- Food processing equipment in the prior art such as the food processor disclosed in the invention application with patent application number CN201610257441.9, generally processes ingredients by stirring or heating them for cooking.
- ingredients by stirring or heating them for cooking.
- the user needs to add them manually, which involves too much manual operation and is inconvenient.
- the user experience is poor and needs to be improved.
- the present invention provides a cooking device for solving the problem in the related art that when food processing equipment is cooking ingredients, if water, oil or seasoning needs to be added, the user needs to add them manually, resulting in excessive manual intervention and inconvenience.
- the present invention proposes a cooking device, including a cooking machine and a feeder, wherein the cooking machine is provided with a vessel structure and a cooking function structure, and the feeder is provided with a liquid feeding system and a solid feeding system, wherein the liquid feeding system puts solid into the vessel structure, and the solid feeding system puts liquid into the vessel structure.
- the feeder includes a base and a cover body disposed on the base;
- the cooking machine comprises a main machine, the vessel structure is a cup body, and the cup body is arranged on the main machine;
- the cover body can cover the top of the cup body.
- the solid feeding system includes a driving mechanism and a feeding turntable
- the feeding turntable is rotatably connected to the inside of the cover body, at least one material bin is arranged on the feeding turntable, and a feeding port is opened at the bottom of the cover body.
- the feeding turntable rotates to a preset position, the material bin is connected to the feeding port;
- the driving mechanism is arranged on the machine base, and the driving mechanism controls the rotation of the feeding turntable.
- the driving mechanism includes a first motor and a transmission gear, the first motor is arranged on the machine base, and the first motor is connected to and controls the rotation of the transmission gear;
- An outer gear ring is arranged on the outer periphery of the feeding turntable, the feeding turntable rotates synchronously with the outer gear ring, and the outer gear ring is meshed with the transmission gear.
- the first motor and the transmission gear are both located inside the base, the base is provided with a first through hole, the cover body is provided with a second through hole, the first through hole is aligned with the second through hole, and the transmission gear meshes with the outer gear ring after passing through the first through hole and the second through hole.
- the driving mechanism also includes a gear box, the transmission gear is located inside the gear box, the motor shaft of the first motor passes through the gear box and is connected to the transmission gear, the gear box is provided with a port for the transmission gear to pass through, and the port is aligned with the first through hole.
- a drainage hole is provided in the gear box, a water guide channel connected to the outside is provided on the machine base, and the drainage hole is connected to the water guide channel.
- a vertical exhaust hole is provided on the cover body, and a measuring cup is detachably provided on the exhaust hole.
- the exhaust hole has a cylindrical hole wall, and at least one clamping device is detachably provided on the hole wall, and the clamping device is used to clamp the measuring cup.
- the cover body is detachably arranged on the base, and a locking mechanism is arranged on the base, and the locking mechanism is used to lock or unlock the cover body.
- the liquid supply system includes at least one material barrel and a liquid delivery mechanism disposed on the machine base;
- the cover body is provided with a liquid feeding port
- the material barrel, the liquid conveying mechanism and the liquid feeding port are connected in sequence.
- the liquid delivery mechanism includes a selection device and a first pump body both disposed on the base;
- the material barrel, the selection device, the first pump body, and the liquid feeding port are connected in sequence.
- the selection device has a material cavity inside, the selection device has a material discharge port and at least one material feed port, and the material feed port and the material discharge port are both connected to the material cavity;
- the feed port of the selection device is in communication with the material barrel
- the discharge port of the selection device is communicated with the pump inlet of the first pump body.
- the liquid conveying mechanism further comprises a transfer waterway plate arranged on the machine base, the transfer waterway plate is provided with liquid flow channels having the same number as the material barrels, and each liquid flow channel is provided with a liquid inlet and a liquid outlet;
- the material barrels are connected to the liquid inlets in a one-to-one correspondence;
- the liquid outlets are the same in number as the feed outlets of the selection device and are connected one-to-one.
- a gas flow channel is provided on the transfer waterway plate, and an air inlet and an air outlet are provided at both ends of the gas flow channel;
- the gas outlet is communicated with the material cavity
- An air valve is arranged on the machine base, and the air valve has an air inlet end and an air outlet end, the air inlet end is connected with the outside, and the air outlet end is connected with the air inlet.
- the feed ports are arranged in a circumference, and a one-way valve is provided in each of the feed ports;
- a selection rod is rotatably connected in the material chamber of the selection device, and the selection rod is used to open the one-way valve;
- a second motor is disposed at the bottom of the selection lever, and the second motor is used to control the rotation of the selection lever.
- an air valve is provided on the machine base, and the air valve has an air inlet end and an air outlet end, the air inlet end is connected to the outside, and the air outlet end is connected to the material cavity.
- the liquid supply system includes at least one material bottle and a second pump body both disposed on the machine base;
- the material bottle, the second pump body and the liquid feeding port are connected in sequence.
- the host is provided with a cup body groove, and the cup body groove is used to place the cup body;
- the cup body groove is provided with a locking device and/or a micro switch structure, wherein the locking device is used to lock the cover body, and the micro switch structure is used to detect whether the cover body is covered in place.
- the locking device when a locking device is provided on the cup body groove, the locking device comprises a support seat, a locking member and a first driving structure;
- the support seat is arranged in the main unit, the locking member is slidably connected to the support seat, and the locking member is used to lock the cover body;
- the first driving structure is disposed on the supporting seat, and the first driving structure controls the locking member to perform reciprocating motion.
- the host is provided with a rotating panel structure, which includes a panel and a second driving structure, one end of the panel is rotatably connected to the host, and the second driving structure is arranged on the host, and the second driving structure controls the rotation of the panel.
- the host is provided with a wire hanging buckle, and a buckle detection structure is provided in the wire hanging buckle;
- the machine base is provided with a wire hanging groove, and the wire hanging groove can be buckled into the wire hanging buckle and press the buckling detection structure.
- the present invention provides a feeder to feed materials into the cooking machine.
- the liquid feeding system provided in the feeder can be used to feed liquids such as water, oil, soy sauce, vinegar, etc.
- the solid feeding system provided in the feeder can be used to feed solids such as onions, ginger, garlic, etc. Therefore, during the cooking process, the feeder is used in conjunction with the cooking machine. When seasonings need to be added, the feeder is used to feed the materials, thereby reducing manual operation and improving convenience and user experience.
- the invention solves the problem in the related art that when food processing equipment is cooking food, if water, oil or seasoning needs to be added, the user needs to add them manually, which leads to excessive manual participation and inconvenience.
- FIG1 is a perspective view of a cooking device according to an embodiment of the present invention.
- FIG2 is an exploded view of a cooking device according to an embodiment of the present invention.
- FIG3 is a cross-sectional view of a cooking device according to an embodiment of the present invention.
- FIG4 is a cross-sectional view of a cooking device according to an embodiment of the present invention.
- FIG5 is a cross-sectional view of a feeder in one embodiment of the present invention.
- FIG6 is an exploded view of a feeder in one embodiment of the present invention.
- FIG7 is a top view of a feeder in one embodiment of the present invention.
- FIG8 is an exploded view of the structure of the base part according to an embodiment of the present invention.
- FIG9 is a perspective view of a driving mechanism in one embodiment of the present invention.
- FIG10 is an exploded view of a driving mechanism in one embodiment of the present invention.
- FIG11 is an exploded view of a cover assembly according to an embodiment of the present invention.
- FIG12 is an exploded view of a partial structure of a feeder in one embodiment of the present invention.
- FIG13 is an exploded view of a clamping device according to an embodiment of the present invention.
- FIG14 is a cross-sectional view of a portion of the structure of a cover assembly according to an embodiment of the present invention.
- FIG15 is an exploded view of a locking mechanism in one embodiment of the present invention.
- 16 is a perspective view of the internal structure of a feeder in one embodiment of the present invention from a bottom-up perspective;
- 17 is a perspective view of the internal structure of a feeder in one embodiment of the present invention.
- FIG19 is an exploded view of a partial structure of a feeder in one embodiment of the present invention.
- FIG20 is a three-dimensional view of a transfer waterway plate in a top view according to an embodiment of the present invention.
- FIG21 is a perspective view of a transfer waterway plate in an embodiment of the present invention from a bottom-up perspective;
- FIG22 is a top view of the internal structure of the transfer waterway plate in one embodiment of the present invention.
- FIG23 is an exploded view of a selection device according to an embodiment of the present invention.
- FIG24 is a perspective view of a push rod in one embodiment of the present invention.
- FIG25 is a cross-sectional view of a one-way valve in one embodiment of the present invention.
- FIG26 is a cross-sectional view of a feeder in an exploded state according to an embodiment of the present invention.
- FIG27 is an exploded view of a check valve according to an embodiment of the present invention.
- FIG28 is a perspective view of a host computer according to an embodiment of the present invention.
- FIG29 is a perspective view of a locking device according to an embodiment of the present invention.
- FIG30 is an exploded view of a locking device according to an embodiment of the present invention.
- FIG31 is a perspective view of a micro switch structure according to an embodiment of the present invention.
- FIG32 is an exploded view of a micro switch structure according to an embodiment of the present invention.
- FIG33 is a perspective view of a cooking machine according to an embodiment of the present invention.
- FIG34 is an exploded view of a buckle detection structure according to an embodiment of the present invention.
- FIG35 is a schematic diagram of the action process of the fastening detection structure in one embodiment of the present invention.
- FIG36 is a perspective view of a rotating panel structure according to an embodiment of the present invention.
- FIG37 is a perspective view of the internal structure of a dual-output motor according to an embodiment of the present invention.
- FIG. 38 is a schematic diagram of a cooking device according to an embodiment of the present invention.
- the reference numerals are as follows: 1-cover assembly; 11-cover body; 111-exhaust hole; 112-hole wall; 1121-positioning groove; 1122-positioning column; 1123-convex buckle; 113-clamping boss; 1131-slot; 114-limiting boss; 115-feeding port; 116-liquid feeding port; 117-second through hole; 12-feeding turntable; 121-bin; 122-closing plate; 13-outer gear ring; 14-clamping device; 141-clamping nail; 142-pressing member; 1421-buckle groove; 15-measuring cup; 151-nail groove; 16-first magnet; 17-liquid outlet; 2-barrel; 21-check valve; 211-first spring; 21 2-movable rod; 2121-pressing end; 2122-sealing end; 213-valve seat; 2131-center hole; 2132-spring groove; 3-adapter waterway plate; 31-liquid flow channel; 311-liquid inlet; 312-liquid outlet
- An embodiment of the present invention is a cooking device, including a cooking machine and a feeder.
- the cooking machine is provided with a vessel structure and a cooking function structure.
- the feeder is provided with a liquid feeding system and a solid feeding system. The liquid feeding system puts solid into the vessel structure, and the solid feeding system puts liquid into the vessel structure.
- the container structure is used to hold food materials
- the cooking functional structure may be, but is not limited to, a functional structure used for heating, stirring, crushing, stir-frying, etc., to process and cook the food materials in the container structure.
- a feeder is provided to feed materials into the cooking machine.
- the liquid feeding system provided in the feeder can be used to feed liquids such as water, oil, soy sauce, vinegar, etc.
- the solid feeding system provided in the feeder can be used to feed solids such as onions, ginger, garlic, etc. Therefore, during the cooking process, the feeder is used in conjunction with the cooking machine. When seasonings need to be added, the feeder is used to feed the materials, thereby reducing manual operation and improving convenience and user experience.
- the invention solves the problem in the related art that when food processing equipment is cooking food, if water, oil or seasoning needs to be added, the user needs to add them manually, which leads to excessive manual participation and inconvenience.
- the feeder includes a base 9 and a cover assembly 1, wherein the cover assembly 1 includes a cover body 11, and the cover body 11 is disposed on the base 9.
- the cooking machine includes a main machine 01, and the vessel structure is a cup body 02, and the cup body 02 is disposed on the main machine 01.
- the cover body 11 can cover the top of the cup body 02.
- the liquid feeding system and/or the solid feeding system can be connected to the cover body 11 for discharging.
- space can be set in the cover body 11 for storing solids.
- the cover body 11 can be used as a liquid feeding end and a solid storage end and feeding end, thereby realizing the dual-type feeding function of the cover body 11.
- the feeder can selectively add solid and/or liquid seasonings into the container structure through the cover body 11, thereby improving the degree of automation of the equipment. Due to the solid/liquid feeding function, the feeder can be applied to more recipes to meet the different taste requirements of customers.
- the solid feeding system includes a driving mechanism 91 and a feeding turntable 12 .
- the feeding turntable 12 is rotatably connected to the inside of the cover body 11. At least one silo 121 is arranged on the feeding turntable 12. A feeding port 115 is provided at the bottom of the cover body 11. When the feeding turntable 12 rotates to a preset position, the silo 121 is connected to the feeding port 115.
