WO2022193650A1 - 衣物护理机 - Google Patents
衣物护理机 Download PDFInfo
- Publication number
- WO2022193650A1 WO2022193650A1 PCT/CN2021/125949 CN2021125949W WO2022193650A1 WO 2022193650 A1 WO2022193650 A1 WO 2022193650A1 CN 2021125949 W CN2021125949 W CN 2021125949W WO 2022193650 A1 WO2022193650 A1 WO 2022193650A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- storage box
- functional solution
- chamber
- boiler
- spray head
- Prior art date
Links
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims abstract description 46
- 238000010438 heat treatment Methods 0.000 claims abstract description 5
- 239000007788 liquid Substances 0.000 claims description 96
- 239000007921 spray Substances 0.000 claims description 37
- 238000009434 installation Methods 0.000 claims description 13
- 230000007423 decrease Effects 0.000 claims description 11
- 239000003595 mist Substances 0.000 claims description 4
- 239000000243 solution Substances 0.000 abstract description 133
- 239000011259 mixed solution Substances 0.000 abstract description 8
- 238000010586 diagram Methods 0.000 description 13
- 230000000694 effects Effects 0.000 description 9
- 238000000034 method Methods 0.000 description 7
- 238000007789 sealing Methods 0.000 description 7
- 239000000203 mixture Substances 0.000 description 6
- 239000008400 supply water Substances 0.000 description 5
- 239000000835 fiber Substances 0.000 description 4
- 230000000474 nursing effect Effects 0.000 description 4
- 238000004891 communication Methods 0.000 description 3
- 238000004332 deodorization Methods 0.000 description 3
- 238000005485 electric heating Methods 0.000 description 3
- 230000035515 penetration Effects 0.000 description 3
- 238000005507 spraying Methods 0.000 description 3
- 230000001954 sterilising effect Effects 0.000 description 3
- 238000004659 sterilization and disinfection Methods 0.000 description 3
- 230000008569 process Effects 0.000 description 2
- 230000037303 wrinkles Effects 0.000 description 2
- 229910000831 Steel Inorganic materials 0.000 description 1
- 238000005119 centrifugation Methods 0.000 description 1
- 230000008859 change Effects 0.000 description 1
- 230000003247 decreasing effect Effects 0.000 description 1
- 238000004090 dissolution Methods 0.000 description 1
- 238000001035 drying Methods 0.000 description 1
- 230000006872 improvement Effects 0.000 description 1
- 230000003993 interaction Effects 0.000 description 1
- 238000010409 ironing Methods 0.000 description 1
- 239000002184 metal Substances 0.000 description 1
- 229910052755 nonmetal Inorganic materials 0.000 description 1
- 230000000149 penetrating effect Effects 0.000 description 1
- 230000007903 penetration ability Effects 0.000 description 1
- 150000003384 small molecules Chemical class 0.000 description 1
- 239000010959 steel Substances 0.000 description 1
- 239000011800 void material Substances 0.000 description 1
Images
Classifications
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F73/00—Apparatus for smoothing or removing creases from garments or other textile articles by formers, cores, stretchers, or internal frames, with the application of heat or steam
- D06F73/02—Apparatus for smoothing or removing creases from garments or other textile articles by formers, cores, stretchers, or internal frames, with the application of heat or steam having one or more treatment chambers
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F58/00—Domestic laundry dryers
- D06F58/10—Drying cabinets or drying chambers having heating or ventilating means
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F58/00—Domestic laundry dryers
- D06F58/20—General details of domestic laundry dryers
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F58/00—Domestic laundry dryers
- D06F58/20—General details of domestic laundry dryers
- D06F58/203—Laundry conditioning arrangements
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B40/00—Technologies aiming at improving the efficiency of home appliances, e.g. induction cooking or efficient technologies for refrigerators, freezers or dish washers
Definitions
- the present application relates to the technical field of household appliances, for example, to a clothing care machine.
- a clothes care machine generally includes a steam generating device and a care box.
- the steam generated by the steam generating device is passed into the care box, which can smooth the wrinkles on the clothes in the care box and realize the wrinkle removal function of the clothes.
- a functional solution watering can be configured for the clothes care machine, and by pressing the watering can, the functional solution can be sprayed on the parts of the clothes that need to be cared for.
- the embodiment of the present application provides a clothes care machine, which can quickly and efficiently penetrate the steam molecules of the functional solution into the depth of the fiber layer of the clothes, so as to realize the deep care of the clothes, so the care effect is good.
- the present application provides a clothing care machine, comprising: a shell, a boiler, a functional solution storage box and a water tank; a clothing care chamber is provided inside the shell, a steam generation chamber is provided in the boiler, and the steam generation chamber is communicated with the clothing care chamber ;
- the water tank communicates with the boiler and is used to supply water to the steam generation chamber, and the functional solution storage box is communicated with the boiler and is used to supply functional solution to the steam generation chamber;
- the steam generation chamber is used to make the water supplied by the water tank and the functional solution storage box
- the supplied functional solutions are mixed and formed into a mixed solution, and the boiler is used to heat the mixed solution to generate steam in the steam generation chamber and enter the steam into the laundry care chamber.
- the boiler has a first liquid inlet that communicates with the steam generating chamber, and the functional solution storage box has a storage box liquid outlet; the first liquid inlet is provided with a spray head assembly, and the spray head assembly There is a liquid channel, and both ends of the liquid channel are respectively connected with the steam generating chamber and the liquid outlet of the storage box; the liquid channel includes a first channel section, and the cross-sectional area of the first channel section decreases along the flow direction of the functional solution, so that the The functional solution flowing out from the liquid outlet of the storage box is sprayed into the steam generating chamber in the form of mist.
- the nozzle assembly includes a nozzle core and a nozzle inserted in the first liquid inlet, the nozzle has a through hole, and a part of the hole section of the through hole facing the inner side of the steam generating chamber accommodates the nozzle core There is a gap in the radial direction between the nozzle core and a part of its corresponding hole segments, and the nozzle core and the through holes together define a first channel segment.
- the liquid channel includes a pressurizing section located on one side of the end of the first channel section, and the pressurizing section is used to pressurize the functional solution flowing out of the first channel section.
- the nozzle assembly further includes a nozzle cap covered on the nozzle, the nozzle cap is provided with a nozzle hole communicating with the pressurizing section; the end of the nozzle core facing the nozzle cap is provided with a pressurization
- the tank and at least one centrifugal tank the first end of the centrifugal tank is communicated with the booster tank, the second end of the centrifugal tank protrudes away from the booster tank and communicates with the first channel section, the booster tank and the centrifugal tank
- the body and the nozzle cap together define a pressurized section.
- the bottom of the pressurizing tank has a protrusion protruding toward the nozzle cap, and the cross-sectional area of the protrusion gradually decreases along the flow direction of the functional solution.
- the nozzle assembly further includes an elastic opening and closing member, the elastic opening and closing member is located on the side of the nozzle core away from the nozzle hole, the through hole of the nozzle head is a stepped hole, and the stepped hole has a step toward the nozzle hole
- the elastic opening and closing member can reciprocate along the length direction of the nozzle core to abut against the stepped surface and close the liquid channel, or separate from the stepped surface and open the liquid channel.
- the housing has an opening communicating with the clothing care chamber, the opening is provided with a door, and the functional solution storage box is connected to a side of the door facing the clothing care chamber.
- the side of the door body facing the clothing care chamber is provided with a mounting groove for fixing the functional solution storage box, and the bottom of the mounting groove is provided with a first liquid inlet to the boiler Connected joint, when the functional solution storage box is installed in the mounting groove, the joint is inserted into the liquid outlet of the storage box.
- a one-way valve is provided in the liquid outlet of the storage box, the one-way valve includes a valve body, a valve core and a valve seat, the valve body is connected to the edge of the liquid outlet of the storage box, and the valve seat
- the valve core and the valve core are arranged in the valve body, and when the connector is inserted into the liquid outlet of the storage box, it can press the valve core and make the valve core separate from the valve seat, so as to open the liquid outlet of the storage box.
- the clothing care machine of the present application includes: a shell, a boiler, a functional solution storage box and a water tank; the shell has a clothing care chamber inside, the boiler has a steam generation chamber, and the steam generation chamber communicates with the clothing care chamber; the water tank is connected to the clothing care chamber.
