CN105559637B - Motor and the drive mechanism and food-handling equipment of rotating shaft - Google Patents
Motor and the drive mechanism and food-handling equipment of rotating shaft Download PDFInfo
- Publication number
- CN105559637B CN105559637B CN201610045653.0A CN201610045653A CN105559637B CN 105559637 B CN105559637 B CN 105559637B CN 201610045653 A CN201610045653 A CN 201610045653A CN 105559637 B CN105559637 B CN 105559637B
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- Prior art keywords
- rotating shaft
- motor
- transmission part
- friction transmission
- input set
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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
- A47J43/07—Parts or details, e.g. mixing tools, whipping tools
- A47J43/08—Driving mechanisms
- A47J43/085—Driving mechanisms for machines with tools driven from the lower 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
- A47J43/046—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
- A47J43/0716—Parts or details, e.g. mixing tools, whipping tools for machines with tools driven from the lower side
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Food Science & Technology (AREA)
- Food-Manufacturing Devices (AREA)
- Connection Of Motors, Electrical Generators, Mechanical Devices, And The Like (AREA)
Abstract
The invention discloses a kind of motor and the drive mechanism and food-handling equipment of rotating shaft, belong to household electrical appliance technology, it is driven between the motor of some existing food-handling equipments (such as assembly for creating milk foam) and rotating shaft using magnetic drives or rigid connection, magnetic drives easily demagnetization causes rotating shaft reduction of speed or not turned, rigid connection transmission is easy to wear, the present invention is by the way that the input set of rotating shaft is enclosed in the rotation output end of motor, and assemble friction transmission part in the rotation output end of motor, friction transmission part covers by centrifugal force and frictional contact when rotating output end and rotating on input set with input to be rotated.The structure reduces rotating shaft and requirement of the motor shaft to axiality to greatest extent, so as to reduce the phenomenon because producing abrasion the axle center deviation of rotating shaft and motor shaft to greatest extent.Moreover, the case, input in motor cover and set drawing water structure between cup, liquid when seepage occurs for contingency between rotating shaft and cup is avoided to flow on motor and damage motor.
Description
Technical field
The invention belongs to household electrical appliance technology, and in particular to the motor of domestic electric appliance and the drive mechanism of rotating shaft and
Concerned foodstuff processing equipment waterproof construction.
Background technology
Existing beverage stirring/bean product such as grind at the equipment (such as assembly for creating milk foam/bean milling machine), generally make between its motor and rotating shaft
With magnetic drives or rigid connection transmission two ways, magnetic drives Chinese patent literature CN103505080A,
On the books in CN104414475A, CN103654399A, rigid connection transmission has in Chinese patent literature CN103505080A
Record(It is driven by connector).Demagnetization phenomenon occurs in the alnico magnets of magnetic drives in the case of a high temperature, so as to cause to turn
Axle differs increasing with motor speed, in some instances it may even be possible to the phenomenon that rotating shaft can not rotate occurs.Rigid connection is difficult to protect when being driven
Demonstrate,prove rotating shaft and motor is definitely concentric, work motor and rotating shaft when rotating can all produce bias, cause rotating shaft to be worn with motor shaft
Accelerate;And rotating shaft abrasion can cause rotating shaft sealing bad, so as to cause the fluid seepage in cup to damage motor to motor;Electricity
Arbor abrasion quickening causes motor performance decline and service life to decline.
The content of the invention
The technical problem to be solved in the present invention and the technical assignment of proposition are to overcome to use magnetic between existing motor and rotating shaft
The defects of caused by power transmission or rigid connection transmission, there is provided a kind of motor and the drive mechanism and food-handling equipment of rotating shaft.
To reach the drive mechanism of above-mentioned purpose, motor of the invention and rotating shaft, including motor, rotating shaft, it is characterized in that:
Described motor has one to rotate output end;
Described rotating shaft has an input set;
Described input set is enclosed in described rotation output end;
Friction transmission part is equipped with described rotation output end, described friction transmission part is in described rotation output end
Contact covers with described input on described input set and rotated during rotation.