- the driving mechanism 91 is arranged on the machine base 9, and the driving mechanism 91 controls the rotation of the feeding turntable 12.
- the silo 121 is used to store solids, such as onions, ginger, garlic, monosodium glutamate, etc.
- the driving mechanism 91 controls the silo 121 to rotate to a preset position, a certain silo 121 is aligned with the feeding port 115, and the solid in the silo 121 leaks out from the feeding port 115 to the outside, thereby realizing the solid feeding.
- the drive mechanism 91 is arranged on the machine base 9, which can ensure water and electricity isolation to a large extent. During the cooking process such as steaming and frying, a large amount of water vapor will be generated inside the vessel structure, and the water vapor will rise into the cover body 11. If the drive mechanism 91 is arranged on the cover body 11, the electrical components such as the motor in the drive mechanism 91 will be damaged by moisture, and the safety will be affected.
- the drive mechanism 91 is arranged on the machine base 9, and the drive mechanism 91 can be separated from the cover body 11, as shown in Figures 6 and 12, reducing the possibility of water vapor entering the drive mechanism 91 and avoiding the problem of electrical components being damaged by moisture.
- the driving mechanism 91 can facilitate the electrical connection of the driving mechanism 91. If the driving mechanism 91 is arranged on the cover body 11, the driving mechanism 91 and other electrical components need to be electrically connected by wires, which makes it impossible to remove the cover body 11 from the machine base 9. At the same time, the leads are affected by water vapor and there will be certain safety hazards. Therefore, the driving mechanism 91 is arranged on the machine base 9. While ensuring the control of the rotation of the feeding turntable 12, it is convenient for the driving mechanism 91 to be electrically connected to the remaining electrical components in the machine base 9, and it is convenient to centrally control the electrical components in the liquid conveying mechanism.
- the driving mechanism 91 includes a first motor 911 and a transmission gear 912.
- the first motor 911 is arranged on the machine base 9.
- the first motor 911 is connected to and controls the transmission gear 912 to rotate.
- An outer gear ring 13 is arranged on the outer periphery of the feeding turntable 12.
- the feeding turntable 12 rotates synchronously with the outer gear ring 13, and the outer gear ring 13 is meshed with the transmission gear 912.
- the first motor 911 controls the transmission gear 912 to rotate, thereby driving the outer gear ring 13 to rotate, and the feeding turntable 12 rotates with the outer gear ring 13.
- the transmission gear 912 is rotated.
- the amount can be one or more intermeshing.
- the first motor 911 and the transmission gear 912 are both located inside the base 9, the base 9 is provided with a first through hole 94, the cover 11 is provided with a second through hole 117, the first through hole 94 is aligned with the second through hole 117, and the transmission gear 912 is meshed with the outer gear ring 13 after passing through the first through hole 94 and the second through hole 117.
- the first through hole 94 and the second through hole 117 are provided to meet the meshing transmission of the transmission gear 912 and the outer gear ring 13 without hindering the cover 11 from being removed from the base 9.
- the driving mechanism 91 further includes a gear box 913, a transmission gear 912 is located inside the gear box 913, a motor shaft of the first motor 911 penetrates the gear box 913 and is connected to the transmission gear 912, and the gear box 913 is provided with a port for the transmission gear 912 to pass through, and the port is aligned with the first through hole 94.
- water vapor can only enter the gear box 913 without diffusing into the base 9, which further ensures water and electricity isolation and effectively prevents electrical components from being damp and damaged.
- a port sealing ring 914 is provided between the first through hole 94 on the base 9 and the port of the gear box 913 for sealing to prevent water vapor from overflowing into the base 9 through the gap between the first through hole 94 and the port of the gear box 913 .
- a shaft seal ring 915 may be provided between the motor shaft of the first motor 911 and the shaft hole on the gear box 913 for sealing. This can prevent water vapor in the gear box 913 from overflowing through the gap between the shaft hole and the motor shaft of the first motor 911 and affecting the first motor 911 and other electrical components, thereby effectively preventing electrical components from getting damp and being damaged.
- the gear box 913 includes an upper box cover and a lower box body that cover each other, and a box sealing ring 916 is provided between the upper box cover and the lower box body for sealing, so as to facilitate the assembly of the transmission gear 912 while improving the sealing performance of the gear box 913 .
- a drain hole 9131 is provided in the gear box 913, and a water guide channel 921 connected to the outside is provided on the base 9, and the drain hole 9131 is connected to the water guide channel 921. Since the water vapor entering the gear box 913 will form liquid water after condensation and accumulate in the gear box 913, the drain hole 9131 can be provided to guide the accumulated water in the gear box 913 to the outside for discharge.
- the top of the base 9 is a drive box 92.
- the drive mechanism 91 is arranged inside the drive box 92, and the water guide channel 921 is arranged in the drive box 92.
- the water guide channel 921 is connected to the bottom of the drive box 92 to be connected to the outside world.
- the drive box 92 and the rest of the base 9 are rotatably connected.
- the drive box 92 and the rest of the base 9 are rotatably connected by setting a hinge 922.
- the drive box 92 can be flipped upward.
- the cover body 11 and the drive box 92 can be flipped up at the same time, without the user holding or finding a space on the kitchen counter to place the cover body 11.
- the hinge 922 keeps the position of the cover body 11, which can free both hands and facilitate cleaning of the gap.
- a first magnet 16 is provided in the cover 11.
- the first magnet 16 rotates synchronously with the outer gear ring 13.
- a sensing device 95 is provided in the base 9. The sensing device 95 is used to sense the first magnet 16 and detect the origin position, thereby detecting the rotation state of the feeding turntable 12.
- the sensing device 95 can be a PCB board with a Hall sensor, and the Hall sensor can sense the magnet and generate an electrical signal to send to the feeder.
- the first magnet 16 can be arranged on the feeding turntable 12 or the outer gear ring 13 by clamping, gluing, etc., and can rotate synchronously with the outer gear ring 13 and the feeding turntable 12.
- a magnet groove is provided on the outer gear ring 13, and the first magnet 16 is placed in the magnet groove, and the first magnet 16 rotates with the outer gear ring 13.
- At least one closing plate 122 is provided on the feeding turntable 12.
- the closing plate 122 covers the feeding port 115.
- the closing plate 122 and the silo 121 are arranged in a circle.
- three silos 121 and one closing plate 122 are provided on the feeding turntable 12.
- the closing plate 122 and the silo 121 can be arranged at intervals, so that more than two silos 121 can discharge materials independently.
- a vertical exhaust hole 111 is provided on the cover body 11, and a measuring cup 15 is detachably provided on the exhaust hole 111.
- the exhaust hole 111 can be used to exhaust the water vapor generated during the cooking process, and is also used to fix the measuring cup 15.
- the measuring cup 15 can facilitate the user to measure the volume of liquid or solid, and to facilitate the transfer and pouring of liquid or solid. When the measuring cup 15 is inserted into the exhaust hole 111, it has the function of shielding dust.
- the measuring cup 15 and the exhaust hole 111 may be interference fit, and the measuring cup 15 may be linearly inserted into the exhaust hole 111; alternatively, the measuring cup 15 and the exhaust hole 111 may be connected by a rotating buckle, etc.
- the measuring cup 15 and the exhaust hole 111 are prone to aging, deformation or wear, and the measuring cup 15 becomes loose, affecting the use.
- the cover body 11 and the measuring cup 15 need to be replaced as a whole, resulting in high maintenance costs.
- the exhaust hole 111 has a cylindrical hole wall 112, and at least one clamping device 14 is detachably provided on the hole wall 112, and the clamping device 14 is used to clamp the measuring cup 15. In this way, after long-term use, the measuring cup 15 and the cover body 11 become loose.
- a plurality of positioning grooves 1121 are provided on the hole wall 112, and a positioning column 1122 is provided in the positioning groove 1121.
- the clamping device 14 includes a clamping nail 141 and a pressing member 142.
- the clamping nail 141 and the pressing member 142 are both passed through the positioning column 1122.
- the pressing member 142 is pressed on the top of the clamping nail 141, and the pressing member 142 is detachably connected to the groove wall of the positioning groove 1121.
- a nail groove 151 is concavely provided on the outer side surface of the measuring cup 15.
- the clamping nail 141 protrudes toward the nail groove 151 and is interference fit with the nail groove 151.
- the clamping nail 141 and the pressing member 142 can be made of silicone.
- the clamping member 142 is detachably connected to the groove wall of the positioning groove 1121.
- buckle grooves 1421 are opened on both sides of the clamping member 142, and protruding buckles 1123 are arranged on the groove walls at both ends of the positioning groove 1121.
- the protruding buckles 1123 are buckled into the buckle grooves 1421 to achieve the limiting of the clamping member 142.
- the cover 11 is detachably arranged on the base 9, and a locking mechanism 93 is arranged on the base 9, and the locking mechanism 93 is used to lock or unlock the cover 11. It is convenient for the user to remove the cover 11 for cleaning.
- the cover 11 is provided with a holding boss 113, which is inserted into the base 9.
- the base 9 is provided with a locking mechanism 93, which is used to lock the holding boss 113.
- a through hole can be provided on the base 9 for the holding boss 113 to be inserted.
- the locking mechanism 93 can be controlled to unlock the holding boss 113, and the cover 11 can be removed for washing separately, or put into a dishwasher for cleaning.
- the disassembly is simple and quick, and it is easy to clean, which improves the user experience.
- the locking mechanism 93 can be a latch type or an elastic buckle type, etc., which can lock and unlock the holding boss 113.
- the locking mechanism 93 can be a latch type, and the locking mechanism 93 includes a pin seat 931, a latch 932 and a dial button 933.
- the pin seat 931 is fixed on the base 9, and the latch 932 is slidably connected to the base 9.
- the holding boss 113 is provided with a slot 1131 for the latch 932 to pass through.
- a notch 9321 is provided on the side of the latch 932 facing the retaining boss 113 for the retaining boss 113 to pass through.
- a stopper 9322 is provided next to the notch 9321.
- the pin seat 931 is provided with a slide groove 9311, and the latch pin 932 is inserted in the slide groove 9311 and moves along the slide groove 9311.
- the slide groove 9311 can be in an L-shaped tube shape, and the shape of the latch pin 932 fits the shape of the slide groove 9311.
- a guide handle 9323 is protruded from the latch pin 932, and an opening is provided on the pin seat 931, from which the guide handle 9323 protrudes.
- the guide handle 9323 is used as a force application point of an external force on the latch pin 932 to move the latch pin 932.
- the base 9 is provided with a strip hole, the guide handle 9323 passes through the strip hole and moves in the strip hole, and a dial button 933 is sleeved on the guide handle 9323.
- the dial button 933 can increase the contact area, and the user feels better when dialing the dial button 933.
- the dial button 933 can cover the strip hole to prevent dust from entering the strip hole.
- the shape of the side of the base 9 close to the cover 11 matches the shape of the cover 11 .
- the cover 11 has at least one limiting boss 114 extending outwardly toward the base 9.
- a limiting groove is correspondingly provided on the side of the base 9 facing the cover 11, and the limiting boss 114 is inserted into the limiting groove.
- the limiting boss 114 can be inserted into the limiting groove, and then the clamping boss 113 is inserted, which is convenient for positioning first and then locking, thereby improving the installation accuracy.
- the number of limiting bosses 114 is two, and the two limiting bosses 114 and the clamping boss 113 form a triangular structure, which is more stable.
- the cover body 11 includes an upper cover and a main cover that cover the upper and lower parts.
- the upper cover and the main cover can be covered by a rotating buckle.
- the upper cover and the main cover are designed to be detachable structures, which is convenient for comprehensive cleaning of the cover body.
- the liquid supply system includes at least one material barrel 2 and a liquid delivery mechanism disposed on the machine base 9.
- a liquid supply port 116 is disposed on the cover body 11. The material barrel 2, the liquid delivery mechanism and the liquid supply port 116 are connected in sequence.
- the material barrel 2 is used to store liquids, such as water, oil, soy sauce, vinegar, etc.
- the liquid conveying mechanism is used to convey the liquid in the barrel 2 to the liquid supply port 116 of the cover body 11 .
- the liquid When the liquid is fed, the liquid is fed to the liquid feeding port 116 through the liquid delivery mechanism of the material barrel 2 and then discharged to the outside, thereby realizing the liquid feeding.
- the liquid conveying mechanism includes a selection device 4 and a first pump body 6, both of which are arranged on the machine base 9.
- the barrel 2, the selection device 4, the first pump body 6, and the liquid supply port 116 are connected in sequence.
- the barrel 2 and the selection device 4 can be directly or indirectly connected, and the indirect connection method is, for example, to set a transfer waterway plate 3 or a water pipe between the two.