- the boiler is connected and used to supply water to the steam generating chamber, and the functional solution storage box is communicated with the boiler and used to supply the functional solution to the steam generating chamber; the steam generating chamber is used for the function of supplying the water supplied by the water tank with the functional solution storage box.
- the solutions mix and form a mixture, and the boiler is used to heat the mixture to generate steam in the steam generation chamber and into the laundry care chamber.
- the boiler can heat the mixture of the functional solution and water to form steam and supply it to the clothing care chamber.
- the functional solution is flooded in the clothing care chamber in the form of small steam molecules, which can quickly and efficiently penetrate deep into the fiber layer of the clothing to achieve deep care of the clothing; and because the small steam molecules of the functional solution are hot molecules , the penetration of clothing is strong, so the care effect of clothing is better.
- FIG. 1 is a schematic structural diagram of a clothing care machine provided by an embodiment of the application
- FIG. 2 is a schematic diagram of the exploded structure of the boiler in the laundry care machine provided by the embodiment of the application;
- FIG. 3 is a cross-sectional view of a boiler in a laundry care machine provided by an embodiment of the application;
- FIG. 4 is a cross-sectional view of a structure of a spray head assembly in a laundry care machine provided by an embodiment of the application;
- FIG. 5 is a top view of a nozzle core in a laundry care machine provided by an embodiment of the application.
- FIG. 6 is a schematic structural diagram of a nozzle core in a laundry care machine provided by an embodiment of the application.
- FIG. 7 is a cross-sectional view of a nozzle core in a laundry care machine provided by an embodiment of the present application.
- FIG. 8 is a cross-sectional view of another structure of the shower head assembly in the laundry care machine provided by the embodiment of the application;
- FIG. 9 is a schematic diagram of an exploded structure of a door body in a laundry care machine provided by an embodiment of the present application.
- FIG. 10 is a cross-sectional view of the installation situation of the functional solution storage box and the door body in the clothing care machine provided by the embodiment of the application;
- Fig. 11 is a partial enlarged view at A of Fig. 10;
- FIG. 12 is a schematic diagram of an exploded structure of a functional solution storage box in a clothing care machine provided by an embodiment of the application;
- FIG. 13 is a cross-sectional view of a hot air device in a laundry care machine provided by an embodiment of the application;
- FIG. 15 is a schematic diagram of the control logic of the laundry care machine provided by the embodiment of the application.
- the laundry care machine has the problem that the laundry care effect is not good. This is because the laundry care machine uses a watering can to spray the parts that need care when special care is required for the laundry.
- the functional solution sprayed on the surface of the clothes is a cold molecule, and its penetration ability is poor, so the nursing effect is not good.
- the area of the site requiring care is large, the workload of the operator is large and the efficiency is also low.
- the clothes care machine of the present application improves the penetration force of clothes by converting the functional solution into hot steam molecules. Inside, the clothes can be cared for more evenly and effortlessly, and the care efficiency of the clothes is also improved.
- FIG. 1 is a schematic structural diagram of a clothes care machine provided by an embodiment of the present application.
- the functional solution in the present application refers to a solution having functions such as sterilization and deodorization, and may be, for example, a sterilization liquid, a deodorization liquid, or the like.
- the laundry care machine 100 of the present application includes: a casing 1 , a boiler 2 , a functional solution storage box 3 and a water tank 5 .
- the laundry care machine 100 further includes a hot air device 4 .
- the hot air device 4 is arranged in the inner tank 11 , and the hot air device 4 is used to generate hot air and transport it into the inner tank 11 of the housing 1 to dry the clothes.
- the casing 1 has a clothes care chamber 12 inside, and the boiler 2 has a steam generation chamber 20.
- the steam generation chamber 20 communicates with the clothes care chamber 12;
- the water tank 5 communicates with the boiler 2 and is used to send
- the steam generating chamber 20 supplies water
- the functional solution storage box 3 communicates with the boiler 2 and is used to supply the functional solution to the steam generating chamber 20;
- the functional solutions are mixed to form a mixed solution, and the boiler 2 is used to heat the mixed solution to generate steam in the steam generation chamber 20 and into the laundry care chamber 12 .
- the boiler 2 can heat the mixture of the functional solution and water to form steam, and Supply to the laundry care chamber 12 .
- the functional solution is flooded in the clothing care chamber 12 in the form of small steam molecules, which can quickly and efficiently penetrate deep into the fiber layer of the clothing to achieve deep care of the clothing; and because the small steam molecules of the functional solution are in a hot state Molecules have strong penetrating power to clothing, so the care effect on clothing is better.
- the steam molecules of the functional solution are gaseous medium, which will fill the interior of the clothing care chamber 12, which can cover the clothing, and can care for the clothing more uniformly and effortlessly, and also improve the care efficiency of the clothing.
- the housing 1 is the appearance of the entire clothing care machine 100, and can be made of metal or non-metal.
- the housing 1 may include an outer shell 10 and an inner tank 11 provided in the outer shell 10, and a clothing care chamber 12 is formed in the inner tank 11; the clothing care chamber 12 can be hung by hanging parts such as hangers 16 to be treated clothing.
- Devices such as the boiler 2 , the hot air device 4 , and the water tank 5 can be arranged in the accommodating cavity 13 .
- the housing 1 also has an opening (not shown) that communicates with the clothing care chamber 12.
- a door 15 is provided at the opening. When the door 15 is opened, clothing can be taken out or put into the clothing care machine 100. When the body 15 is closed, the steam or hot air in the clothes care machine 100 can be prevented from leaking out, thereby ensuring the ironing and drying effects.
- FIG. 2 is a schematic diagram of an exploded structure of a boiler in a clothes care machine provided by an embodiment of the application
- FIG. 3 is a cross-sectional view of a boiler in the clothes care machine provided by an embodiment of the application.
- the boiler 2 has a steam generating chamber 20
- the boiler 2 has a first liquid inlet 21 communicating with the steam generating chamber 20
- the functional solution storage box 3 There is a storage box liquid outlet 31 (refer to the following Figure 12);
- the first liquid inlet 21 is provided with a nozzle assembly 22, and the nozzle assembly 22 has a liquid channel 23, and the two ends of the liquid channel 23 are respectively connected with the steam generating chamber.
- 20 and the liquid outlet 31 of the storage box that is, one end of the liquid channel 23 is in communication with the liquid outlet 31 of the storage box, and the other end of the liquid channel 23 is in communication with the steam generating chamber 20 , for example, extending into the steam generating chamber 20 .
- the functional solution in the functional solution storage box 3 enters the steam generating chamber 20 through the liquid outlet 31 of the storage box and the liquid channel 23 of the spray head assembly 22 .
- the functional solution storage box 3 (such as the storage box liquid outlet) and the nozzle assembly 22 are communicated through the first pipe 24, that is, one end of the first pipe 24 is communicated with the top of the liquid channel 23, and the first pipe The other end of 24 is communicated with the liquid outlet 31 of the storage box.
- a first pump 25 can be provided on the first pipeline 24.
- the boiler 2 also has a second liquid inlet 26 communicating with the steam generating chamber 20
- the water tank 5 has a water tank liquid outlet 51
- the second liquid inlet 26 is connected to the water tank outlet 51 .
- the liquid port 51 communicates with each other.
- the water tank liquid outlet 51 and the second liquid inlet 26 are connected through the second pipeline 52, that is, one end of the second pipeline 52 is connected with the second liquid inlet 26, and the other end of the second pipeline 52 is connected with the water tank liquid outlet 51 Connected.
- a second pump 53 may be provided on the second pipe 52 .
- the functional solution in the functional solution storage box 3 enters the steam generation chamber 20 through the first pipe 24 and the first pump 25
- the water in the water tank 5 enters the steam generation chamber through the second pipe 52 and the second pump 53 .
- the functional solution and water may be mixed in the steam generating chamber 20 to dilute the functional solution.
- a heating plate 27 may also be provided on the outer cavity wall of the steam generating chamber 20. After the heating plate 27 is energized, the mixed liquid in the steam generating chamber 20 is heated to change the mixed liquid into Small molecule vapors of mixed liquids.