Optimization technique means as motor of the invention and the drive mechanism of rotating shaft:In described rotation output end uniformly
At least two fitting recess of the opening towards periphery are distributed with, described fitting recess has the first supporting surface and the second supporting surface, often
Friction transmission part and described friction transmission part in individual described fitting recess described in configuration one can be in first supporting surfaces
And second swing between supporting surface, the opening that the outer end warp of the friction transmission part is described is extended outside the fitting recess, described to rub
Wipe driving member when relying on first supporting surface its outer end positioned at one compared with small circumference, the friction transmission part rely on it is described
Its outer end is located at one compared with big circumference during the second supporting surface;The internal diameter of the input set is less than the diameter compared with big circumference.
Optimization technique means as motor of the invention and the drive mechanism of rotating shaft:Described friction transmission part is in plate
Shape and its inner end edge are set to axle portion, and the inner of the fitting recess is set to axis hole, and the axle portion of the friction transmission part is positioned at described
In the axis hole of fitting recess.
Optimization technique means as motor of the invention and the drive mechanism of rotating shaft:The internal diameter of the input set is more than
The diameter compared with small circumference.
Optimization technique means as motor of the invention and the drive mechanism of rotating shaft:The interior of input set is passed through from it
Inwardly tapered at port.
Optimization technique means as motor of the invention and the drive mechanism of rotating shaft:It is interior at the input set port
Through more than the diameter compared with big circumference.
Optimization technique means as motor of the invention and the drive mechanism of rotating shaft:The friction transmission part is from described
The diameter of circumference where its outer end becomes larger during one support is moved towards second supporting surface.
Optimization technique means as motor of the invention and the drive mechanism of rotating shaft:Described friction transmission part is by soft
Material is made.
Optimization technique means as motor of the invention and the drive mechanism of rotating shaft:Described input set passes through screw thread
The end of the rotating shaft is assemblied in, the rotation direction of the screw thread is suitable to be tightened when the motor rotates.
To reach above-mentioned purpose, food-handling equipment of the invention, including base and the cup for being placed on the base can be sat,
Motor is provided with the base, the bottom of the cup is equipped with rotating shaft, and seal is provided between the rotating shaft and cup, described
The upper end of rotating shaft is located in described cup, it is characterized in that:
Described motor has one to rotate output end;
Described rotating shaft has an input set on the downside of the cup;
Described input set is enclosed in described rotation output end;
Friction transmission part is equipped with described rotation output end, described friction transmission part is in described rotation output end
Contact covers with described input on described input set and rotated during rotation.
Optimization technique means as the food-handling equipment of the present invention:It is evenly distributed with out in described rotation output end
Mouthful towards periphery at least two fitting recess, described fitting recess has the first supporting surface and the second supporting surface, it is each described in
Friction transmission part and described friction transmission part in fitting recess described in configuration one can be in first supporting surfaces and second
Swung between support face, the opening that the outer end warp of the friction transmission part is described is extended outside the fitting recess, the friction transmission part
When relying on first supporting surface its outer end positioned at one compared with small circumference, the friction transmission part rely on it is described second support
Its outer end is located at one compared with big circumference during face;The internal diameter of the input set is less than the diameter compared with big circumference.
Optimization technique means as the food-handling equipment of the present invention:Described friction transmission part is in en plaque and its
End margin is set to axle portion, and the inner of the fitting recess is set to axis hole, and the axle portion of the friction transmission part is located at the fitting recess
In axis hole.
Optimization technique means as the food-handling equipment of the present invention:The internal diameter of the input set is more than described smaller
The diameter of circumference.
Optimization technique means as the food-handling equipment of the present invention:Input set it is interior through from its port to
Inside taper into.
Optimization technique means as the food-handling equipment of the present invention:It is interior through being more than institute at the input set port
State the diameter compared with big circumference.