- the selection device 4 is used to select whether to discharge the material and select the designated barrel 2 to discharge the material.
- the first pump body 6 is used to provide power to pump the liquid to the liquid supply port 116.
- the selection device 4 has a material cavity 413 inside, and the selection device 4 has a discharge port 412 and at least one feed port 411, and the feed port 411 and the discharge port 412 are both connected to the material cavity 413.
- the feed port 411 of the selection device 4 is connected to the material barrel 2, and the discharge port 412 of the selection device 4 is connected to the pump inlet 61 of the first pump body 6.
- a pump inlet pipeline 72 can be set between the discharge port 412 and the pump inlet 61 for connection. Pass.
- the liquid conveying mechanism also includes a transfer waterway plate 3 arranged on the base 9, and the transfer waterway plate 3 is provided with the same number of liquid flow channels 31 as the barrel 2, and each liquid flow channel 31 is provided with a liquid inlet 311 and a liquid outlet 312.
- the barrel 2 is connected to the liquid inlet 311 in a one-to-one correspondence.
- the liquid outlet 312 is the same number as the feed inlet 411 of the selection device 4 and is connected in a one-to-one correspondence.
- the liquid in the barrel 2 is discharged to the outside through the transfer waterway plate 3, the selection device 4, the first pump body 6, and the liquid feeding port 116 in sequence.
- the placement position of the material barrel 2 does not need to be consistent with the direction of the feed port 411 of the selection device 4, and the transfer waterway plate 3 can be efficiently assembled, and the connection error of the liquid outlet 312 can be prevented.
- multiple material barrels 2 are placed in a row, so the liquid inlet 311 on the top of the transfer waterway plate 3 is correspondingly arranged in a row, as shown in Figure 20, and the liquid outlet 312 of the transfer waterway plate 3 can be changed according to the position of the feed port 411 of the selection device 4, so as to facilitate the regular placement of the material barrel 2 and cooperate with the selection device 4 to select the discharge.
- the liquid inlet 311 on the transfer waterway plate 3 can be a protruding joint shape, please refer to Figure 21 and Figure 16 for comprehensive reference, the liquid inlet 311 is set on the material liquid pipeline 74 to communicate with the material barrel 2, and can be connected to the material barrel 2 at a longer distance.
- the material barrel 2 at a longer distance has a larger volume and can be used to store liquids with a larger amount of water, and distinguished from other material barrels 2.
- the material barrel 2 includes a seasoning barrel and a water barrel, as shown in FIG17 .
- the left side of FIG17 is a seasoning barrel, and there are five seasoning barrels arranged side by side with a small volume.
- the right side of FIG17 is a water barrel, and there is one water barrel with a large volume.
- the liquid inlet 311 of the transfer waterway plate 3 is provided with two types.
- the first type of liquid inlet 311 is cylindrical and used for quick connection with the seasoning barrel.
- the liquid outlet of the seasoning barrel and the first type of liquid inlet 311 can be a quick connection structure, for example, a check valve 21 is provided.
- the liquid outlet of the seasoning barrel is directly plugged into the liquid inlet 311 of the transfer waterway plate 3 to connect the seasoning barrel and the transfer waterway plate 3;
- the second type of liquid inlet 311 is convex tube-shaped, and a soft pipeline can be sleeved on the second type of liquid inlet 311.
- a material liquid pipeline 74 is provided between the second type of liquid inlet 311 and the water barrel for connection.
- a check valve 21 is provided in the outlet of the barrel 2.
- the check valve 21 is normally closed. When the check valve 21 is subjected to downward suction, the check valve 21 opens. In this way, the check valve 21 is opened only during the liquid feeding process, and is closed at other times, which reduces the probability of the liquid in the barrel 2 being contaminated by bacteria, etc. In addition, the installation and removal of the barrel 2 will not leak, which is conducive to keeping the feeder clean and improving the user experience.
- the check valve 21 includes a first spring 211, a movable rod 212 and a valve seat 213, a center hole 2131 is vertically opened on the valve seat 213, the movable rod 212 is arranged in the center hole 2131 and can move vertically in the center hole 2131, the upper and lower ends of the movable rod 212 are respectively a pressing end 2121 and a sealing end 2122, the sealing end 2122 is used to seal the center hole 2131, and the two ends of the first spring 211 press the valve seat 213 and the pressing end 2121 respectively, giving the movable rod 212 an upward thrust, so that the sealing end 2122 presses the sealing center hole 2131 and is in a normally closed state.
- the outlet of the barrel 2 is cylindrical, and the valve seat 213 is clamped inside the cylindrical outlet of the barrel 2.
- the first pump body 6 When liquid supply is needed, the first pump body 6 is opened to generate pressure, and the sealing end 2122 of the movable rod 212 is subjected to downward suction, the movable rod 212 moves downward, and the sealing end 2122 releases the sealing effect on the center hole 2131, and the liquid in the barrel 2 can flow downward from the center hole 2131 into the transfer waterway plate 3.
- a spring groove 2132 is provided on the valve seat 213 , and the first spring 211 is placed in the spring groove 2132 .
- the pressing end 2121 is radially shaped, and the first spring 211 presses the bottom surface of the pressing end 2121 .
- the sealing end 2122 of the movable rod 212 may be in a cone-shaped form, and a sealing ring is sleeved on the outer side thereof.
- the feed ports 411 are arranged in a circle, and a one-way valve 5 is provided in each feed port 411.
- a selection rod 42 is rotatably connected in the material chamber 413 of the selection device 4, and the selection rod 42 is used to open the one-way valve 5.
- a second motor 45 is provided at the bottom of the selection rod 42, and the second motor 45 is used to control the rotation of the selection rod 42.
- the liquid outlet 312 and the feed port 411 are arranged in a circle, which is convenient for the selection rod 42 to quickly select the discharge. Compared with the structure in which the feed ports 411 are arranged in a straight line, the speed of selecting the discharge is fast and the stroke is short.
- the selection rod 42 can quickly open the one-way valve 5 for discharge by rotating forward and reverse directions, saving time and improving feeding efficiency.
- the feed port 411 is cylindrical, and a valve hole 4111 is vertically opened in the feed port 411;
- the one-way valve 5 includes a second sealing ring 51, a push rod 52 and a second spring 53, the push rod 52 is arranged in the feed port 411 and can move vertically in the valve hole 4111;
- the second sealing ring 51 is sleeved on the push rod 52 to seal the valve hole 4111;
- a first abutment surface 4112 is provided in the feed port 411, and a second abutment surface 522 is provided on the push rod 52, and two ends of the second spring 53 press the first abutment surface 4112 and the second abutment surface 522 respectively.
- the one-way valve 5 is in a normally closed state, as shown in Figure 25, the second spring 53 gives an upward thrust to the push rod 52, and the second sealing ring 51 presses and closes the valve hole 4111.
- the selection rod 42 is rotated to the bottom of the one-way valve 5, the selection rod 42 pushes the push rod 52 upward, the second spring 53 is compressed, and the push rod 52 moves upward.
- the push rod 52 drives the second sealing ring 51 to move upward, so that the valve hole 4111 is exposed, thereby connecting the liquid outlet 312 of the transfer waterway plate 3 with the material chamber 413 of the selection device 4.
- a groove 521 is provided on the push rod 52.
- the groove 521 is communicated with the valve hole 4111.
- four grooves 521 are vertically formed on the top rod 52 , and the liquid enters from the side of the top of the groove 521 and flows out from the outlet at the bottom of the groove 521 .
- the selection rod 42 includes a connecting rod 421 and an abutting top portion 422 radially extending from the connecting rod 421.
- the abutting top portion 422 is in an inverted U shape, high in the middle and low on both sides, and gradually inclined from the middle to the two sides, so that when the selection rod 42 rotates, the push rod 52 of the one-way valve 5 is gradually lifted.
- the bottom of the push rod 52 can be set as a protruding column 523, so that the top portion 422 can abut against the protruding column 523, thereby lifting the push rod 52.
- a position detection device is provided on the motor shaft of the selection lever 42 or the second motor 45 for detecting the rotation position of the selection lever 42.
- the position detection device may include a position indicator 43 and a detection mechanism 44.
- the position indicator 43 is arranged at the bottom of the selection lever 42.
- the position indicator 43 rotates synchronously with the selection lever 42.
- the detection mechanism 44 includes a detection circuit board 441 and a plurality of detectors 442 arranged on the detection circuit board 441.
- the number of the detectors 442 is consistent with the number of the one-way valves 5.
- the detectors 442 are arranged in a circle and correspond to the one-way valves 5 one by one.
- the detectors 442 may be slot-type photoelectric devices, etc.
- the bottom of the position indicator 43 is a baffle protruding downward. When the position indicator 43 rotates, the baffle passes through the detector 442, and the rotation position of the selection lever 42 can be detected.
- the selection device 4 includes a housing 41, a selection rod 42, a position indicator 43, a detection mechanism 44, and a second motor 45 arranged in sequence from top to bottom.
- the housing 41 includes two housings covered with each other, the top housing is provided with six feed ports 411, and the side of the bottom housing is provided with a discharge port 412.
- the interior of the two housings covered with each other is a material cavity.
- the selection rod 42 is rotatably connected to the center of the bottom housing, and passes through the bottom housing to be connected to the position indicator 43 and the second motor 45.
- the selection rod 42 is circumferentially limitedly connected to the position indicator 43.
- a sealing member is provided between the selection rod 42 and the center hole of the bottom housing for sealing.
- an air valve 8 is provided on the machine base 9 , and the air valve 8 has an air inlet end 81 and an air outlet end 82 , the air inlet end 81 is connected to the outside, and the air outlet end 82 is connected to the material chamber 413 .
- a gas flow channel 32 is provided on the transfer waterway plate 3, and an air inlet 321 and an air outlet 322 are provided at both ends of the gas flow channel 32.
- the air outlet 322 is connected to the material chamber 413.
- An air valve 8 is provided on the machine base 9, and the air valve 8 has an air inlet end 81 and an air outlet end 82, the air inlet end 81 is connected to the outside, and the air outlet end 82 is connected to the air inlet 321.
- the selection device 4 When the feeding is completed and it is necessary to empty the material, the selection device 4 is in a state of disconnecting the conveying from the material barrel 2 (that is, the selection rod 42 does not open the one-way valve 5), the first pump body 6 is in an open state, the air valve 8 is opened, and the outside air enters the air valve 8 from the air inlet end 81, and enters the material chamber 413 from the air outlet end 82 (if there is a transfer waterway plate 3, it is first drawn into the gas flow channel 32), and is sent out by the first pump body 6.
- the airflow presses out the residual pressure in the material chamber 413 and the rear end pipeline thereof, thereby realizing the emptying function.
- an air inlet head 414 is convexly provided on the transfer waterway plate 3, and the air inlet head 414 is connected to the air inlet port 321.
- An air inlet pipeline 71 is sleeved on the air inlet head 414, and the other end of the air inlet pipeline 71 is connected to the air outlet end 82 of the air valve 8.
- air from the outside passes through the air valve 8, the air inlet pipeline 71, and the gas flow channel 32 in the transfer waterway plate 3 in sequence, and then enters the material cavity 413 of the selection device 4.
- a feed pipe 75 is fixedly provided on one side of the base 9 close to the cover body 11.
- a liquid outlet nozzle 17 is provided at the liquid supply port 116 of the cover body 11.
- One end of the feed pipe 75 is plugged with the liquid outlet nozzle 17, and the other end of the feed pipe 75 is connected to the pump outlet 62 of the first pump body 6.
- the feed pipe 75 is disposed on the machine base 9 and is used to be fixed on the outer shell of the machine base 9 to facilitate an internal connecting hose such as a pump outlet pipeline 73 to connect the pump outlet 62 of the first pump body 6 to the outside.
- a pump outlet pipeline 73 may be provided between the feed pipe 75 and the pump outlet 62 of the first pump body 6 for communication.
- the liquid outlet nozzle 17 is used for detachable quick connection with the feed pipe 75. Meanwhile, the liquid outlet nozzle 17 may be provided as a corner type, and the liquid enters the liquid outlet nozzle 17 horizontally and is discharged downward to the outside.
- the liquid in the barrel 2 passes through the transfer waterway plate 3 (through the liquid inlet 311, the liquid channel 31, and the liquid outlet 312 in sequence), the selection device 4 (through the feed inlet 411, the material cavity 413, and the discharge port 412 in sequence), the first pump body 6, the pump outlet pipeline 73, the feed pipe 75, and the liquid outlet nozzle 17 in sequence, and then is discharged to the outside.