- the boiler 2 may be provided with a boiler liquid outlet 28, and the boiler liquid outlet 28 is communicated with the clothing care chamber 12, so that small molecular steam can enter the clothing care chamber 12 through the boiler liquid outlet 28, And escape to all corners in the laundry care chamber 12, thereby wrapping the laundry to be treated.
- the structure of the nozzle assembly 22 will be described below with reference to FIGS. 3 and 4 .
- the liquid channel 23 includes the first channel section 231, and the cross-sectional area of the first channel section 231 decreases along the flow direction K of the functional solution (refer to the dashed arrow in FIG. 4), so that the liquid outlet from the storage box is reduced.
- the functional solution flowing out from 31 is sprayed into the steam generating chamber 20 in the form of a mist.
- the functional solution can be sprayed divergently, so as to dissolve into the water contained in the steam generating chamber 20 better and faster.
- the cross section of the first channel section 231 in the above solution refers to the cross section perpendicular to the axial direction of the first channel section 231 .
- the cross-sectional area of the first channel section 231 decreases along the flow direction K of the functional solution, and the decrease here may be a gradual decrease or a stepwise decrease.
- the nozzle assembly 22 includes a nozzle core 222 and a nozzle 221 inserted in the first liquid inlet 21.
- the nozzle 221 has a through hole 2211, and the through hole 2211 faces a part of the inner side of the steam generating chamber 20.
- the nozzle core 222 is accommodated in the hole segment, and there is a gap 2311 in the radial direction between the nozzle core 222 and a part of the corresponding hole segment.
- the gap 2311 can be, for example, an annular space.
- the first channel section 231 actually includes a cylindrical channel section and an annular channel section, and the cross-sectional area decreases along the flow direction K of the functional solution.
- the showerhead core 222 has an offset in the radial direction of the through hole 2211, even when it contacts the inner wall of the through hole 2211, as long as there is a gap in the axial direction between the showerhead core 222 and a part of the inner wall of the through hole 2211.
- the depth of the showerhead core 222 extending into the through hole 2211 can also be set according to actual needs, but the showerhead core 222 cannot completely penetrate the through hole 2211 .
- the liquid channel 23 further includes a pressurizing section 232 located at one end of the first channel section 231 , and the pressurizing section 232 is used to pressurize the functional solution flowing out of the first channel section 231 .
- the functional solution can be pressurized and sprayed out, so that the functional solution spray has a better divergence angle and spray area, thereby achieving better dissolution efficiency.
- the end of the first channel section 231 refers to the end of the first channel section 231 close to the inner side of the steam generating chamber 20 .
- FIG. 4 is a cross-sectional view of a structure of a spray head assembly in a clothing care machine provided by an embodiment of the application
- FIG. 5 is a top view of a spray head core in the clothing care machine provided by an embodiment of the application
- FIG. 6 is a clothing provided by an embodiment of the application
- FIG. 7 is a cross-sectional view of the nozzle core in the clothing care machine provided by the embodiment of the application.
- the nozzle assembly 22 further includes a nozzle cap 223 covering the nozzle 221 , and the nozzle cap 223 is provided with a nozzle hole 2231 that communicates with the boosting section 232 ;
- the end of the nozzle core 222 facing the nozzle cap 223 is provided with a pressurization groove 2221 and at least one centrifugal groove 2222.
- the first end of the centrifugal groove 2222 communicates with the pressurization groove 2221 and the second end of the centrifugal groove 2222 faces away from the pressurization groove
- the direction of 2221 protrudes and communicates with the first channel section 231
- the tank bodies of the pressurizing groove 2221 and the centrifugal groove 2222 and the nozzle cap 223 together define the pressurizing section 232 .
- the spray hole 2231 provided in the spray head cap 223 can facilitate the spraying of the functional solution from the spray hole 2231 .
- the centrifugal tank 2222 is arranged around the pressurized tank 2221 and communicated with the pressurized tank 2221, so that the functional solution flows through the first channel section 231 and enters the pressurized tank 2221 from the outer end of the centrifugal tank 2222.
- the functional solution is pressurized by centrifugation of the solution.
- the pressurizing section 232 is actually defined by the groove body of the pressurizing groove 2221 , the groove body of the centrifugal groove 2222 , and the wall surface of the nozzle cap 223 facing away from the inner side of the steam generating chamber 20 .
- a plurality of centrifugal grooves 2222 may be disposed on the outer edge portion of the pressurization groove 2221 in a divergent shape, so that the centrifugal effect of the centrifugal grooves 2222 on the functional solution is more obvious.
- the nozzle core 222 shown in FIG. 5 the case of having three centrifugal grooves 2222 is illustrated, and the extending direction of each centrifugal groove 2222 can be deflected in the same direction, for example, all deflected toward the center of the boosting groove 2221, so that the three centrifugal grooves 2222 can be deflected in the same direction.
- Each centrifugal groove 2222 is deflected counterclockwise. It can be understood that, the number of the centrifugal grooves 2222 can be selected as other as required, and the extension direction thereof can also be set as other. This is actually equivalent to forming the supercharging section 232 as a turbo supercharging chamber.
- the groove bottom of the boosting groove 2221 may have a protrusion 2223 protruding toward the nozzle cap 223, and the cross-sectional area of the protrusion 2223 may gradually decrease along the flow direction of the functional solution.
- the protrusion 2223 can be formed into a cone, so that a pressurized section 232 with a gradually decreasing cross section along the flow direction of the functional solution can be formed between the surface of the protrusion 2223 and the surface opposite to the nozzle cap 223,
- the guiding effect of the conical surface of the upper protrusion 2223 makes the pressurizing effect of the pressurizing section 232 better.
- the spray head cap 223 is detachably connected to the spray head 221 , for example, it can be clamped on the spray head 221 .
- a component with a one-way valve function may also be provided in the spray head 221 .
- the nozzle assembly 22 further includes an elastic opening and closing member 224, the elastic opening and closing member 224 is located on the side of the nozzle core 222 away from the nozzle hole 2231, the through hole 2211 of the nozzle head 221 is a stepped hole, and the stepped hole has a direction toward the nozzle hole 2231.
- the elastic shutter 224 can reciprocate along the length direction of the nozzle core 222 to abut against the stepped surface 2212 and close the liquid channel 23 , or escape from the stepped surface 2212 and open the liquid channel 23 .
- the functional solution storage box 3 delivers the functional solution to the boiler 2
- the functional solution flows into the through hole 2211
- the elastic opening and closing member 224 is punched open due to the liquid pressure, and the elastic opening and closing member 224 moves toward the steam generating chamber 20 and escapes from the step.
- the functional solution enters the channel section corresponding to the nozzle core 222 on the first channel section 231 through the gap between the stepped surface 2212 and the elastic opening and closing member 224; the functional solution storage box 3 stops delivering the functional solution to the boiler 2
- the elastic opening and closing member 224 has elasticity, and returns to the state of abutting on the stepped surface 2212 , closing the liquid channel 23 .
- the elastic opening and closing member 224 may include an elastic member 2241 and a sealing block 2242.
- One end of the elastic member 2241 is connected to the sealing block 2242.
- the other end of 2241 is sleeved on the nozzle core 222.
- the functional solution exerts an inward force toward the sealing block 2242, and the elastic member 2241 is compressed by the sealing block 2242 and separates from the step surface 2212. , to open the liquid channel 23 ; when the supply of the functional storage solution to the nozzle assembly 22 is stopped, the elastic member 2241 restores its original shape and pushes the sealing block 2242 to abut against the stepped surface 2212 to close the liquid channel 23 .
- FIG. 8 is a cross-sectional view of another structure of the spray head assembly in the clothes care machine provided by the embodiment of the application.
- the spray head assembly includes a spray head 221 ′, and a through-hole is arranged in the spray head 221 ′.
- the hole 2211 ′ serves as the liquid channel 23 , and both ends of the through hole 2211 ′ are communicated with the liquid outlet 31 of the storage box and the steam generating chamber 20 respectively. In this way, the functional solution can enter into the steam generating chamber 20 through the through hole 2211'.