Optimization technique means as the food-handling equipment of the present invention:The friction transmission part is from first supporting surface
The diameter of circumference becomes larger where its outer end during being moved to second supporting surface.
Optimization technique means as the food-handling equipment of the present invention:Described friction transmission part is by soft material system
Into.
Optimization technique means as the food-handling equipment of the present invention:Described input set is by Screw assembly in institute
The end of rotating shaft is stated, the rotation direction of the screw thread is suitable to be tightened when the motor rotates.
Optimization technique means as the food-handling equipment of the present invention:Described motor is by surrounding the cover of the motor
Shell is assemblied in described base, and the top of the case is provided with annular groove, and described annular groove opens up breach, the outer wall of the case
The drainage trough of the annular groove is connected provided with the described breach of warp.
Optimization technique means as the food-handling equipment of the present invention:Described annular groove is by the top of the case
Inner ring side, outer annular edge are formed.
Optimization technique means as the food-handling equipment of the present invention:The top of the case, which is provided with, is located at the inner ring
Recess on the inside of side, described input set, which stretches to described recess, isolates described annular groove with described rotation output end.
Optimization technique means as the food-handling equipment of the present invention:The upper end of the outer annular edge is contradicted in the cup
Bottom, described input set there is centrifugal pan, maintained between described centrifugal pan and the bottom of the cup gap make
For drainage channel, the edge of the centrifugal pan is located at the top of the annular groove.
The beneficial effects of the invention are as follows:By the way that the input set of rotating shaft is enclosed in the rotation output end of motor, and in electricity
Friction transmission part is assembled in the rotation output end of machine, friction transmission part is when rotating output end and rotating by centrifugal force and frictional force
Contact covers on input set with input to be rotated.The structure reduces rotating shaft and axiality is wanted with motor shaft to greatest extent
Ask, so as to reduce the phenomenon because producing abrasion the axle center deviation of rotating shaft and motor shaft to greatest extent.Moreover, in the cover of motor
Drawing water structure is set between shell, input set and cup, avoids liquid when seepage occurs for contingency between rotating shaft and cup from flowing to electricity
Motor is damaged on machine.
Brief description of the drawings
Fig. 1 is motor of the invention and the schematic diagram of the drive mechanism of rotating shaft;
Fig. 2 is the end structure illustration of the rotation output end of the present invention;
Fig. 3 is that friction transmission part and friction transmission part are assembled in the rotation output end of the present invention in two kinds of working conditions
Position view;
Fig. 4 is the structural representation of the food-handling equipment of the present invention;
Fig. 5 is the K portions enlarged drawing in Fig. 4;
Fig. 6 is the axonometric drawing of the motor surrounded in the food-handling equipment of the present invention by case;
Label declaration in figure:
01- bases:11- is by compressing switch;
02- cups:21- electric heating devices;
03- motors:31- rotates output end:311- is open, 312- fitting recess, the supporting surfaces of 313- first, and 314- second is supported
Face, 315- axis holes;32- cases:321- annular grooves, 322- breach, 323- drainage troughs, 324- inner ring side, 325- outer annular edges, 326- are recessed
Portion;
04- rotating shafts:41- seals;42- axle sleeves;43- input sets:The internal diameter of 43d- inputs set, 431- centrifugal pans,
44- agitators;
05- friction transmission parts:5r- is compared with small circumference, and 5R- is compared with big circumference, 51- axle portions;
06- drainage channels.
Embodiment
Below in conjunction with Figure of description, the present invention will be further described.