- the first pump body 6 and the air valve 8 are both in the open state, and the outside air enters from the air inlet end 81 of the air valve 8, flows into the air inlet pipeline 71 from the air outlet end 82, and then enters the gas flow channel 32 of the transfer waterway plate 3 (passing through the air inlet 321 and the air outlet 322 in succession), and then enters the material chamber 413 of the selection device 4, and is drawn into the first pump body 6, the pump outlet pipeline 73, the feed pipe 75, and the liquid outlet nozzle 17 from the outlet 412, and then discharged to the outside.
- the emptying function of the pipeline (the material chamber 413 and the outlet 412 of the selection device 4, the first pump body 6, the pump outlet pipeline 73, the feed pipe 75, and the liquid outlet nozzle 17) is realized, and the residual liquid in the pipeline is discharged.
- the liquid supply system includes at least one material bottle 101 and a second pump body 102, both of which are arranged on the machine base 9; the material bottle 101, the second pump body 102 and the liquid supply port 116 are connected in sequence.
- the mechanism can be used to transport liquid, and the material bottle 101 can be used to store oil.
- a feed pipe 75 can be added to the base 9, and the material bottle 101, the second pump body 102, the feed pipe 75, and the liquid outlet nozzle 17 are connected in sequence, and the material bottle 101 discharges the material alone.
- the host 01 is provided with a cup body groove 011, and the cup body groove 011 is used to place the cup body 02.
- the cup body groove 011 is provided with a locking device 05 and/or a micro switch structure 06.
- the locking device 05 is used to lock the cover body 11 to prevent abnormal situations such as food spilling and splashing.
- the micro switch structure 06 is used to detect whether the cover body 11 is covered in place.
- the locking device 05 can be symmetrically arranged on the two side groove walls of the cup body groove 011, and optionally, the micro switch structure 06 is symmetrically arranged on the two side groove walls of the cup body groove 011.
- the locking device 05 When a locking device 05 is provided on the cup body groove 011, as an example, please refer to Figures 28 to 30, the locking device 05 includes a supporting seat 051, a locking member 052 and a first driving structure 053; the supporting seat 051 is provided in the main body 01, the locking member 052 is slidably connected to the supporting seat 051, and the locking member 052 is used to lock the cover body 11; the first driving structure 053 is provided on the supporting seat 051, and the first driving structure 053 controls the locking member 052 to perform reciprocating motion.
- the two ends of the locking member 052 in the horizontal direction are respectively a locking end 0521 and a moving end 0522.
- the locking end 0521 is used to limit the cover body 11.
- a convex eave is arranged on the periphery of the cover body 11. After the locking end 0521 moves in the direction of the cover body 11, it presses on the top of the convex eave of the cover body 11 to lock it.
- the support seat 051 is provided with a locking groove 0511.
- the moving end 0522 is slidably connected in the locking groove 0511, so that the locking member 052 moves linearly relative to the support seat 051.
- the movable end 0522 is provided with a first rack 0523 extending in a straight line.
- the first driving structure 053 includes a fourth motor 0531 and a first gear 0532.
- the fourth motor 0531 is connected to and drives the first gear 0532 to rotate.
- the first gear 0532 is meshed with the first rack 0523, thereby driving the locking member 052 to move.
- a position detection structure 054 is fixed on the support seat 051 , and the position detection structure 054 is used to detect the position of the locking member 052 so that the host 01 can determine whether the locking device 05 is in a locked state or an unlocked state.
- the position detection structure 054 includes a first circuit board 0542 and two first sensors 0541 arranged on the first circuit board 0542.
- the two first sensors 0541 are arranged front and back along the moving direction of the locking member 052, and are used to detect the unlocked state position and the locked state position respectively.
- the first sensor 0541 can be a slot-type photoelectric sensor, which is electrically connected to the first circuit board 0542.
- a shielding piece 0524 is protruded from the locking member 052. The shielding piece 0524 moves with the locking member 052, and the shielding piece 0524 can be recognized by the first sensor 0541.
- the micro switch structure 06 includes a mounting bracket 061, a first sensing mechanism 062, a first swing arm 063, a first torsion spring 064 and a first rotating shaft 065.
- the mounting bracket 061 is arranged on the host 01
- the first sensing mechanism 062 is arranged on the mounting bracket 061
- the first swing arm 063 is rotatably connected to the mounting bracket 061 through the first rotating shaft 065, the first swing arm 063 can swing up and down, similar to a seesaw
- the two ends of the first swing arm 063 are respectively a movable end 0631 and a trigger end 0632
- one end of the first torsion spring 064 is arranged on the first swing arm 063, and the other end is arranged on the mounting bracket 061 or the first sensing mechanism 062,
- the first torsion spring 064 gives an upward thrust to the movable end 0631
- the first sensing mechanism 062 is used to detect the position of the movable end 0631.
- the first sensing mechanism 062 includes an electrically connected second sensor 0621 and a second circuit board 0622.
- the second sensor 0621 can be a slot-type photoelectric device, and the movable end 0631 can swing through the slot of the slot-type photoelectric device.
- the cover 11 moves down, the edge of the cover 11 presses the trigger end 0632 downward, the first swing rod 063 rotates, and the movable end 0631 is lifted up, which is detected by the first sensing mechanism 062, so that the host 01 can judge whether the cover 11 is covered in place.
- the outer portion of the movable end 0631 may be covered with a protective cover 066, which can not only protect the micro switch structure from water leakage, but also prevent the first rotating shaft 065 and other components from falling out, thereby making the micro switch structure stable and reliable.
- the cooking function structure includes a stirring device 04, which is disposed on the main unit 01.
- the stirring device 04 includes a stirring paddle 041 and a third motor 042.
- the third motor 042 is disposed in the main unit 01 and below the cup body 02.
- the stirring paddle 041 is rotatably disposed at the bottom of the cup body 02, and the third motor 042 is connected to and controls the rotation of the stirring paddle 041.
- the stirring paddle 041 can be a rotating part with a stir-frying function, or a crushing knife, a meat grinder, etc.
- a heating mechanism 03 is provided at the bottom of the cup body 02, and the heating mechanism 03 can be an electric heating type or an electromagnetic heating type.
- the heating mechanism 03 is an electromagnetic heating type
- the heating mechanism 03 includes a magnetic stripe bracket, a plurality of magnetic stripes and a coil disk, the coil disk ring is arranged at the bottom of the cup body 02, the magnetic stripe bracket is arranged at the bottom of the coil disk, and a plurality of magnetic stripes are radially arranged on the magnetic stripe bracket.
- the coil is energized, it is heated by electromagnetic induction to achieve the heating function of the food.
- a rotating panel structure 07 is provided on the host 01.
- the rotating panel structure 07 includes a panel 071 and a second driving structure.
- One end of the panel 071 is rotatably connected to the host 01.
- the second driving structure is provided on the host 01.
- the second driving structure controls the rotation of the panel 071.
- a fixed bracket 072 is provided on the host 01, and the top of the panel 071 is rotatably connected to the fixed bracket 072.
- the second driving structure includes two second racks 073, a dual output motor 074 and two second gears 075.
- the two second racks 073 are arranged side by side at intervals on the back of the panel 071.
- the second racks 073 extend in a direction away from the panel 071.
- the second racks 073 are arc-shaped.
- the dual output motor 074 is fixed on the host 01.
- the two second gears 075 are disposed on the two output ends of the dual-output motor 074 , and the two second gears 075 are respectively meshed with the two second racks 073 .
- the dual output motor 074 controls the second gear 075 to rotate, and the second rack 073 drives the panel 071 to flip around the rotation connection point between the panel 071 and the fixed bracket 072 as the rotation axis.
- the panel 071 can be in a vertical position by default. After rotation, the bottom of the panel 071 is lifted upward, and the panel 071 is in a tilted state, which is convenient for users to view or touch.
- the panel 071 can be a control panel and/or a display panel.
- the host 01 is provided with a wire hanging buckle 012, and a buckle detection structure 08 is provided at the wire hanging buckle 012; the machine base 9 is provided with a wire hanging groove 96, which can be buckled into the wire hanging buckle 012 and press the buckle detection structure 08. It is convenient for the cooking device to judge whether the cooking machine and the feeder are installed in place.
- the buckle detection structure 08 includes an action component and a second sensing mechanism 085.
- the action component is arranged inside the wire hanging groove 96.
- the second sensing mechanism 085 is arranged inside the host 01, corresponding to the position of the action component. After the wire hanging buckle 012 is buckled into the wire hanging groove 96, it presses the action component, and the action component generates an action and is sensed by the second sensing mechanism 085.
- the action assembly includes a positioning bracket 081, a second torsion spring 082, a second swing rod 083, and a second magnet 084.
- the two ends of the second swing rod 083 are respectively a rotation position and a force position 0832.
- the second magnet 084 is arranged on the force position 0832.
- the rotation position of the second swing rod 083 is rotationally connected to the positioning bracket 081.
- the second torsion spring 082 is arranged between the second swing rod 083 and the positioning bracket 081.
- the second torsion spring 082 gives a downward thrust to the force position 0832.
- a torsion spring groove 0831 can be arranged on the second swing rod 083.
- the second sensing mechanism 085 may include a third circuit board 0851 disposed on the host 01 and a third sensor 0852 electrically connected to the third circuit board 0851.
- the third sensor 0852 may be a Hall sensor for sensing the second magnet 084.
- FIG38 shows the state of the actuating assembly before the wire hook 012 is buckled into the wire hanging groove 96
- the lower part of FIG38 shows the state of the actuating assembly after the wire hook 012 is buckled into the wire hanging groove 96.
- this embodiment provides a feeder to feed materials into the cooking machine.
- the liquid feeding system provided in the feeder can be used to feed liquids such as water, oil, soy sauce, vinegar, etc.
- the solid feeding system provided in the feeder can be used to feed solids such as onions, ginger, garlic, etc. Therefore, during the cooking process, the feeder is used in conjunction with the cooking machine.
- seasonings need to be added, the feeder is used to feed, which reduces manual operation and improves convenience and user experience. This solves the problem in the related art that when food processing equipment is cooking ingredients, if water, oil or seasonings need to be added, the user needs to add them manually, which results in too much manual operation and inconvenience.