- FIG. 9 is a schematic diagram of the exploded structure of the door body in the clothing care machine provided by the embodiment of the application
- FIG. 10 is a cross-sectional view of the installation situation of the functional solution storage box and the door body in the clothing care machine provided by the embodiment of the application
- FIG. 11 is a diagram Fig. 12 is a partial enlarged view of part A of 10
- Fig. 12 is a schematic diagram of an exploded structure of a functional solution storage box in a clothing care machine provided by an embodiment of the application.
- the housing 1 has an opening communicating with the clothing care chamber 12, and a door 15 is provided at the opening position, and the functional solution storage box 3 can be connected to the door 15 facing the clothing on one side of the care chamber 12 .
- the functional solution storage box 3 can be set as a consumable, and after the functional solution in it is used up, only the functional solution storage box 3 needs to be replaced.
- the functional solution storage box 3 may have a box opening 33 , and the box opening 33 may be provided with a box cover 34 that can open and close the box opening 33 .
- the box cover 34 is opened, the required amount of functional solution can be added to the functional solution storage box 3 .
- a side of the door body 15 facing the clothing care chamber 12 is provided with a fixing function
- the installation groove 151 of the solution storage box 3 the bottom of the installation groove 151 is provided with a joint 152 that communicates with the first liquid inlet 21 of the boiler 2.
- the joint 152 Insert into the liquid outlet 31 of the storage box.
- the manner in which the functional solution storage box is installed in the installation groove may be a push-pull type or a rotating type, which is not limited here.
- the connector 152 here can be a common connector with a through hole inside.
- the connector 152 is arranged on the groove bottom of the installation groove 151 and protrudes in a direction away from the groove bottom of the installation groove 151, so that the functional solution storage box 3 When installed in the installation groove 151 , it can be inserted into the liquid outlet 31 of the storage box, so that the interior of the functional solution storage box 3 is communicated with the first liquid inlet 21 of the boiler 2 .
- One end of the connector 152 is inserted into the functional solution storage box 3 , and the other end is connected to the first pipe 24 .
- the functional solution storage box 3 includes a front cover 35 and a rear cover 36.
- the front cover 35 and the rear cover 36 together form a accommodating cavity, and the functional solution is contained in the accommodating cavity.
- the storage box liquid outlet 31 of the functional solution storage box 3 is opened on the side of the functional solution storage box 3 facing the installation groove 151 .
- the front cover 35 and the rear cover 36 are in a sealed connection, and the sealed connection can be directly welded or sealed through a sealing ring.
- the liquid outlet 31 of the storage box is provided with a one-way valve 37 , which can prevent the functional solution in the steam generating chamber 20 of the boiler 2 from flowing back into the functional solution storage box 3 .
- the one-way valve 37 includes a valve body 371, a valve core 372 and a valve seat 373, the valve body 371 is connected to the edge of the liquid outlet 31 of the storage box, the valve seat 373 and the valve core 372 are arranged in the valve body 371, and the joint 152 is in When inserted into the storage box liquid outlet 31 , the valve core 372 can be pressed against the valve core 372 and separated from the valve seat 373 , so as to open the storage box liquid outlet 31 .
- the interior of the valve body 371 is hollow, and the valve body 371 is a structure protruding from the liquid outlet 31 of the storage box to the interior of the functional solution storage box 3 .
- the valve core 372 can be, for example, a steel ball, and the valve seat 373 can be, for example, an annular sealing ring.
- the valve seat 373 is also a hollow structure, the valve seat 373 is installed inside the valve body 371, the outer contour size of the valve core 372 can be larger than the inner diameter of the inner hollow part of the valve seat 373, so that when the valve core 372 abuts on the valve When the seat 373 is on the seat 373, the hollow part inside the valve seat 373 can be blocked, that is, the liquid outlet 31 of the storage box can be closed.
- the one-way valve 37 further includes an elastic member 374 , such as a spring, one end of the elastic member 374 is connected to the bottom of the valve body 371 , and the other end abuts on the side of the valve core 372 facing the bottom of the valve body 371 . 11 , when the connector 152 is inserted into the one-way valve 37, the valve core 372 is pushed to move inside the functional solution storage box 3, so that the valve core 372 is separated from the valve seat 373, and the functional solution is removed from the valve core 372 and the valve core 373.
- an elastic member 374 such as a spring
- the functional solution storage box 3 flows out from the gap between the seats 373, and flows into the boiler 2 through the first pipe 24; Move to the outside of the functional solution storage box 3 to make the valve core 372 abut the valve seat 373 to close the storage box liquid outlet 31 and prevent the functional solution from flowing out of the storage box liquid outlet 31 .
- the one-way valve may further include a valve seat pressing plate, and the valve seat pressing plate is used to fix the valve seat on the valve body.
- FIG. 13 is a cross-sectional view of the hot air device in the clothing care machine provided by the embodiment of the application
- FIG. 14 is a right side view of the hot air device in the clothing care machine provided by the embodiment of the application
- FIG. Control schematic diagram is a schematic diagram of the hot air device in the clothing care machine provided by the embodiment of the application.
- the hot air device 4 is used for providing hot air into the clothing care chamber 12 to dry, sterilize and so on the clothes in the clothing care chamber 12 .
- the hot air device 4 includes an outer cover 41, and an air inlet channel 42 and an air outlet channel 43 opened on the outer cover 41.
- the hot air device 4 also includes an evaporator 45, a condenser 46, a motor 48, a wind wheel 49, And PTC electric heating assembly 47 .
- the hot air device 4 also includes a compressor 44 connected to the evaporator 45 and the condenser 46 .
- the air inlet channel 42 and the air outlet channel 43 are both communicated with the clothing care chamber 12 .
- the air in the clothing care chamber 12 enters the outer cover 41 from the air inlet channel 42, and is dehumidified by the evaporator 45 and heated by the condenser 46, and then becomes hot air, and then the PTC electric heating component 47 further heats the hot air.
- the reheated hot air enters the clothes care chamber 12 through the air outlet channel 43, and the clothes are treated accordingly.
- the door is closed, and the clothes care machine is turned on, it is first determined whether the functional solution care mode is selected, and if it is determined to be yes, the first and second pumps are activated, Use the functional solution to care for the clothes; if the judgment is negative, the first pump and the second pump are maintained in the off state, and the functional solution care mode is not activated.
- the clothes care machine 100 includes: a casing 1 , a boiler 2 , a functional solution storage box 3 and a water tank 5 ; the casing 1 has a clothes care chamber 12 inside, and the boiler 2 has a steam generating chamber 20 , which generates steam.
- the chamber 20 communicates with the laundry care chamber 12; the water tank 5 communicates with the boiler 2 and is used for supplying water to the steam generating chamber 20, and the functional solution storage box is communicated with the boiler 2 and is used for supplying the functional solution to the steam generating chamber 20; the steam The generating chamber 20 is used to mix the water supplied by the water tank 5 with the functional solution supplied by the functional solution storage box 3 to form a mixed solution, and the boiler 2 is used to heat the mixed solution so that the steam generating chamber 20 can generate steam and make the steam enter the clothes Nursing chamber 12.
- the boiler 2 can heat the mixture of the functional solution and water to form steam and supply it to the clothing care chamber In the chamber 12, the functional solution is flooded in the clothing care chamber 12 in the form of small steam molecules, which can quickly and efficiently penetrate deep into the fiber layer of the clothing to achieve deep care of the clothing; and because the small steam molecules of the functional solution are Hot molecules have strong penetration to clothing, so the care effect of clothing is better.