The case profit of the present invention is shown as shown in Figure 4, and it is a kind of a kind of structure of beverage mixing plant, and it is showed
For a kind of assembly for creating milk foam, it includes base 01 and can sit the cup 02 for being placed on base(Inner bag), base 01 is interior to be provided with motor 03, cup
02 bottom passes through axle sleeve 42(Bearing)Rotating shaft 04 is equipped with, seal 41 is provided between rotating shaft 04 and cup 02 to be prevented in cup
Fluid seepage, the upper end of rotating shaft 04 is located in cup 02 and is equipped with agitator 44(For other food-handling equipments as ground
Agitator can be changed to grinder during beans machine).Common, cup, which can connect rotating shaft, together to be sat and is placed in base or the bottom of from
Removed on seat.
The food-handling equipment, it is characterized in employing the motor of the present invention and the drive mechanism of rotating shaft(In view of the motor
It has been integrally incorporated in the drive mechanism of rotating shaft in the food-handling equipment of the present invention, it is no longer individually right in order to avoid repeating
Motor and the drive mechanism of rotating shaft are explained), the drive mechanism of the motor and rotating shaft completely in Fig. 1, in Fig. 5 lead to by expression
Cross partial structurtes and express relatively sharp.
As shown in figure 1, rotating shaft 04 is assemblied in cup 02 by two axle sleeves 42;Motor 03 has one to rotate output end
31, output end is rotated when motor works and is rotated;Rotating shaft 04 have one positioned at the downside of cup 02 input set 43 to from motor
Obtain moment of torsion and with rotation;Input set 43, which is enclosed on, to be rotated in output end 31;Rotate and be equipped with frictional drive in output end 31
Part 05(Referring to Fig. 3), friction transmission part 05 contacts when rotating output end 31 and rotating to be covered on 43 with input set in input
Rotate.Therefore, even if the rotation output end of motor and the input set of rotating shaft be not definitely coaxial, friction transmission part can also be passed through
Voluntarily adjust, avoid rotating shaft and motor from producing the phenomenon of abrasion because of axle center deviation.
Specifically, in order to simplify structure and be easy to rotating output end docking and separating, referring to Fig. 2, turn input set
311 at least two fitting recess 312 towards periphery of opening are evenly distributed with dynamic output end 31, fitting recess 312 has first
The supporting surface 314 of support face 313 and second, one friction transmission part 05 of configuration and friction transmission part can be the in each fitting recess 312
Swing between one supporting surface 313 and the second supporting surface 314 and be limited in an effective work activities scope, friction transmission part
05 outer end is extended outside fitting recess through opening, when friction transmission part 05 relies on the first supporting surface 313(Solid line shown in Fig. 4 represents
Friction transmission part)Its outer end positioned at one compared with small circumference 5r, friction transmission part rely on the second supporting surface when(It is empty shown in Fig. 4
The friction transmission part that line represents)Its outer end is positioned at one compared with big circumference 5R;The internal diameter 43d of input set is less than compared with big circumference 5R's
Diameter(Referring to Fig. 3), ensure that the outer end for rotating friction transmission part when output end rotates can be sufficiently contacted on input set.
And the second described supporting surface 314, then can be that friction transmission part 05 is provided by be covered to input, offer is enough to be turned
Square rotates to drive input to cover.
In order that obtain the dexterous actions in the presence of centrifugal force or/and frictional force of friction transmission part 05, friction transmission part 05
Axle portion 51 is set in en plaque and its inner end edge, the inner of fitting recess 312 is set to axis hole 315, the axle portion 51 of friction transmission part
In the axis hole 315 of fitting recess.As shown in figure 3, when friction transmission part 05 is with the rotation of output end 31 is rotated, if friction passes
The outer end of moving part 05 is not in contact with input set in initial state, then because centrifugal force caused by rotation forces friction transmission part from
One supporting surface 313 is swung to the second supporting surface 314, once the outer end contact input set 43 of friction transmission part, then inputting again
Hold and force the more sufficient contact input set of friction transmission part 05 under the rubbing action of set to transmit rotation.