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- Food-Manufacturing Devices (AREA)
Abstract
一种烹调设备,包括烹饪机和供料机,烹饪机设置有器皿结构及烹饪功能结构,供料机设置有液体供料系统和固体供料系统,液体供料系统往器皿结构内投放固体,固体供料系统往器皿结构内投放液体。供料机中设有的液体供料系统可用于投放水、油、酱油、醋等等液体,供料机中设有的固体供料系统可用于投放葱、姜、蒜等等固体,因此,在烹饪过程中,通过供料机配合烹饪机配合使用,需要添加调味料等时,由供料机进行供料,减少人工参与操作,提高便利性及用户体验感。解决了相关技术中食品处理设备在烹饪食材的过程中,若是存在需要添加水、油或者调味料的情况,需要用户手动加入而导致的人工参与操作过多和较为不便的问题。
Description
本发明涉及厨房电器技术领域,具体涉及一种烹调设备。
现有技术中的食品处理设备,例如专利申请号为CN201610257441.9的发明申请所公开的料理机,此类食品处理设备一般通过搅拌或加热烹饪处理食材,但是,此类食品处理设备在烹饪食材的过程中,若是存在需要添加水、油或者调味料的情况,则需要用户手动加入,人工参与操作过多,较为不便,用户使用体验感较差,有待改进。
发明内容
有鉴于此,本发明提供了一种烹调设备,用于解决相关技术中食品处理设备在烹饪食材的过程中,若是存在需要添加水、油或者调味料的情况,需要用户手动加入而导致的人工参与操作过多和较为不便的问题。
为达上述之一或部分或全部目的或是其他目的,本发明提出一种烹调设备,包括烹饪机和供料机,所述烹饪机设置有器皿结构及烹饪功能结构,所述供料机设置有液体供料系统和固体供料系统,所述液体供料系统往所述器皿结构内投放固体,所述固体供料系统往所述器皿结构内投放液体。
在一可选实施例中,所述供料机包括机座和设置在所述机座上的盖体;
所述烹饪机包括主机,所述器皿结构为杯体,所述杯体设置在所述主机上;
所述盖体可盖合在所述杯体顶部。
在一可选实施例中,所述固体供料系统包括驱动机构和投料转盘;
所述投料转盘转动连接在所述盖体内部,所述投料转盘上设置有至少一个料仓,所述盖体底部开设有投料口,当所述投料转盘转动预设位置时,所述料仓与所述投料口连通;
所述驱动机构设置在机座上,所述驱动机构控制所述投料转盘转动。
在一可选实施例中,所述驱动机构包括第一电机和传动齿轮,所述第一电机设置在所述机座上,所述第一电机连接并控制所述传动齿轮转动;
所述投料转盘外周设置有外齿圈,所述投料转盘与所述外齿圈同步转动,所述外齿圈与所述传动齿轮啮合。
在一可选实施例中,所述第一电机和所述传动齿轮均位于所述机座内部,所述机座上开设有第一通孔,所述盖体上开设有第二通孔,所述第一通孔与所述第二通孔对齐,所述传动齿轮穿过所述第一通孔与所述第二通孔后与所述外齿圈啮合。
在一可选实施例中,所述驱动机构还包括齿轮箱,所述传动齿轮位于所述齿轮箱的内部,所述第一电机的电机轴穿入所述齿轮箱与所述传动齿轮连接,所述齿轮箱开设有端口供所述传动齿轮穿过,所述端口与所述第一通孔对齐。
在一可选实施例中,所述齿轮箱内设置有排水孔,所述机座上设置有连通至外界的导水通道,所述排水孔与所述导水通道连通。
在一可选实施例中,所述盖体上开设竖直排气孔,所述排气孔上可拆卸设置有量杯。
在一可选实施例中,所述排气孔具有筒状的孔壁,所述孔壁上可拆卸设置有至少一个卡持装置,所述卡持装置用于卡持量杯。
在一可选实施例中,所述盖体可拆卸设置在所述机座上,所述机座上设置有锁紧机构,所述锁紧机构用于锁紧或解锁所述盖体。
在一可选实施例中,所述液体供料系统包括设置在所述机座上的至少一个料桶和液体输送机构;
所述盖体上设置有给液口;
所述料桶、所述液体输送机构与所述给液口依次连通。
在一可选实施例中,所述液体输送机构包括均设置在所述机座上的选择装置和第一泵体;
所述料桶、所述选择装置、所述第一泵体、所述给液口依次连通。
在一可选实施例中,所述选择装置内部具有料腔,所述选择装置具有出料口和至少一个进料口,所述进料口和所述出料口均与料腔连通;
所述选择装置的进料口与所述料桶连通;
所述选择装置的出料口与所述第一泵体的泵入口连通。
在一可选实施例中,所述液体输送机构还包括设置在所述机座上的转接水路板,所述转接水路板上设置有与所述料桶数量相同的液体流道,每条液体流道上均开设有进液口和出液口;
所述料桶与所述进液口一一对应连通;
所述出液口与所述选择装置的进料口数量相同且一一对应连通。
在一可选实施例中,所述转接水路板上设置有气体流道,所述气体流道两端开设进气口和出气口;
所述出气口与所述料腔连通;
所述机座上设置有气阀,所述气阀具有进气端和出气端,所述进气端与外界连通,所述出气端与所述进气口连通。
在一可选实施例中,所述进料口呈圆周排布,每个所述进料口内均设置有单向阀;
所述选择装置的料腔内转动连接有选择杆,所述选择杆用于开启所述单向阀;
所述选择杆底部设置有第二电机,所述第二电机用于控制所述选择杆转动。
在一可选实施例中,所述机座上设置有气阀,所述气阀具有进气端和出气端,所述进气端与外界连通,所述出气端与所述料腔连通。
在一可选实施例中,所述液体供料系统包括均设置在所述机座上的至少一个料瓶和第二泵体;
所述料瓶、所述第二泵体和所述给液口依次连通。
在一可选实施例中,所述主机上设有杯体槽,所述杯体槽用于放置所述杯体;
所述杯体槽上设置有锁定装置和/或微动开关结构,所述锁定装置用于锁定所述盖体,所述微动开关结构用于检测所述盖体是否盖合到位。
在一可选实施例中,当所述杯体槽上设置有锁定装置时,所述锁定装置包括支承座、锁扣件和第一驱动结构;
所述支承座设置在所述主机内,所述锁扣件滑动连接在所述支承座上,所述锁扣件用于锁定所述盖体;
所述第一驱动结构设置在所述支承座上,所述第一驱动结构控制所述锁扣件进行往复运动。
在一可选实施例中,所述主机上设有转动面板结构,所述转动面板结构包括面板和第二驱动结构,所述面板的一端转动连接在所述主机上,所述第二驱动结构设置在所述主机上,所述第二驱动结构控制所述面板转动。
在一可选实施例中,所述主机上设有挂线扣,所述挂线扣内设置有扣合检测结构;
所述机座上设置有挂线槽,所述挂线槽可扣入所述挂线扣内并顶压所述扣合检测结构。
实施本发明实施例,将具有如下有益效果:
本发明通过设置供料机往烹饪机中投料,供料机中设有的液体供料系统可用于投放水、油、酱油、醋等等液体,供料机中设有的固体供料系统可用于投放葱、姜、蒜等等固体,因此,在烹饪过程中,通过供料机配合烹饪机配合使用,需要添加调味料等时,由供料机进行供料,减少人工参与操作,提高便利性及用户体验感。
解决了相关技术中食品处理设备在烹饪食材的过程中,若是存在需要添加水、油或者调味料的情况,需要用户手动加入而导致的人工参与操作过多和较为不便的问题。
为了更清楚地说明本发明实施例或相关技术中的技术方案,下面将对实施例或相关技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
其中:
图1为本发明一实施例烹调设备的立体图;
图2为本发明一实施例烹调设备的分解图;
图3为本发明一实施例烹调设备的剖面图;
图4为本发明一实施例烹调设备的剖面图;
图5为本发明一实施例中供料机的剖面图;
图6为本发明一实施例中供料机的分解图;
图7为本发明一实施例中供料机的俯视图;
图8为本发明一实施例中机座部分结构的分解图;
图9为本发明一实施例中驱动机构的立体图;
图10为本发明一实施例中驱动机构的分解图;
图11为本发明一实施例中盖组件的分解图;
图12为本发明一实施例中供料机部分结构的分解图;
图13为本发明一实施例中卡持装置的分解图;
图14为本发明一实施例中盖组件部分结构的剖面图;
图15为本发明一实施例中锁紧机构的分解图;
图16为本发明一实施例中供料机内部结构仰视角下的立体图;
图17为本发明一实施例中供料机内部结构的立体图;
图18为本发明一实施例中供料机内部结构的后视图;
图19为本发明一实施例中供料机部分结构的分解图;
图20为本发明一实施例中转接水路板俯视角下的立体图;
图21为本发明一实施例中转接水路板仰视角下的立体图;
图22为本发明一实施例中转接水路板内部结构的俯视图;
图23为本发明一实施例中选择装置的分解图;
图24为本发明一实施例中顶杆的立体图;
图25为本发明一实施例中单向阀的剖面图;
图26为本发明一实施例中供料机分解状态下的剖面图;
图27为本发明一实施例中逆止阀的分解图;
图28为本发明一实施例中主机的立体图;
图29为本发明一实施例中锁定装置的立体图;
图30为本发明一实施例中锁定装置的分解图;
图31为本发明一实施例中微动开关结构的立体图;
图32为本发明一实施例中微动开关结构的分解图;
图33为本发明一实施例中烹饪机的立体图;
图34为本发明一实施例中扣合检测结构的分解图;
图35为本发明一实施例中扣合检测结构动作过程的示意图;
图36为本发明一实施例中转动面板结构的立体图;
图37为本发明一实施例中双输出电机内部结构的立体图;
图38为本发明一实施例烹调设备的示意图。
附图标记说明如下:1-盖组件;11-盖体;111-排气孔;112-孔壁;1121-定位槽;1122-定位柱;1123-凸扣;113-卡持凸台;1131-插槽;114-限位凸台;115-投料口;116-给液口;117-第二通孔;12-投料转盘;121-料仓;122-关闭板;13-外齿圈;14-卡持装置;141-卡持钉;142-压紧件;1421-扣槽;15-量杯;151-钉槽;16-第一磁铁;17-出液嘴;2-料桶;21-逆止阀;211-第一弹簧;212-活动杆;2121-顶压端;2122-密封端;213-阀座;2131-中心孔;2132-弹簧槽;3-转接水路板;31-液体流道;311-进液口;312-出液口;32-气体流道;321-进气口;322-出气口;4-选择装置;41-壳体;411-进料口;4111-阀孔;4112-第一抵面;412-出料口;413-料腔;414-进气头;42-选择杆;421-连杆;422-抵顶部;43-位置指示器;44-检测机构;441-检测电路板;442-检测器;45-第二电机;5-单向阀;51-第二密封圈;52-顶杆;521-槽道;522-第二抵面;523-凸柱;53-第二弹簧;6-第一泵体;61-泵入口;62-泵出口;71-进气管路;72-进泵管路;73-出泵管路;74-料液管路;75-供料管;8-气阀;81-进气端;82-出气端;9-机座;91-驱动机构;911-第一电机;912-传动齿轮;913-齿轮箱;9131-排水孔;914-端口密封圈;915-轴密封圈;916-箱密封圈;92-驱动盒;921-导水通道;922-铰链;93-锁紧机构;931-销座;9311-滑槽;932-插销;9321-缺口;9322-挡体;9323-导向柄;933-拨钮;94-第一通孔;95-感应装置;96-挂线槽;101-料瓶;102-第二泵体;01-主机;011-杯体槽;012-挂线扣;02-杯体;03-加热机构;04-搅拌装置;041-搅拌桨;042-第三电机;05-锁定装置;051-支承座;0511-锁扣滑槽;052-锁扣件;0521-锁扣端;0522-移动端;0523-
第一齿条;0524-遮挡片;053-第一驱动结构;0531-第四电机;0532-第一齿轮;054-位置检测结构;0541-第一传感器;0542-第一电路板;06-微动开关结构;061-安装支架;062-第一感应机构;0621-第二传感器;0622-第二电路板;063-第一摆杆;0631-活动端;0632-触发端;064-第一扭簧;065-第一转轴;066-保护套;07-转动面板结构;071-面板;072-固定支架;073-第二齿条;074-双输出电机;075-第二齿轮;08-扣合检测结构;081-定位支架;082-第二扭簧;083-第二摆杆;0831-扭簧槽;0832-受力位;084-第二磁铁;085-第二感应机构;0851-第三电路板;0852-第三传感器。
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请综合参阅图1至图4、图38,本发明一实施例一种烹调设备,包括烹饪机和供料机,烹饪机设置有器皿结构及烹饪功能结构,供料机设置有液体供料系统和固体供料系统,液体供料系统往器皿结构内投放固体,固体供料系统往器皿结构内投放液体。
器皿结构用于盛放食材,烹饪功能结构可为但不限于用作加热、搅拌、粉碎、翻炒等等的功能结构,对器皿结构内的食材进行处理烹饪。
本实施例通过设置供料机往烹饪机中投料,供料机中设有的液体供料系统可用于投放水、油、酱油、醋等等液体,供料机中设有的固体供料系统可用于投放葱、姜、蒜等等固体,因此,在烹饪过程中,通过供料机配合烹饪机配合使用,需要添加调味料等时,由供料机进行供料,减少人工参与操作,提高便利性及用户体验感。
解决了相关技术中食品处理设备在烹饪食材的过程中,若是存在需要添加水、油或者调味料的情况,需要用户手动加入而导致的人工参与操作过多和较为不便的问题。