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- Textile Engineering (AREA)
- Accessory Of Washing/Drying Machine, Commercial Washing/Drying Machine, Other Washing/Drying Machine (AREA)
Abstract
本申请提供一种衣物护理机。衣物护理机包括:壳体、锅炉、功能溶液存储盒以及水箱;壳体内部具有衣物护理腔室,锅炉内具有蒸汽发生腔室,蒸汽发生腔室与衣物护理腔室连通;水箱与锅炉连通,并用于向蒸汽发生腔室供水,功能溶液存储盒与锅炉连通,并用于向蒸汽发生腔室供应功能溶液;蒸汽发生腔室用于使水箱供应的水与功能溶液存储盒供应的功能溶液混合并形成混合液,锅炉用于加热混合液以使蒸汽发生腔室产生蒸汽,并使蒸汽进入衣物护理腔室。
Description
本申请要求在2021年03月19日提交中国专利局、申请号为202110297361.7的中国专利申请的优先权,该申请的全部内容通过引用结合在本申请中。
本申请涉及家用电器技术领域,例如涉及一种衣物护理机。
随着生活水平的提高,人们对衣物护理的需求也日益趋向个性化与多元化,衣物护理机由此得到广泛的应用。
衣物护理机一般包括蒸汽发生装置和护理箱,蒸汽发生装置产生的蒸汽通入到护理箱内,可以抚平护理箱内衣物上的褶皱,实现对衣物的去皱功能。在有更深层次的护理需求时,例如在需要对衣物进行除菌、去味等处理时,需要向衣物喷洒具有除菌、去味等作用的功能溶液。具体的,可以为衣物护理机配置一个功能溶液喷壶,通过按压喷壶而将功能溶液喷洒在衣物需要护理的部位。
然而,上述的护理方式中,通过将功能溶液喷洒在衣物表面,功能溶液无法深层次地护理到衣物内部,因而对衣物的护理效果不佳。
发明内容
本申请实施例提供一种衣物护理机,可以将功能溶液的蒸汽分子快速、高效地渗透到衣物的纤维层深处,实现对衣物的深度护理,因而护理效果较好。
本申请提供一种衣物护理机,包括:壳体、锅炉、功能溶液存储盒以及水箱;壳体内部具有衣物护理腔室,锅炉内具有蒸汽发生腔室,蒸汽发生腔室与衣物护理腔室连通;水箱与锅炉连通,并用于向蒸汽发生腔室供水,功能溶液存储盒与锅炉连通,并用于向蒸汽发生腔室供应功能溶液;蒸汽发生腔室用于使水箱供应的水与功能溶液存储盒供应的功能溶液混合并形成混合液,锅炉用于加热混合液以使蒸汽发生腔室产生蒸汽,并使蒸汽进入衣物护理腔室。
在一种可选的实施方式中,锅炉具有与蒸汽发生腔室连通的第一进液口,功能溶液存储盒具有存储盒出液口;第一进液口内设有喷头组件,喷头组件内具有液体通道,液体通道的两端分别与蒸汽发生腔室以及存储盒出液口连通;液体通道包括第一通道段,第一通道段的横截面积沿功能溶液的流动方向减小, 以使从存储盒出液口流出的功能溶液呈雾状喷出至蒸汽发生腔室内。
在一种可选的实施方式中,喷头组件包括喷头芯和插设在第一进液口内的喷头,喷头内具有贯穿孔,贯穿孔朝向蒸汽发生腔室内侧的一部分孔段中容纳有喷头芯,喷头芯和其对应的一部分孔段间沿径向具有空隙,喷头芯和贯穿孔共同限定出第一通道段。
在一种可选的实施方式中,液体通道包括位于第一通道段末端一侧的增压段,增压段用于使第一通道段流出的功能溶液增压。
在一种可选的实施方式中,喷头组件还包括盖设在喷头上的喷头帽,喷头帽上开设有与增压段连通的喷孔;喷头芯朝向喷头帽的端部上设有增压槽和至少一个离心槽,离心槽的第一端和增压槽连通,离心槽的第二端向背离增压槽的方向伸出并与第一通道段连通,增压槽和离心槽的槽体与喷头帽共同限定出增压段。
在一种可选的实施方式中,增压槽的槽底具有朝向喷头帽凸出的凸起,凸起的横截面积沿功能溶液的流动方向逐渐减小。
在一种可选的实施方式中,喷头组件还包括弹性开闭件,弹性开闭件位于喷头芯的背离喷孔的一侧,喷头的贯通孔为阶梯孔,阶梯孔具有朝向喷孔的台阶面,弹性开闭件可沿喷头芯的长度方向往复移动,以抵接于台阶面并关闭液体通道,或者脱离台阶面并打开液体通道。
在一种可选的实施方式中,壳体上具有与衣物护理腔室连通的开口,开口上设有门体,功能溶液存储盒连接在门体的朝向衣物护理腔室的一面上。
在一种可选的实施方式中,门体的朝向衣物护理腔室的一面上设有用于固定功能溶液存储盒的安装凹槽,安装凹槽的槽底设有与锅炉的第一进液口连通的接头,功能溶液存储盒安装在安装凹槽中时,接头插入存储盒出液口中。
在一种可选的实施方式中,存储盒出液口中设有单向阀,单向阀包括阀体、阀芯以及阀座,阀体连接在存储盒出液口的边缘部上,阀座和阀芯设置于阀体中,接头在插入存储盒出液口中时,能够抵压阀芯并使阀芯脱离阀座,以打开存储盒出液口。
本申请的衣物护理机包括:壳体、锅炉、功能溶液存储盒以及水箱;壳体内部具有衣物护理腔室,锅炉内具有蒸汽发生腔室,蒸汽发生腔室与衣物护理腔室连通;水箱与锅炉连通,并用于向蒸汽发生腔室供水,功能溶液存储盒与锅炉连通,并用于向蒸汽发生腔室供应功能溶液;蒸汽发生腔室用于使水箱供应的水与功能溶液存储盒供应的功能溶液混合并形成混合液,锅炉用于加热混合液以使蒸汽发生腔室产生蒸汽,并使蒸汽进入衣物护理腔室。 上述方案中,通过设置水箱为蒸汽发生腔室供应水,设置功能溶液存储盒向蒸汽发生腔室供应功能溶液,锅炉可以对功能溶液和水的混合液加热形成蒸汽,并供应至衣物护理腔室,功能溶液以蒸汽小分子的形式充斥在衣物护理腔室中,可以快速、高效地渗透到衣物的纤维层深处,实现对衣物的深度护理;并且由于功能溶液的蒸汽小分子是热态分子,对衣物的渗透力较强,因此对衣物的护理效果较佳。
图1为本申请实施例提供的衣物护理机的结构示意图;
图2为本申请实施例提供的衣物护理机中锅炉的分解结构示意图;
图3为本申请实施例提供的衣物护理机中锅炉的剖视图;
图4为本申请实施例提供的衣物护理机中喷头组件的一种结构的剖视图;
图5为本申请实施例提供的衣物护理机中喷头芯的俯视图;
图6为本申请实施例提供的衣物护理机中喷头芯的结构示意图;
图7为本申请实施例提供的衣物护理机中喷头芯的剖视图;
图8为本申请实施例提供的衣物护理机中喷头组件的另一种结构的剖视图;
图9为本申请实施例提供的衣物护理机中门体的分解结构示意图;
图10为本申请实施例提供的衣物护理机中功能溶液存储盒与门体的安装情况的剖视图;
图11为图10的A处的局部放大图;
图12为本申请实施例提供的衣物护理机中功能溶液存储盒的分解结构示意图;
图13为本申请实施例提供的衣物护理机中热风装置的剖视图;
图14为本申请实施例提供的衣物护理机中热风装置的右视图;
图15为本申请实施例提供的衣物护理机的控制逻辑示意图。
附图标记说明:
100-衣物护理机;1-壳体;10-外壳;11-内胆;12-衣物护理腔室;13-容置腔;15-门体;151-安装凹槽;152-接头;16-衣架;2-锅炉;20-蒸汽发生腔室;21-第一进液口;22-喷头组件;221、221'-喷头;2211、2211'-贯穿孔;2212-台 阶面;222-喷头芯;2221-增压槽;2222-离心槽;2223-凸起;223-喷头帽;2231-喷孔;224-弹性开闭件;374、2241-弹性件;2242-密封块;23-液体通道;231-第一通道段;2311-空隙;232-增压段;24-第一管道;25-第一泵;26-第二进液口;27-加热盘;28-锅炉出液口;3-功能溶液存储盒;31-存储盒出液口;33-盒口;34-盒盖;35-前盖;36-后盖;37-单向阀;371-阀体;372-阀芯;373-阀座;4-热风装置;41-外壳;42-进风通道;43-出风通道;44-压缩机;45-蒸发器;46-冷凝器;47-PTC电加热组件;48-电机;49-风轮;5-水箱;51-水箱出液口;52-第二管道;53-第二泵。