For the purposes of be easy to by input cover with rotate output end docking and separate, input set internal diameter 43d more than compared with
Small circumference 5R diameter(Referring to Fig. 3).Or interior inwardly being tapered into from its port through 43d of input set(Referring to figure
5).Above two situation can allow friction transmission part to be avoided to input set when being enclosed on and being rotated in output end by input set
Obstacle.For the latter, more preferably selection is the interior diameter through being more than compared with big circumference at input set port.
It is damaged in order to avoid friction transmission part deforms during transposition, friction transmission part 05 is supported towards second from first
The diameter of circumference becomes larger where its outer end during supporting surface moves.
Especially, in order to increase the adjustment capability of friction transmission part, friction transmission part is made up of soft material, second
The presence in support face is more necessary, to avoid friction transmission part from being squeezed when transmitting and rotating and crumple so that it cannot reliable
Transmission rotate.Hard material can also be selected during specific implementation.
Input set 43 is suitable to be tightened when motor rotates by Screw assembly in the end of rotating shaft 04, the rotation direction of screw thread,
Rotating shaft is avoided to loosen.
In order to avoid between rotating shaft and cup seepage occurs for contingency and causes liquid flow direction motor and damages motor, referring to
Fig. 4-6, motor are assemblied in base 01 by surrounding the case 32 of motor, and case is generally Split type structure, such as by upper and lower two
Divide and assemble in so as to which motor is enclosed in, the top of case 32 is provided with annular groove 321, and annular groove 321 opens up breach 322, case
Outer wall be provided with through breach 322 connect annular groove drainage trough 323.When there is liquid seepage from cup, the annular groove can be collected
The liquid of seepage is simultaneously drained by drainage trough.
Further, annular groove 321 is formed by the inner ring side 324 at the top of case, outer annular edge 325.The top of case 32
Provided with the recess 326 positioned at the inner side of inner ring side 324, input set 43 stretch to recess 326 by annular groove 321 with rotate output end 31 every
From.So as to avoid the liquid of seepage flow direction from rotating output end(Motor).
In order to which the liquid of seepage smoothly to be drawn to the position of failure to the safe side, avoid seepage liquid flow to base its
Its position and damage other structures(Electric heating device 21, electronic control device when such as assembly for creating milk foam are such as by compressing switch 11
Deng), the upper end of outer annular edge 325 contradicts has centrifugal pan 431, centrifugal pan 431 and cup in the bottom of cup 02, input set 43
Gap is maintained between 02 bottom as drainage channel 06, the edge of centrifugal pan 431 is located at the top of annular groove 321.Therefore, when
When having fluid seepage, the liquid of seepage flows to centrifugal pan 431 through drainage channel 06 first, the quilt in the presence of centrifugal pan centrifugal force
Get rid of to surrounding, be thrown toward the leak fluid of surrounding by the centralized collection of outer annular edge 325 in annular groove 321, and finally through breach 322,
Drainage trough 323 is drained.
The primary and foremost purpose of the present invention is the drive mechanism for the motor and rotating shaft for providing food-handling equipment, head of the invention
Other structures in the liquid damage motor and pedestal that are to provide a kind of drawing water structure and avoid seepage of syllabus, therefore, from this
For invention technical problems to be solved, it, which understands, completely illustrates to realize the technical scheme of purpose.
Claims (18)
1. motor and the drive mechanism of rotating shaft, including motor(03), rotating shaft(04), it is characterized in that:
Described motor(03)Output end is rotated with one(31);
Described rotating shaft(04)With an input set(43);
Described input set(43)It is enclosed on described rotation output end(31)On;
Described rotation output end(31)On be equipped with friction transmission part(05), described friction transmission part(05)Turn in described
Contact is in described input set when dynamic output end rotates(43)On cover and rotate with described input;
Described rotation output end(31)On be evenly distributed with opening(311)Towards at least two fitting recess of periphery(312), institute
The fitting recess stated(312)With the first supporting surface(313)With the second supporting surface(314), each described fitting recess(312)Inside match somebody with somebody
Put the friction transmission part described in one(05)And described friction transmission part can first supporting surface and the second supporting surface it
Between swing, the friction transmission part(05)The described opening of outer end warp(311)Extend the fitting recess(312)Outside, it is described to rub
Wipe driving member(05)Rely on first supporting surface(313)When its outer end positioned at one compared with small circumference(5r)Upper, described friction passes
Moving part(05)Rely on second supporting surface(314)When its outer end positioned at one compared with big circumference(5R)On;
The internal diameter of the input set(43d)Less than described compared with big circumference(5R)Diameter;
Described input set(43)By Screw assembly in the rotating shaft( 04)End, the rotation direction of the screw thread is suitable to institute
State when motor rotates and be tightened.