供料机包括机座9和盖组件1,盖组件1包括盖体11,盖体11设置在机座9上。烹饪机包括主机01,器皿结构为杯体02,杯体02设置在主机01上。盖体11可盖合在杯体02顶部。
在一可选实施例中,液体供料系统和/或固体供料系统可连通至盖体11进行出料,另外,盖体11内可设置空间用于储放固体,如此,盖体11除了具有基本的盖合作用(与器皿结构盖合)以外,既可用作液体的投料端,又可用作固体的储料端和投料端,实现盖体11的双类型投料功能,当盖体11与器皿结构盖合时,供料机可通过盖体11往器皿结构内选择添加固体或/和液体调味料,提高设备自动化程度,由于具有固/液投料功能,使得供料机可适用于更多菜谱,满足客户不同的口味需求。
请综合参阅图5至图7,在一可选实施例中,固体供料系统包括驱动机构91和投料转盘12。
投料转盘12转动连接在盖体11内部,投料转盘12上设置有至少一个料仓121,盖体11底部开设有投料口115,当投料转盘12转动预设位置时,料仓121与投料口115连通;驱动机构91设置在机座9上,驱动机构91控制投料转盘12转动。料仓121用于储放固体,例如葱、姜、蒜、味精等等。
固体供料工作时,驱动机构91控制料仓121转动至预设位置,某一料仓121对准投料口115,料仓121内的固体从投料口115往外界漏出,实现固体供料。
在本实施例中,驱动机构91设置在机座9上,可较大程度的保证水电隔离。在蒸、炒等等烹饪过程中,器皿结构内部会产生大量水蒸气,水蒸气会上升进入盖体11内。若是将驱动机构91设置在盖体11上,驱动机构91中例如电机等电器件会受潮导致损坏,同时影响安全性,将驱动机构91设置在机座9上,即可将驱动机构91与盖体11分离开,如图6和图12中所示,减少水蒸气进入驱动机构91内的可能性,避免电器件受潮导致损坏的问题。
另一方面,将驱动机构91设置在机座9可便于驱动机构91的电连接,若是将驱动机构91设置在盖体11上,驱动机构91与其它电性件需要引线进行电连接,导致盖体11无法从机座9上拆卸下来,同时引线受水蒸气影响会存在一定的安全隐患,因此,将驱动机构91设置在机座9上,在保证控制投料转盘12转动的同时,便于驱动机构91与机座9中的其余电性件进行电连接,便于与液体输送机构中的电性件进行集中控制。
在一可选实施例中,请综合参阅图5至图12,驱动机构91包括第一电机911和传动齿轮912,第一电机911设置在机座9上,第一电机911连接并控制传动齿轮912转动。投料转盘12外周设置有外齿圈13,投料转盘12与外齿圈13同步转动,外齿圈13与传动齿轮912啮合。工作时,第一电机911控制传动齿轮912转动,从而带动外齿圈13转动,投料转盘12跟随外齿圈13转动。传动齿轮912数
量可为一个或者多个相互啮合。
在一可选实施例中,请综合参阅图6和图12,第一电机911和传动齿轮912均位于机座9内部,机座9上开设有第一通孔94,盖体11上开设有第二通孔117,第一通孔94与第二通孔117对齐,传动齿轮912穿过第一通孔94与第二通孔117后与外齿圈13啮合。设置第一通孔94与第二通孔117,即可满足传动齿轮912与外齿圈13的啮合传动,又不会妨碍到盖体11从机座9上拆卸下来。
驱动机构91还包括齿轮箱913,传动齿轮912位于齿轮箱913的内部,第一电机911的电机轴穿入齿轮箱913与传动齿轮912连接,齿轮箱913开设有端口供传动齿轮912穿过,端口与第一通孔94对齐。如此一来,可使得水蒸气仅仅进入齿轮箱913中而不往机座9内扩散,起到进一步保证水电隔离的作用,有效避免电器件受潮和损坏。
可选的,机座9上的第一通孔94孔周与齿轮箱913的端口之间设置端口密封圈914进行密封,避免水蒸气通过第一通孔94孔周与齿轮箱913端口之间的缝隙溢出至机座9内部。
可选的,第一电机911的电机轴与齿轮箱913上的轴孔之间可设置有轴密封圈915进行密封。可避免齿轮箱913内的水蒸气通过轴孔与第一电机911的电机轴间的缝隙外溢而影响第一电机911等电器件。有效避免电器件受潮和损坏。
可选的,如图10所示,齿轮箱913包括相互盖合的上箱盖和下箱体,上箱盖和下箱体两者之间设置有箱密封圈916进行密封,便于装配传动齿轮912的同时,提高齿轮箱913的密封性能。
在一可选实施例中,请综合参阅图9、图10和图12,齿轮箱913内设置有排水孔9131,机座9上设置有连通至外界的导水通道921,排水孔9131与导水通道921连通。由于进入齿轮箱913的水蒸气在冷凝后会形成液态水,积攒在齿轮箱913内,因此,设置排水孔9131可将齿轮箱913内的积水导往外部进行排出。
可选的,如图5、图6和图8中所示,机座9顶部为驱动盒92。驱动机构91设置在驱动盒92内部,导水通道921设置在驱动盒92中,导水通道921连通至驱动盒92底部以连通至外界,驱动盒92与机座9的其余部分之间存在缝隙,导水通道921连通至该缝隙。为了便于向上翻转打开盖体11,同时便于清洁该缝隙,驱动盒92与机座9的其余部分可转动连接,例如,驱动盒92与机座9的其余部分之间通过设置铰链922进行转动连接,如此,可向上翻动驱动盒92,当盖体11安装在机座9上时,便可以同时上翻盖体11和驱动盒92,无需用户手持或者在厨台上寻找放置盖体11的空间,掀开盖体11后由铰链922保持盖体11位置,即可解放双手,另外便于清洁缝隙。
请综合参阅图6和图7,盖体11内设置有第一磁铁16,第一磁铁16与外齿圈13同步转动,机座9内设置有感应装置95,感应装置95用于感应第一磁铁16,用于检测原点位置,从而检测投料转盘12的转动状态。感应装置95可为带有霍尔传感器的PCB板,霍尔传感器可感应磁体并产生电信号发送至供料机。
第一磁铁16可通过卡持、胶粘等等方式设置在投料转盘12或者外齿圈13上,可与外齿圈13和投料转盘12保持同步转动即可。作为一示例,外齿圈13上开设有磁铁槽,第一磁铁16放置在磁铁槽内,第一磁铁16跟随外齿圈13转动。
在一可选实施例中,投料转盘12上设置有至少一个关闭板122,当投料转盘12转动至预设角度时,关闭板122遮盖投料口115。关闭板122与料仓121呈圆周排布。在本实施例中,投料转盘12上设置有三个料仓121和一个关闭板122。可替换的,关闭板122与料仓121之间可间隔排布,便于两个以上的料仓121可独立出料。
在一可选实施例中,盖体11上开设竖直排气孔111,排气孔111上可拆卸设置有量杯15。排气孔111可用于排出烹饪过程中产生的水蒸气,同时用于固定量杯15。量杯15可便于使用者测量液体或固体的体积、便于转移倾倒液体或固体,量杯15插装在排气孔111上时具有遮挡灰尘的作用。
量杯15与排气孔111之间可为过盈配合,量杯15直线插装在排气孔111内;可替换的,量杯15与排气孔111之间通过旋转卡扣连接,等等。
在长时间使用后,量杯15与排气孔111之间容易老化变形或者磨损,量杯15产生松动,影响使用,维修时需要将盖体11和量杯15整体进行更换,造成维修成本高的问题。在一可选实施例中,排气孔111具有筒状的孔壁112,孔壁112上可拆卸设置有至少一个卡持装置14,卡持装置14用于卡持量杯15。如此一来,当长期使用后,量杯15与盖体11间产生松动,维修时仅需要将卡持装置14拆卸下来,更换安装新的卡持装置14即可继续使用,无需将盖体11和量杯15整体进行更换,可有效降低成本,且维修方便。
在一可选实施例中,请综合参阅图11、图13和图14,孔壁112上开设若干定位槽1121,定位槽1121中设置有定位柱1122。卡持装置14包括卡持钉141和压紧件142,卡持钉141和压紧件142均穿设在定位柱1122上,压紧件142压设在卡持钉141顶部,压紧件142与定位槽1121的槽壁可拆卸连接。量杯15外侧面凹设有钉槽151,卡持钉141朝钉槽151方向凸起并与钉槽151过盈配合。卡持钉141和压紧件142可为硅胶材质。
压紧件142与定位槽1121的槽壁可拆卸连接,示例的,压紧件142两侧开设扣槽1421,定位槽1121两端的槽壁上设置凸扣1123,所述凸扣1123扣入所述扣槽1421内,实现压紧件142的限位。
可选的,请综合参阅图6和图15,盖体11可拆卸设置在机座9上,机座9上设置有锁紧机构93,锁紧机构93用于锁紧或解锁盖体11。可便于用户将盖体11拆卸下来进行清洁。
作为一示例,盖体11上凸设有卡持凸台113,卡持凸台113插设在机座9上,机座9上设置有锁紧机构93,锁紧机构93用于锁紧卡持凸台113。机座9上可开设过孔供卡持凸台113插入,如此一来,需要清洗盖体11时,可通过控制锁紧机构93对所述卡持凸台113解除锁紧,即可将盖体11拆出单独进行冲洗,或者放入洗碗机内清洁,拆卸简单快捷,便于清洗,提高用户使用体验感。
锁紧机构93可为插销式或者弹性扣式等等,可将卡持凸台113锁紧以及解除锁紧即可。
示例的,锁紧机构93可为插销式,锁紧机构93包括销座931、插销932和拨钮933,销座931固定在机座9上,插销932滑动连接在机座9上;卡持凸台113上开设有插槽1131,以供插销932通过。当需要安装盖体11时,将卡持凸台113插装在机座9上,移动插销932进入插槽1131,从而将卡持凸台113锁紧在销座931上,从而使盖体11锁紧在机座9上。
如图15中所示,插销932朝向卡持凸台113的一侧开设有缺口9321,以供卡持凸台113通过。缺口9321旁侧为挡体9322,安装盖体11时,插销932处在其缺口9321与卡持凸台113对准的位置,卡持凸台113穿过缺口9321后,移动插销932至其挡体9322进入插槽1131进行卡紧,实现对卡持凸台113的锁紧功能。缺口9321和挡体9322相邻,可缩短插销932的移动行程,小幅度滑动插销932即可实现锁紧或解锁。
销座931上设置有滑槽9311,插销932插设在滑槽9311内并沿着滑槽9311移动。滑槽9311可成类似L型的管状,插销932形状契合滑槽9311的形状。
插销932上凸设有导向柄9323,销座931上设置有开口,导向柄9323从开口探出。导向柄9323用于作为外力在插销932上的施力点,使插销932移动。
机座9上开设有条形孔,导向柄9323穿过条形孔并在条形孔内移动,导向柄9323上套设有拨钮933。拨钮933可增大接触面积,用户在拨动拨钮933手感更佳,同时,拨钮933可遮挡条形孔,避免落灰进入条形孔。
机座9靠近盖体11一侧的形状契合于盖体11的形状。
盖体11朝机座9方向外凸延伸有至少一个限位凸台114,机座9朝向盖体11的一侧相应设置有限位槽,限位凸台114插设在限位槽内。安装盖体11时,可将限位凸台114插入限位槽内,之后再插入卡持凸台113,便于先定位后锁紧,提高安装准确度。作为一示例,限位凸台114数量为二,两个限位凸台114以及卡持凸台113形成三角结构,更为稳定。
可选的,盖体11包括上、下盖合的上盖和主盖。上盖和主盖之间可为旋转卡扣盖合。上盖和主盖设计为可拆分结构,便于对盖体进行全面清洁。
在一可选实施例中,请综合参阅图16至图19、图38,液体供料系统包括设置在机座9上的至少一个料桶2和液体输送机构。盖体11上设置有给液口116。料桶2、液体输送机构与给液口116依次连通。
料桶2用于储放液体,例如水、油、酱油、醋等等。
液体输送机构用于将料桶2内的液体往盖体11的给液口116输送。
液体供料工作时,料桶2通过液体输送机构输往给液口116后往外界排出,实现液体供料。
在一可选实施例中,液体输送机构包括均设置在机座9上的选择装置4和第一泵体6。料桶2、选择装置4、第一泵体6、给液口116依次连通。料桶2与选择装置4之间可为直接或者间接连通,间接连通方式例如在两者之间设置转接水路板3或水管等等。选择装置4用于选择是否出料以及选择指定料桶2出料。第一泵体6用于提供动力,将液体抽往所述给液口116。
在一可选实施例中,选择装置4内部具有料腔413,选择装置4具有出料口412和至少一个进料口411,进料口411和出料口412均与料腔413连通。选择装置4的进料口411与料桶2连通,选择装置4的出料口412与第一泵体6的泵入口61连通。出料口412与泵入口61之间可设置进泵管路72进行连
通。
在一可选实施例中,请综合参阅图20至图22,液体输送机构还包括设置在机座9上的转接水路板3,转接水路板3上设置有与料桶2数量相同的液体流道31,每条液体流道31上均开设有进液口311和出液口312。料桶2与进液口311一一对应连通。出液口312与选择装置4的进料口411数量相同且一一对应连通。
液体供料工作时,料桶2中液体依次经过转接水路板3、选择装置4、第一泵体6、给液口116往外界排出。
如此一来,料桶2的摆放位置无需与选择装置4的进料口411方向保持一致,通过转接水路板3能高效装配,以及防止出液口312连接错误。例如,多个料桶2呈一排放置,因此转接水路板3顶部的进液口311对应呈一排设置,如图20中所示,而转接水路板3的出液口312可根据选择装置4的进料口411的位置而改变,便于规律摆放料桶2,以及配合选择装置4进行选择出料。又例如,转接水路板3上的进液口311可为凸出的接头状,请综合参阅图21和图16,进液口311上套设料液管路74与料桶2进行连通,可连通较远距离的料桶2,在本实施例中,较远距离的料桶2体积较大,可用于储存水等用量较多的液体,与其它料桶2区分开。