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行描述,所描述的实施例是本申请一部分实施例,而不是全部的实施例。
衣物护理机存在对衣物的护理效果不佳的问题。这是由于衣物护理机在需要对衣物进行特殊护理时,采用喷壶对需要护理部位进行喷洒。而喷射到衣物表面的功能溶液是冷态分子,其渗透能力差,因此护理效果不佳。另外,在需要护理的部位面积较大的情况下,操作人员的工作量较大,效率也会较低。
而本申请的衣物护理机通过将功能溶液转变为热态的蒸汽分子,一方面提高了对衣物的渗透力,另一方面,功能溶液的蒸汽分子充斥在衣物护理腔室内部,能将衣物笼罩在内,可以更均匀、省力地护理衣物,也提高了衣物的护理效率。
下面结合附图说明本申请实施例的衣物护理机。图1为本申请实施例提供的衣物护理机的结构示意图。需要说明的是,本申请中的功能溶液是指具有除菌、去味等作用的溶液,例如可以是除菌液、去味液等。
参照图1,本申请的衣物护理机100包括:壳体1、锅炉2、功能溶液存储盒3以及水箱5。在其他一些示例中,衣物护理机100还包括热风装置4。热风装置4设置在内胆11内,热风装置4用于产生热风,并输送至壳体1的内胆11内以烘干衣物。
本申请实施例中,壳体1内部具有衣物护理腔室12,锅炉2内具有蒸汽发生腔室20,蒸汽发生腔室20与衣物护理腔室12连通;水箱5与锅炉2连通,并用于向蒸汽发生腔室20供水,功能溶液存储盒3与锅炉2连通,并用于向蒸汽发生腔室20供应功能溶液;蒸汽发生腔室20用于使水箱5供应的水与功能溶液存储盒3供应的功能溶液混合并形成混合液,锅炉2用于加热混合液以使 蒸汽发生腔室20产生蒸汽,并使蒸汽进入衣物护理腔室12。
在上述方案中,通过设置水箱5为蒸汽发生腔室20供应水,设置功能溶液存储盒3向蒸汽发生腔室20供应功能溶液,锅炉2可以对功能溶液和水的混合液加热形成蒸汽,并供应至衣物护理腔室12。使功能溶液以蒸汽小分子的形式充斥在衣物护理腔室12中,可以快速、高效地渗透到衣物的纤维层深处,实现对衣物的深度护理;并且由于功能溶液的蒸汽小分子是热态分子,对衣物的渗透力较强,因此对衣物的护理效果较佳。
另一方面,功能溶液的蒸汽分子是气态介质,会充斥在衣物护理腔室12内部,能将衣物笼罩在内,可以更均匀、省力地护理衣物,也提高了衣物的护理效率。
其中,壳体1是整个衣物护理机100的外观件,可以采用金属或者非金属制成。可选的,壳体1可以包括外壳10和设于外壳10内的内胆11,内胆11内形成有衣物护理腔室12;衣物护理腔室12内可以通过衣架16等悬挂件悬挂有待护理的衣物。在外壳10和内胆11之间具有间距以形成容置腔13。锅炉2、热风装置4、水箱5等装置可以设置在容置腔13内。
壳体1上还具有与衣物护理腔室12连通的开口(未图示),开口位置处设有门体15,门体15开启时可以从衣物护理机100内取出衣物或放入衣物,门体15关闭时,可以防止衣物护理机100内的蒸汽或热风外泄,保证熨烫及烘干效果。
图2为本申请实施例提供的衣物护理机中锅炉的分解结构示意图,图3为本申请实施例提供的衣物护理机中锅炉的剖视图。
在一种可能的实施方式中,参照图2、图3,锅炉2内具有蒸汽发生腔室20,且锅炉2具有与蒸汽发生腔室20连通的第一进液口21,功能溶液存储盒3具有存储盒出液口31(参照下述的图12);第一进液口21内设有喷头组件22,喷头组件22内具有液体通道23,液体通道23的两端分别与蒸汽发生腔室20以及存储盒出液口31连通,即,液体通道23一端与存储盒出液口31连通,液体通道23另一端与蒸汽发生腔室20连通,例如伸入蒸汽发生腔室20内。这样功能溶液存储盒3中的功能溶液经过存储盒出液口31、喷头组件22的液体通道23而进入到蒸汽发生腔室20内。
参照图1、图3,功能溶液存储盒3(例如存储盒出液口)与喷头组件22之间通过第一管道24连通,即第一管道24一端和液体通道23的顶端连通,第一管道24另一端和存储盒出液口31连通。可选的,为了使功能溶液存储盒3中的功能溶液更顺畅地流至蒸汽发生腔室20中,可以在第一管道24上设置第一 泵25。
继续参照图1,可选的,锅炉2还具有与蒸汽发生腔室20连通的第二进液口26,水箱5具有水箱出液口51,所述第二进液口26与所述水箱出液口51相连通。具体的,水箱出液口51与第二进液口26之间通过第二管道52连通,即第二管道52一端和第二进液口26连通,第二管道52另一端和水箱出液口51连通。可选的,为了使水箱5中的水更顺畅地流至蒸汽发生腔室20中,可以在第二管道52上设置第二泵53。
这样,功能溶液存储盒3中的功能溶液通过第一管道24、第一泵25而进入蒸汽发生腔室20中,水箱5中的水通过第二管道52、第二泵53而进入蒸汽发生腔室20中,功能溶液和水可以在蒸汽发生腔室20中混合,以将功能溶液稀释。
可选的,参照图3,蒸汽发生腔室20的外腔壁上还可以设有加热盘27,加热盘27通电后对蒸汽发生腔室20内的混合液进行加热,以将混合液变为混合液的小分子蒸汽。可选的,锅炉2上可以设有锅炉出液口28,锅炉出液口28与衣物护理腔室12连通,这样小分子蒸汽可以通过锅炉出液口28而进入到衣物护理腔室12中,并逸散到衣物护理腔室12中的各个角落,从而将待护理的衣物包裹在内。
下面结合图3、图4说明喷头组件22的结构。
如前所述,液体通道23包括第一通道段231,第一通道段231的横截面积沿功能溶液的流动方向K(参照图4中虚线箭头)减小,以使从存储盒出液口31流出的功能溶液呈雾状喷出至蒸汽发生腔室20内。像这样使功能溶液呈雾状喷至蒸汽发生腔室20中,可以让功能溶液发散地喷射,以便更好、更快速地溶解到蒸汽发生腔室20内容纳的水中。
上述方案中第一通道段231的横截面是指垂直于第一通道段231的轴向的横截面。而第一通道段231的横截面积沿功能溶液的流动方向K减小,这里的减小可以是逐渐减小,也可以是阶梯式的减小。
示例性的,参照图4,喷头组件22包括喷头芯222和插设在第一进液口21内的喷头221,喷头221内具有贯穿孔2211,贯穿孔2211朝向蒸汽发生腔室20内侧的一部分孔段中容纳有喷头芯222,喷头芯222和其对应的一部分孔段间沿径向具有空隙2311,该空隙2311例如可以是环状空间,喷头芯222和贯穿孔2211共同限定出第一通道段231。这样第一通道段231实际上包括一段圆柱状的通道段以及一段环状的通道段,并且沿着功能溶液的流动方向K横截面积减小。当然,当喷头芯222沿贯穿孔2211的径向方向具有偏移,甚至接触到贯穿 孔2211的内壁时,只要在喷头芯222和贯穿孔2211的部分内壁之间沿轴向具有间隙即可。
在其它一些实施例中,喷头芯222伸入贯穿孔2211的深度也可以根据实际需要设定,但喷头芯222不能完全穿透贯穿孔2211。
本申请实施例中,液体通道23还包括位于第一通道段231末端一侧的增压段232,增压段232用于使第一通道段231流出的功能溶液增压。这样,可以将功能溶液增压喷射出来,使功能溶液喷雾具有更好的发散角和喷雾面积,从而实现更好的溶解效率。这里第一通道段231的末端是指第一通道段231中靠近蒸汽发生腔室20内侧的端部。
图4为本申请实施例提供的衣物护理机中喷头组件的一种结构的剖视图,图5为本申请实施例提供的衣物护理机中喷头芯的俯视,图6为本申请实施例提供的衣物护理机中喷头芯的结构示意图,图7为本申请实施例提供的衣物护理机中喷头芯的剖视图。
示例性的,参照图4、图5、图6、图7,喷头组件22还包括盖设在喷头221上的喷头帽223,喷头帽223上开设有与增压段232连通的喷孔2231;喷头芯222朝向喷头帽223的端部上设有增压槽2221和至少一个离心槽2222,离心槽2222的第一端和增压槽2221连通,离心槽2222的第二端向背离增压槽2221的方向伸出并与第一通道段231连通,增压槽2221和离心槽2222的槽体与喷头帽223共同限定出增压段232。喷头帽223中上设置喷孔2231可以便于功能溶液从喷孔2231中喷出。而离心槽2222设置在增压槽2221的四周并与增压槽2221连通,这样功能溶液自第一通道段231流过并从离心槽2222的外端部进入增压槽2221中,可以依靠功能溶液的离心作用而将功能溶液进行增压。其中,增压段232实际上由增压槽2221的槽体、离心槽2222的槽体、以及喷头帽223背离蒸汽发生腔室20内侧的壁面共同限定出。
可选的,多个离心槽2222可以呈发散状设置在增压槽2221的外边缘部分,这样使离心槽2222对功能溶液的离心作用更加明显。参照图5所示的喷头芯222,例示出具有三个离心槽2222的情况,各个离心槽2222的延伸方向可以朝相同方向偏转,例如都朝靠近增压槽2221的中心方向偏转,以使三个离心槽2222呈逆时针方向偏转。可以理解的是,离心槽2222的数量可以根据需要选择为其它,其延伸方向也可以设为其它。这样实际上相当于将增压段232形成为蜗轮增压室。
本申请实施中,可以使增压槽2221的槽底具有朝向喷头帽223凸出的凸起2223,凸起2223的横截面积可以沿功能溶液的流动方向逐渐减小。参照图6,凸起2223可以形成为圆锥体,这样凸起2223表面和喷头帽223上与其相对的 表面间可以形成沿着功能溶液流动方向,横截面逐渐减小的增压段232,再加上凸起2223的圆锥表面的导向作用,使增压段232的增压效果更佳。
本申请实施例中,喷头帽223可拆卸地连接在喷头221上,例如可以卡接在喷头221上。
本申请实施例中,为了防止蒸汽发生腔室20内的功能溶液倒流入第一管道24中,还可以考虑在喷头221中设置具有单向阀功能的部件。
示例性的,喷头组件22还包括弹性开闭件224,弹性开闭件224位于喷头芯222的背离喷孔2231的一侧,喷头221的贯穿孔2211为阶梯孔,阶梯孔具有朝向喷孔2231的台阶面2212,弹性开闭件224可沿喷头芯222的长度方向往复移动,以抵接于台阶面2212并关闭液体通道23,或者脱离台阶面2212并打开液体通道23。这样当功能溶液存储盒3向锅炉2输送功能溶液时,功能溶液流入贯穿孔2211,由于液体压力将弹性开闭件224冲开,弹性开闭件224朝向蒸汽发生腔室20内移动,脱离台阶面2212,此时功能溶液通过台阶面2212和弹性开闭件224之间的缝隙进入到第一通道段231上与喷头芯222对应的通道段;功能溶液存储盒3停止向锅炉2输送功能溶液时,弹性开闭件224具有弹性,重新恢复到抵接于台阶面2212上的状态,将液体通道23关闭。
示例性的,弹性开闭件224可以包括弹性件2241和密封块2242,弹性件2241一端连接于密封块2242上,密封块2242位于台阶面2212的朝向蒸汽发生腔室20内一侧,弹性件2241另一端套接在喷头芯222上,如上所述,向喷头组件22供应功能存储溶液时,功能溶液朝向密封块2242施加朝向内侧的力,弹性件2241被密封块2242压缩而脱离台阶面2212,打开液体通道23;而停止向喷头组件22供应功能存储溶液时,弹性件2241恢复原状推动密封块2242抵接到台阶面2212上,以关闭液体通道23。
图8为本申请实施例提供的衣物护理机中喷头组件的另一种结构的剖视图,参照图8,作为另一种可能的实施方式,喷头组件包括喷头221',在喷头221'内设置贯穿孔2211'作为液体通道23,贯穿孔2211'的两端分别与存储盒出液口31以及蒸汽发生腔室20连通。这样,功能溶液可以通过贯穿孔2211'而进入到蒸汽发生腔室20中。
图9为本申请实施例提供的衣物护理机中门体的分解结构示意图,图10为本申请实施例提供的衣物护理机中功能溶液存储盒与门体的安装情况的剖视图,图11为图10的A处的局部放大图,图12为本申请实施例提供的衣物护理机中功能溶液存储盒的分解结构示意图。
参照图9、图10,如前所述,壳体1上具有与衣物护理腔室12连通的开口, 开口位置处设有门体15,功能溶液存储盒3可以连接在门体15的朝向衣物护理腔室12的一面上。例如,可以位于门体的靠下的部分上。该连接可以是可拆卸地连接,因此,功能溶液存储盒3可以设置为耗材,在其内的功能溶液用完后,只需更换功能溶液存储盒3即可。
也可以如图12所示,功能溶液存储盒3上具有盒口33,盒口33上可以设有可以开闭盒口33的盒盖34。在盒盖34打开时,可以将需要量的功能溶液加入功能溶液存储盒3中。
对于功能溶液存储盒3的安装方式,参照图9、图10、图11、图12,在一种可能的实施方式中,门体15的朝向衣物护理腔室12的一面上设有用于固定功能溶液存储盒3的安装凹槽151,安装凹槽151的槽底设有与锅炉2的第一进液口21连通的接头152,功能溶液存储盒3安装在安装凹槽151中时,接头152插入存储盒出液口31中。功能溶液存储盒安装在安装凹槽中的方式可以是推拉式、可以使旋转式,此处不作限定。
这里的接头152可以是内部具有贯通孔的普通的接头,接头152设置在安装凹槽151的槽底上,并向背离安装凹槽151的槽底的方向凸出,以便在功能溶液存储盒3安装在安装凹槽151中时,能够插入存储盒出液口31中,使功能溶液存储盒3内部与锅炉2的第一进液口21连通。接头152一端插入至功能溶液存储盒3中,另一端与第一管道24连接。
继续参照图12,功能溶液存储盒3包括前盖35和后盖36,前盖35和后盖36共同围成容纳腔,容纳腔内容纳有功能溶液。功能溶液存储盒3的存储盒出液口31开设在功能溶液存储盒3上朝向安装凹槽151的一面上。其中,前盖35和后盖36密封连接,该密封连接可以是直接焊接,也可以是通过密封圈而密封连接。
本实施例中,参照图11、图12,存储盒出液口31中设有单向阀37,这样可以防止锅炉2的蒸汽发生腔室20内的功能溶液倒流入功能溶液存储盒3中。
单向阀37包括阀体371、阀芯372以及阀座373,阀体371连接在存储盒出液口31的边缘部上,阀座373和阀芯372设置于阀体371中,接头152在插入存储盒出液口31中时,能够抵压阀芯372并使阀芯372脱离阀座373,以打开存储盒出液口31。
阀体371内部中空,且阀体371是从存储盒出液口31向功能溶液存储盒3内部伸出的结构,阀芯372例如可以是钢球,阀座373例如可以是环状的密封圈,阀座373也为内部中空的结构,阀座373安装在阀体371内部,阀芯372的外轮廓尺寸可以大于阀座373的内部中空部分的内径尺寸,这样当阀芯372 抵接在阀座373上时,可以封堵阀座373内部的中空部分,即将存储盒出液口31封闭。
单向阀37还包括弹性件374、例如弹簧,弹性件374的一端和阀体371的底部连接,另一端抵接至阀芯372的朝向阀体371底部的一侧上。由此,参照图11,当接头152插入单向阀37中时,推动阀芯372向功能溶液存储盒3内部移动,使阀芯372脱离阀座373,此时功能溶液从阀芯372和阀座373之间的缝隙中流出功能溶液存储盒3,并通过第一管道24而流入锅炉2中;当接头152自单向阀37中脱离时,阀芯372在弹性件374的弹性作用下,向功能溶液存储盒3外部移动,使阀芯372与阀座373抵接,以关闭存储盒出液口31,防止功能溶液从存储盒出液口31中流出。作为一种可选的方式,单向阀还可以包括阀座压板,阀座压板用于将阀座固定在阀体上。