在一可选实施例中,料桶2包括调味桶和水桶,如图17中所示,图17中左侧为调味桶,调味桶设置有五个,并排设置,容积较小,图17中右侧为水桶,数量为一个,容积较大。相应的,转接水路板3的进液口311设置有两种类型,第一类型的进液口311呈筒状,用于与调味桶快接,调味桶的液体出口与第一类型的进液口311之间可为快接结构,例如设置逆止阀21,调味桶的液体出口直接插接在转接水路板3的进液口311上后即可连通调味桶与转接水路板3;第二类型的进液口311呈凸管状,第二类型的进液口311上可套接软质管路,请综合参阅图16和图21,第二类型的进液口311与水桶之间设置料液管路74进行连接。
在一可选实施例中,请综合参阅图26至图27,料桶2的出口内设置有逆止阀21,逆止阀21为常闭状态,当逆止阀21受到向下的吸力时,逆止阀21打开。如此,仅当液体供料过程中逆止阀21才会打开,其余时间均为关闭状态,降低料桶2内液体被细菌等污染的几率,另外,料桶2的安装及取出不会漏液,有利于保持供料机洁净以及提高使用体验感。
示例的,逆止阀21包括第一弹簧211、活动杆212和阀座213,阀座213上竖直开设中心孔2131,活动杆212设置在中心孔2131内并可在中心孔2131竖直移动,活动杆212的上、下两端分别为顶压端2121和密封端2122,密封端2122用于密封中心孔2131,第一弹簧211两端分别顶压阀座213和顶压端2121,给到活动杆212向上的推力,使得密封端2122压紧密封中心孔2131,处于常闭状态。料桶2的出口呈筒状,阀座213卡紧在料桶2的筒状出口内部。
当需要液体供料时,第一泵体6开启,产生压力,活动杆212的密封端2122受到向下的吸力,活动杆212向下移动,密封端2122解除对中心孔2131的密封作用,料桶2内液体即可从中心孔2131向下流入转接水路板3中。
阀座213上设置弹簧槽2132,第一弹簧211放置在弹簧槽2132内,顶压端2121呈放射状,第一弹簧211顶压所述顶压端2121的底面。
活动杆212的密封端2122可呈锥形台状,其外侧面套设密封圈。
进料口411呈圆周排布,每个进料口411内均设置有单向阀5。选择装置4的料腔413内转动连接有选择杆42,选择杆42用于开启单向阀5。选择杆42底部设置有第二电机45,第二电机45用于控制选择杆42转动。出液口312以及进料口411呈圆周排布,便于选择杆42快速选择出料,比较于进料口411直线排列的结构来说,选择出料的速度快、行程短,选择杆42正、反向旋转即可快速打开单向阀5进行出料,节省时间,提高供料效率。
如图23和图25中所示,进料口411呈筒状,进料口411内竖直开设阀孔4111;单向阀5包括第二密封圈51、顶杆52和第二弹簧53,顶杆52设置在进料口411内并可在阀孔4111内竖直移动;第二密封圈51套设在顶杆52上,用于密封阀孔4111;进料口411内设有第一抵面4112,顶杆52上设有第二抵面522,第二弹簧53两端分别顶压第一抵面4112和第二抵面522。单向阀5为常闭状态,如图25中所示,第二弹簧53给到顶杆52向上的推力,第二密封圈51压紧关闭阀孔4111,当选择杆42旋转置单向阀5底部时,选择杆42向上顶起顶杆52,第二弹簧53压缩,顶杆52上移顶杆52带动第二密封圈51上移,使得阀孔4111露出,从而使得转接水路板3的出液口312与选择装置4的料腔413连通。
如图24上所示,顶杆52上开设槽道521,当顶杆52上移时,槽道521与阀孔4111连通。在本实
施例中,顶杆52上竖直开设四条槽道521,液体从槽道521顶部的侧面进入,从槽道521底部出口流出。
在一可选实施例中,选择杆42包括连杆421和从连杆421径向延伸出的抵顶部422。抵顶部422呈倒U形,中间高,两侧低,中间向两侧逐步倾斜过渡,以便于选择杆42转动时,逐渐顶起单向阀5的顶杆52。
顶杆52的底部可设置为凸柱523,便于抵顶部422抵顶凸柱523,从而将顶杆52抬起。
如图23中所示,选择杆42或第二电机45的电机轴上设置有位置检测装置,用于检测选择杆42的转动位置。位置检测装置可包括位置指示器43和检测机构44,位置指示器43穿设在选择杆42的底部,位置指示器43与选择杆42同步转动,检测机构44包括检测电路板441和设置在检测电路板441的若干检测器442,检测器442数量与单向阀5的数量保持一直,检测器442呈圆周排布且与单向阀5一一对应,检测器442可为槽型光电等,位置指示器43底部为一向下凸起的挡板,位置指示器43转动时,挡板经过检测器442,即可检测选择杆42的转动位置。
在一可选实施例中,如图23中所示,选择装置4包括从上至下依次设置的壳体41、选择杆42、位置指示器43、检测机构44和第二电机45,壳体41包括上下盖合的两个壳体,顶部壳体设置六个进料口411,底部壳体侧面设置出料口412,上下盖合的两个壳体内部为料腔。选择杆42转动连接在底部壳体的中心,并穿过底部壳体与位置指示器43和第二电机45连接,选择杆42与位置指示器43周向限位连接。选择杆42与底部壳体中心孔之间设置密封件进行密封。
由于为液体调味料供料,供料动作完成后,用于输送液体的管路中会残留部分液体调味料,存在无法排送干净的问题,从而导致干涸后容易导致管路堵塞,或者液体调味料投放量无法达到所需设定量。针对以上问题,作出以下改进:
在一可选实施例中,机座9上设置有气阀8,气阀8具有进气端81和出气端82,进气端81与外界连通,出气端82与料腔413连通。
在一可选实施例中,当料桶2与选择装置4之间设置有转接水路板3时,转接水路板3上设置有气体流道32,气体流道32两端开设进气口321和出气口322.出气口322与料腔413连通。机座9上设置有气阀8,气阀8具有进气端81和出气端82,进气端81与外界连通,出气端82与进气口321连通。
当供料完毕、需要进行排空时,选择装置4处于与料桶2断开输送的状态(即选择杆42不开启单向阀5),第一泵体6处于开启状态,打开气阀8,外界空气从进气端81进入气阀8内,从出气端82(如果有转接水路板3的话则先被抽入气体流道32)进入料腔413,并由第一泵体6送出,气流将料腔413及其后端管路内的残液压出,实现排空功能。
如图21和图22中所示,转接水路板3上凸设有进气头414,进气头414与进气口321连通,进气头414上套设有进气管路71,进气管路71的另一端连接至气阀8的出气端82。排空动作中,空气从外界依次经过气阀8、进气管路71、转接水路板3内的气体流道32之后,再进入选择装置4的料腔413内。
请综合参阅图5、图6和图12,机座9靠近盖体11的一侧固定设置有供料管75。盖体11的给液口116处设置有出液嘴17。供料管75的一端与出液嘴17与插接,供料管75的另一端与第一泵体6的泵出口62连通。
供料管75设置在机座9上,供料管75用于固定在机座9的外壳上,便于内部连接软管如出泵管路73将第一泵体6的泵出口62连通至外部。
供料管75与第一泵体6的泵出口62之间可设置出泵管路73进行连通。出液嘴17用于与供料管75可拆卸快接,同时,出液嘴17可设置为拐角型,液体水平进入出液嘴17后向下排出至外界。
液体供料工作时,料桶2中液体依次经过转接水路板3(先后经过进液口311、液体流道31、出液口312)、选择装置4(先后经过进料口411、料腔413、出料口412)、第一泵体6、出泵管路73、供料管75、出液嘴17,之后往外界排出。
液体供料结束需要排空时,第一泵体6和气阀8均处于打开状态,外界空气从气阀8的进气端81进入,从出气端82流入进气管路71中,再进入转接水路板3的气体流道32(先后经过进气口321、出气口322),之后进入选择装置4的料腔413,从出料口412被抽入第一泵体6、出泵管路73、供料管75、出液嘴17,之后往外界排出。从而实现对所经管路(选择装置4的料腔413和出料口412、第一泵体6、出泵管路73、供料管75、出液嘴17)的排空功能,排尽管路中的残液。
在一可选实施例中,如图16和图38中所示,液体供料系统包括均设置在机座9上的至少一个料瓶101和第二泵体102;料瓶101、第二泵体102和给液口116依次连通。料瓶101单独设置一套液体输送
机构进行输送液体,料瓶101内可用于储放油。同理的,机座9上可增加供料管75,料瓶101、第二泵体102、供料管75、出液嘴17依次连通,料瓶101单独出料。
在一可选实施例中,如图28所示,主机01上设有杯体槽011,杯体槽011用于放置杯体02。杯体槽011上设置有锁定装置05和/或微动开关结构06。锁定装置05用于锁定盖体11,避免食物溢出飞溅等异常情况出现。微动开关结构06用于检测盖体11是否盖合到位。可选的,锁定装置05可对称设置在杯体槽011的两侧槽壁上,可选的,微动开关结构06对称设置在杯体槽011的两侧槽壁上。
当杯体槽011上设置有锁定装置05时,作为一示例,请综合参阅图28至30,锁定装置05包括支承座051、锁扣件052和第一驱动结构053;支承座051设置在主机01内,锁扣件052滑动连接在支承座051上,锁扣件052用于锁定盖体11;第一驱动结构053设置在支承座051上,第一驱动结构053控制锁扣件052进行往复运动。
锁扣件052水平方向的两端分别为锁扣端0521和移动端0522,锁扣端0521用于限位盖体11,盖体11外周设置有一圈凸檐,锁扣端0521往盖体11方向移动到位后,锁扣端0521压在所述盖体11的凸檐顶部,进行锁定。支承座051上设置有锁扣滑槽0511,移动端0522滑动连接在锁扣滑槽0511内,使得锁扣件052相对于支承座051做直线运动。
移动端0522上设置有沿直线延伸的第一齿条0523,第一驱动结构053包括第四电机0531和第一齿轮0532,第四电机0531连接并驱动第一齿轮0532转动,第一齿轮0532与第一齿条0523啮合,从而驱动锁扣件052移动。
支承座051上固定有位置检测结构054,位置检测结构054用于检测锁扣件052的位置,以供主机01判断锁定装置05处于锁定状态还是解锁状态。
位置检测结构054包括第一电路板0542和设置在第一电路板0542上的两个第一传感器0541,两个第一传感器0541沿着锁扣件052移动方向前后设置,分别用于检测解锁状态位置和锁定状态位置,第一传感器0541可为槽型光电传感器,与第一电路板0542电连接,锁扣件052上凸设有遮挡片0524,遮挡片0524随锁扣件052移动,遮挡片0524可被第一传感器0541所识别。
在一可选实施例中,请综合参阅图28、图31和图32,微动开关结构06包括安装支架061、第一感应机构062、第一摆杆063、第一扭簧064和第一转轴065,安装支架061设置在主机01上,第一感应机构062设置在安装支架061上,第一摆杆063通过第一转轴065转动连接在安装支架061上,第一摆杆063可进行上下摆动,类似翘板,第一摆杆063的两端分别为活动端0631和触发端0632,第一扭簧064一端设置在第一摆杆063上,另一端设置在安装支架061或第一感应机构062上,第一扭簧064给到活动端0631向上的推力,第一感应机构062用于检测活动端0631的位置。第一感应机构062包括电性连接的第二传感器0621和第二电路板0622,第二传感器0621可为槽型光电,活动端0631可摆动穿过槽型光电的槽。将盖体11盖合在杯体02上时,盖体11下移,盖体11边缘向下顶压触发端0632,第一摆杆063转动,活动端0631上抬,被第一感应机构062检测到,以供主机01判断盖体11是否盖合到位。
活动端0631外部可套设保护套066,保护套066不但可用于保护微动开关结构,防止有水漏入,而且还可避免第一转轴065等部件掉出,使得微动开关结构稳定可靠。
在一可选实施例中,如图3中所示,烹饪功能结构包括搅拌装置04,搅拌装置04设置在主机01上,所述搅拌装置04包括搅拌桨041和第三电机042,第三电机042设置在主机01内,且位于杯体02下方,所述搅拌桨041转动设置在杯体02内底部,所述第三电机042连接并控制所述搅拌桨041转动。搅拌桨041可为具有翻炒功能的旋转件,或者为粉碎刀、绞肉刀等等。
杯体02底部设置有加热机构03,加热机构03可为电加热式或电磁加热式。在本实施例中,加热机构03为电磁加热式,加热机构03包括磁条支架、若干磁条和线圈盘,线圈盘环设在杯体02底部,磁条支架设在线圈盘底部,若干磁条呈放射状设置在磁条支架上,线圈通电后,通过电磁感应进行加热,实现对食材的加热功能。
在一可选实施例中,请综合参阅图28、图36和图37,主机01上设有转动面板结构07,转动面板结构07包括面板071和第二驱动结构,面板071的一端转动连接在主机01上,第二驱动结构设置在主机01上,第二驱动结构控制面板071转动。
主机01上设置有固定支架072,面板071顶部转动连接在固定支架072上,第二驱动结构包括两个第二齿条073、双输出电机074和两个第二齿轮075,两个第二齿条073间隔并排设置在面板071背部,第二齿条073朝远离面板071的方向延伸,第二齿条073呈弧形,双输出电机074固定在主机01上,