图13为本申请实施例提供的衣物护理机中热风装置的剖视图,图14为本申请实施例提供的衣物护理机中热风装置的右视图,图15为本申请实施例提供的衣物护理机的控制逻辑示意图。
参照图13、图14,热风装置4用于向衣物护理腔室12中提供热风,以对衣物护理腔室12中的衣物进行烘干、杀菌等。
热风装置4包括外罩41,以及开设在外罩41上的进风通道42和出风通道43,热风装置4还包括设置在外罩41内的蒸发器45、冷凝器46、电机48、风轮49、以及PTC电加热组件47。热风装置4还包括与蒸发器45和冷凝器46连接的压缩机44。
结合图1,进风通道42和出风通道43均与衣物护理腔室12连通。衣物护理腔室12内的空气从进风通道42进入外罩41内,并依次经过蒸发器45除湿和冷凝器46加热后,变为热空气,然后PTC电加热组件47对热空气进行进一步加热。再次加热后的热风经过出风通道43进入到衣物护理腔室12中,对衣物进行相应处理。
参照图15,在将衣物放置于衣物护理腔室内,并关闭门体,使衣物护理机开机,首先判断是否选择了功能溶液护理模式,若判断为是,则启动第一泵和第二泵,使用功能溶液对衣物进行护理;若判断为否,则维持第一泵和第二泵的关闭状态,不启动功能溶液护理模式。
本实施例中,衣物护理机100包括:壳体1、锅炉2、功能溶液存储盒3以及水箱5;壳体1内部具有衣物护理腔室12,锅炉2内具有蒸汽发生腔室20,蒸汽发生腔室20与衣物护理腔室12连通;水箱5与锅炉2连通,并用于向蒸汽发生腔室20供水,功能溶液存储盒与锅炉2连通,并用于向蒸汽发生腔室20 供应功能溶液;蒸汽发生腔室20用于使水箱5供应的水与功能溶液存储盒3供应的功能溶液混合并形成混合液,锅炉2用于加热混合液以使蒸汽发生腔室20产生蒸汽,并使蒸汽进入衣物护理腔室12。通过设置水箱5为蒸汽发生腔室20供应水,设置功能溶液存储盒3向蒸汽发生腔室20供应功能溶液,锅炉2可以对功能溶液和水的混合液加热形成蒸汽,并供应至衣物护理腔室12,功能溶液以蒸汽小分子的形式充斥在衣物护理腔室12中,可以快速、高效地渗透到衣物的纤维层深处,实现对衣物的深度护理;并且由于功能溶液的蒸汽小分子是热态分子,对衣物的渗透力较强,因此对衣物的护理效果较佳。
在本申请的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应作广义理解,例如,可以使固定连接,也可以是通过中间媒介间接相连,可以是两个元件内部的连通或者两个元件的相互作用关系。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本申请中的具体含义。
在本申请的描述中,需要理解的是,术语“上”、“下”、“前”、“后”、“竖直”、“水平”、“顶”、“底”、“内”、“外”等指示的方位或者位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,而不是指示或者暗示所指的装置或者元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请的限制。
本申请的说明书和权利要求书及上述附图中的术语“第一”、“第二”、“第三”、“第四”等(如果存在)是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。应该理解这样使用的数据在适当情况下可以互换,以便这里描述的本申请的实施例例如能够以除了在这里图示或描述的那些以外的顺序实施。
此外,术语“包括”和“具有”以及他们的任何变形,意图在于覆盖不排他的包含,例如,包含了一系列步骤或单元的过程、方法、系统、产品或设备不必限于清楚地列出的那些步骤或单元,而是可包括没有清楚地列出的或对于这些过程、方法、产品或设备固有的其它步骤或单元。
Claims (10)
- 一种衣物护理机,包括:壳体、锅炉、功能溶液存储盒以及水箱;所述壳体内部具有衣物护理腔室,所述锅炉内具有蒸汽发生腔室,所述蒸汽发生腔室与所述衣物护理腔室连通;所述水箱与所述锅炉连通,并用于向所述蒸汽发生腔室供水,所述功能溶液存储盒与所述锅炉连通,并用于向所述蒸汽发生腔室供应功能溶液;所述蒸汽发生腔室用于使所述水箱供应的水与所述功能溶液存储盒供应的所述功能溶液混合并形成混合液,所述锅炉用于加热所述混合液以使所述蒸汽发生腔室产生蒸汽,并使所述蒸汽进入所述衣物护理腔室。
- 根据权利要求1所述的衣物护理机,其中,所述锅炉具有与所述蒸汽发生腔室连通的第一进液口,所述功能溶液存储盒具有存储盒出液口;所述第一进液口内设有喷头组件,所述喷头组件内具有液体通道,所述液体通道的两端分别与所述蒸汽发生腔室以及所述存储盒出液口连通;所述液体通道包括第一通道段,所述第一通道段的横截面积沿所述功能溶液的流动方向减小,以使从所述存储盒出液口流出的功能溶液呈雾状喷出至所述蒸汽发生腔室内。
- 根据权利要求2所述的衣物护理机,其中,所述喷头组件包括喷头芯和插设在所述第一进液口内的喷头,所述喷头内具有贯穿孔,所述贯穿孔朝向所述蒸汽发生腔室内侧的一部分孔段中容纳有所述喷头芯,所述喷头芯和其对应的所述一部分孔段间沿径向具有空隙,所述喷头芯和所述贯穿孔共同限定出所述第一通道段。
- 根据权利要求3所述的衣物护理机,其中,所述液体通道包括位于所述第一通道段末端一侧的增压段,所述增压段用于使所述第一通道段流出的功能溶液增压。
- 根据权利要求4所述的衣物护理机,其中,所述喷头组件还包括盖设在所述喷头上的喷头帽,所述喷头帽上开设有与所述增压段连通的喷孔;所述喷头芯朝向所述喷头帽的端部上设有增压槽和至少一个离心槽,所述离心槽的第一端和所述增压槽连通,所述离心槽的第二端向背离所述增压槽的方向伸出并与所述第一通道段连通,所述增压槽和离心槽的槽体与所述喷头帽共同限定出所述增压段。
- 根据权利要求5所述的衣物护理机,其中,所述增压槽的槽底具有朝向所述喷头帽凸出的凸起,所述凸起的横截面积沿所述功能溶液的流动方向逐渐减小。
- 根据权利要求5所述的衣物护理机,其中,所述喷头组件还包括弹性开闭件,所述弹性开闭件位于所述喷头芯的背离所述喷孔的一侧,所述喷头的贯通孔为阶梯孔,所述阶梯孔具有朝向所述喷孔的台阶面,所述弹性开闭件可沿所述喷头芯的长度方向往复移动,以抵接于所述台阶面并关闭所述液体通道,或者脱离所述台阶面并打开所述液体通道。
- 根据权利要求2-7任一项所述的衣物护理机,其中,所述壳体上具有与所述衣物护理腔室连通的开口,所述开口上设有门体,所述功能溶液存储盒连接在所述门体的朝向所述衣物护理腔室的一面上。
- 根据权利要求8所述的衣物护理机,其中,所述门体的朝向所述衣物护理腔室的一面上设有用于固定所述功能溶液存储盒的安装凹槽,所述安装凹槽的槽底设有与所述锅炉的第一进液口连通的接头,所述功能溶液存储盒安装在所述安装凹槽中时,所述接头的端部插入所述存储盒出液口中。
- 根据权利要求9所述的衣物护理机,其中,所述存储盒出液口中设有单向阀,所述单向阀包括阀体、阀芯以及阀座,所述阀体连接在所述存储盒出液口的边缘部上,所述阀座和阀芯设置于所述阀体中,所述接头在插入所述存储盒出液口中时,能够抵压所述阀芯并使所述阀芯脱离所述阀座,以打开所述存储盒出液口。
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