两个第二齿轮075设置在双输出电机074的两个输出端上,两个第二齿轮075分别与两个第二齿条073啮合。
需要转动该面板071时,双输出电机074控制第二齿轮075转动,第二齿条073带动面板071以面板071与固定支架072的转动连接点为转轴进行翻转。面板071默认状态可为竖直位置,转动后,面板071底部向上抬起,面板071处于倾斜状态,便于用户查看或触碰。面板071可为控制面板或/和显示面板。
请综合参阅图2、图4、图33至图35,主机01上设有挂线扣012,挂线扣012处设置有扣合检测结构08;机座9上设置有挂线槽96,挂线槽96可扣入挂线扣012内并顶压扣合检测结构08。便于烹调设备判断烹饪机和供料机两者是否安装到位。
扣合检测结构08包括动作组件和第二感应机构085,动作组件设置在挂线槽96内部,在第二感应机构085设置在主机01内,对应于动作组件的位置。挂线扣012扣入挂线槽96后顶压动作组件,动作组件产生动作并被第二感应机构085感应到。
示例的,动作组件包括定位支架081、第二扭簧082、第二摆杆083,和第二磁铁084,第二摆杆083两端分别为转动位和受力位0832,第二磁铁084设置在受力位0832上,第二摆杆083的转动位转动连接在定位支架081上,第二扭簧082设置在第二摆杆083与定位支架081之间,第二扭簧082给到受力位0832向下的推力。第二摆杆083上可设置扭簧槽0831,第二扭簧082一端顶入扭簧槽0831内,另一端顶在定位支架081上。挂线扣012扣入挂线槽96后顶压受力位0832,受力位0832带动第二磁铁084上摆,第二感应机构085感应第二磁铁084的位置。第二感应机构085可包括设置在主机01上的第三电路板0851和电性连接在第三电路板0851上的第三传感器0852,第三传感器0852可为霍尔传感器,用于感应第二磁铁084。图38中上方为挂线扣012扣入挂线槽96前动作组件的状态,图38中下方为挂线扣012扣入挂线槽96后动作组件的状态。
综上所述,本实施例通过设置供料机往烹饪机中投料,供料机中设有的液体供料系统可用于投放水、油、酱油、醋等等液体,供料机中设有的固体供料系统可用于投放葱、姜、蒜等等固体,因此,在烹饪过程中,通过供料机配合烹饪机配合使用,需要添加调味料等时,由供料机进行供料,减少人工参与操作,提高便利性及用户体验感。解决了相关技术中食品处理设备在烹饪食材的过程中,若是存在需要添加水、油或者调味料的情况,需要用户手动加入而导致的人工参与操作过多和较为不便的问题。
以上所述仅是本申请的较佳实施方式而已,并非对本申请做任何形式上的限制,虽然本申请已以较佳实施方式揭露如上,然而并非用以限定本申请,任何熟悉本专业的技术人员,在不脱离本申请技术方案的范围内,当可利用上述揭示的技术内容做出些许更动或修饰为等同变化的等效实施方式,但凡是未脱离本申请技术方案的内容,依据本申请的技术实质对以上实施方式所作的任何简单修改、等同变化与修饰,均仍属于本申请技术方案的范围内。
Claims (22)
- 一种烹调设备,其特征在于:包括烹饪机和供料机,所述烹饪机设置有器皿结构及烹饪功能结构,所述供料机设置有液体供料系统和固体供料系统,所述液体供料系统往所述器皿结构内投放固体,所述固体供料系统往所述器皿结构内投放液体。
- 如权利要求1所述的烹调设备,其特征在于:所述供料机包括机座(9)和设置在所述机座(9)上的盖体(11);所述烹饪机包括主机(01),所述器皿结构为杯体(02),所述杯体(02)设置在所述主机(01)上;所述盖体(11)可盖合在所述杯体(02)顶部。
- 如权利要求2所述的烹调设备,其特征在于:所述固体供料系统包括驱动机构(91)和投料转盘(12);所述投料转盘(12)转动连接在所述盖体(11)内部,所述投料转盘(12)上设置有至少一个料仓(121),所述盖体(11)底部开设有投料口(115),当所述投料转盘(12)转动预设位置时,所述料仓(121)与所述投料口(115)连通;所述驱动机构(91)设置在机座(9)上,所述驱动机构(91)控制所述投料转盘(12)转动。
- 如权利要求3所述的烹调设备,其特征在于:所述驱动机构(91)包括第一电机(911)和传动齿轮(912),所述第一电机(911)设置在所述机座(9)上,所述第一电机(911)连接并控制所述传动齿轮(912)转动;所述投料转盘(12)外周设置有外齿圈(13),所述投料转盘(12)与所述外齿圈(13)同步转动,所述外齿圈(13)与所述传动齿轮(912)啮合。
- 如权利要求4所述的烹调设备,其特征在于:所述第一电机(911)和所述传动齿轮(912)均位于所述机座(9)内部,所述机座(9)上开设有第一通孔(94),所述盖体(11)上开设有第二通孔(117),所述第一通孔(94)与所述第二通孔(117)对齐,所述传动齿轮(912)穿过所述第一通孔(94)与所述第二通孔(117)后与所述外齿圈(13)啮合。
- 如权利要求5所述的烹调设备,其特征在于:所述驱动机构(91)还包括齿轮箱(913),所述传动齿轮(912)位于所述齿轮箱(913)的内部,所述第一电机(911)的电机轴穿入所述齿轮箱(913)与所述传动齿轮(912)连接,所述齿轮箱(913)开设有端口供所述传动齿轮(912)穿过,所述端口与所述第一通孔(94)对齐。
- 如权利要求6所述的烹调设备,其特征在于:所述齿轮箱(913)内设置有排水孔(9131),所述机座(9)上设置有连通至外界的导水通道(921),所述排水孔(9131)与所述导水通道(921)连通。
- 如权利要求2所述的烹调设备,其特征在于:所述盖体(11)上开设竖直排气孔(111),所述排气孔(111)上可拆卸设置有量杯(15)。
- 如权利要求8所述的烹调设备,其特征在于:所述排气孔(111)具有筒状的孔壁(112),所述孔壁(112)上可拆卸设置有至少一个卡持装置(14),所述卡持装置(14)用于卡持量杯(15)。
- 如权利要求2所述的烹调设备,其特征在于:所述盖体(11)可拆卸设置在所述机座(9)上,所述机座(9)上设置有锁紧机构(93),所述锁紧机构(93)用于锁紧或解锁所述盖体(11)。
- 如权利要求2所述的烹调设备,其特征在于:所述液体供料系统包括设置在所述机座(9)上的至少一个料桶(2)和液体输送机构;所述盖体(11)上设置有给液口(116);所述料桶(2)、所述液体输送机构与所述给液口(116)依次连通。
- 如权利要求11所述的烹调设备,其特征在于:所述液体输送机构包括均设置在所述机座(9)上的选择装置(4)和第一泵体(6);所述料桶(2)、所述选择装置(4)、所述第一泵体(6)、所述给液口(116)依次连通。
- 如权利要求12所述的烹调设备,其特征在于:所述选择装置(4)内部具有料腔(413),所述选择装置(4)具有出料口(412)和至少一个进料口(411),所述进料口(411)和所述出料口(412)均与料腔(413)连通;所述选择装置(4)的进料口(411)与所述料桶(2)连通;所述选择装置(4)的出料口(412)与所述第一泵体(6)的泵入口(61)连通。
- 如权利要求13所述的烹调设备,其特征在于:所述液体输送机构还包括设置在所述机座(9) 上的转接水路板(3),所述转接水路板(3)上设置有与所述料桶(2)数量相同的液体流道(31),每条液体流道(31)上均开设有进液口(311)和出液口(312);所述料桶(2)与所述进液口(311)一一对应连通;所述出液口(312)与所述选择装置(4)的进料口(411)数量相同且一一对应连通。
- 如权利要求14所述的烹调设备,其特征在于:所述转接水路板(3)上设置有气体流道(32),所述气体流道(32)两端开设进气口(321)和出气口(322);所述出气口(322)与所述料腔(413)连通;所述机座(9)上设置有气阀(8),所述气阀(8)具有进气端(81)和出气端(82),所述进气端(81)与外界连通,所述出气端(82)与所述进气口(321)连通。
- 如权利要求13所述的烹调设备,其特征在于:所述进料口(411)呈圆周排布,每个所述进料口(411)内均设置有单向阀(5);所述选择装置(4)的料腔(413)内转动连接有选择杆(42),所述选择杆(42)用于开启所述单向阀(5);所述选择杆(42)底部设置有第二电机(45),所述第二电机(45)用于控制所述选择杆(42)转动。
- 如权利要求13所述的烹调设备,其特征在于:所述机座(9)上设置有气阀(8),所述气阀(8)具有进气端(81)和出气端(82),所述进气端(81)与外界连通,所述出气端(82)与所述料腔(413)连通。
- 如权利要求11所述的烹调设备,其特征在于:所述液体供料系统包括均设置在所述机座(9)上的至少一个料瓶(101)和第二泵体(102);所述料瓶(101)、所述第二泵体(102)和所述给液口(116)依次连通。
- 如权利要求2所述的烹调设备,其特征在于:所述主机(01)上设有杯体槽(011),所述杯体槽(011)用于放置所述杯体(02);所述杯体槽(011)上设置有锁定装置(05)和/或微动开关结构(06),所述锁定装置(05)用于锁定所述盖体(11),所述微动开关结构(06)用于检测所述盖体(11)是否盖合到位。
- 如权利要求19所述的烹调设备,其特征在于:当所述杯体槽(011)上设置有锁定装置(05)时,所述锁定装置(05)包括支承座(051)、锁扣件(052)和第一驱动结构(053);所述支承座(051)设置在所述主机(01)内,所述锁扣件(052)滑动连接在所述支承座(051)上,所述锁扣件(052)用于锁定所述盖体(11);所述第一驱动结构(053)设置在所述支承座(051)上,所述第一驱动结构(053)控制所述锁扣件(052)进行往复运动。
- 如权利要求2所述的烹调设备,其特征在于:所述主机(01)上设有转动面板结构(07),所述转动面板结构(07)包括面板(071)和第二驱动结构,所述面板(071)的一端转动连接在所述主机(01)上,所述第二驱动结构设置在所述主机(01)上,所述第二驱动结构控制所述面板(071)转动。
- 如权利要求2所述的烹调设备,其特征在于:所述主机(01)上设有挂线扣(012),所述挂线扣(012)处设置有扣合检测结构(08);所述机座(9)上设置有挂线槽(96),所述挂线槽(96)可扣入所述挂线扣(012)内并顶压所述扣合检测结构(08)。
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US20150114236A1 (en) * | 2010-06-04 | 2015-04-30 | Shambhu Nath Roy | Robotic kitchen top cooking apparatus and method for preparation of dishes using computer recipies |
CN113425177A (zh) * | 2021-07-28 | 2021-09-24 | 众信智能科技(深圳)有限公司 | 一种自动化智能炒菜设备 |
CN214484326U (zh) * | 2020-12-29 | 2021-10-26 | 佛山市顺德区美的电热电器制造有限公司 | 一种投料装置、锅盖组件以及烹饪器具 |
CN216166838U (zh) * | 2021-10-29 | 2022-04-05 | 广东新宝电器股份有限公司 | 一种自动加料智能烹饪机 |
CN115736672A (zh) * | 2022-12-14 | 2023-03-07 | 广东纯米电器科技有限公司 | 一种烹调设备 |
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JPH0576456A (ja) * | 1991-09-24 | 1993-03-30 | Tokyo Electric Co Ltd | 調理器 |
US20150114236A1 (en) * | 2010-06-04 | 2015-04-30 | Shambhu Nath Roy | Robotic kitchen top cooking apparatus and method for preparation of dishes using computer recipies |
CN214484326U (zh) * | 2020-12-29 | 2021-10-26 | 佛山市顺德区美的电热电器制造有限公司 | 一种投料装置、锅盖组件以及烹饪器具 |
CN113425177A (zh) * | 2021-07-28 | 2021-09-24 | 众信智能科技(深圳)有限公司 | 一种自动化智能炒菜设备 |
CN216166838U (zh) * | 2021-10-29 | 2022-04-05 | 广东新宝电器股份有限公司 | 一种自动加料智能烹饪机 |
CN115736672A (zh) * | 2022-12-14 | 2023-03-07 | 广东纯米电器科技有限公司 | 一种烹调设备 |
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