2. motor according to claim 1 and the drive mechanism of rotating shaft, it is characterized in that:Described friction transmission part(05)It is in
En plaque and its inner end edge is set to axle portion(51), the fitting recess(312)The inner be set to axis hole(315), the friction biography
The axle portion of moving part(51)Positioned at the axis hole of the fitting recess(315)It is interior.
3. motor according to claim 1 and the drive mechanism of rotating shaft, it is characterized in that:The internal diameter of the input set
(43d)More than described compared with small circumference(5r)Diameter.
4. motor according to claim 1 and the drive mechanism of rotating shaft, it is characterized in that:The interior warp of the input set
(43d)Inwardly tapered into from its port.
5. motor according to claim 4 and the drive mechanism of rotating shaft, it is characterized in that:It is interior at the input set port
Through more than the diameter compared with big circumference.
6. motor according to claim 1 and the drive mechanism of rotating shaft, it is characterized in that:The friction transmission part (05), from
The diameter of circumference where its outer end becomes larger during first support is moved towards second supporting surface.
7. motor according to claim 1 and the drive mechanism of rotating shaft, it is characterized in that:Described friction transmission part(05)By
Soft material is made.
8. food-handling equipment, including base(01)And the cup for being placed on the base can be sat(02), the base(01)Inside set
There is motor(03), the cup(02)Bottom be equipped with rotating shaft(04), the rotating shaft(04)With cup(02)Between be provided with it is close
Sealing(41), the rotating shaft(04)Upper end be located at described cup(02)It is interior, it is characterized in that:
Described motor(03)Output end is rotated with one(31);
Described rotating shaft(04)It is located at the cup with one(02)The input set of downside(43);
Described input set(43)It is enclosed on described rotation output end(31)On;
Described rotation output end(31)On be equipped with friction transmission part(05), described friction transmission part(05)Turn in described
Contact covers with described input on described input set (43) and rotated when dynamic output end rotates;
At least two fitting recess (312) of the opening (311) towards periphery, institute are evenly distributed with described rotation output end (31)
The fitting recess stated(312)With the first supporting surface(313)With the second supporting surface(314), each described fitting recess(312)Inside match somebody with somebody
Put the friction transmission part described in one(05)And described friction transmission part can first supporting surface and the second supporting surface it
Between swing, the friction transmission part(05)The described opening of outer end warp(311)Extend the fitting recess(312)Outside, it is described to rub
Wipe driving member(05)Rely on first supporting surface(313)When its outer end positioned at one compared with small circumference(5r)Upper, described friction passes
Moving part(05)Rely on second supporting surface(314)When its outer end positioned at one compared with big circumference(5R)On;
The internal diameter of the input set(43d)Less than described compared with big circumference(5R)Diameter;
Described input set(43)By Screw assembly in the rotating shaft(04)End, the rotation direction of the screw thread is suitable to described
Motor is tightened when rotating.
9. food-handling equipment according to claim 8, it is characterized in that:Described friction transmission part(05)In en plaque and
Its inner end edge is set to axle portion(51), the fitting recess(312)The inner be set to axis hole(315), the axle of the friction transmission part
Portion(51)Positioned at the axis hole of the fitting recess(315)It is interior.
10. food-handling equipment according to claim 8, it is characterized in that:The internal diameter of the input set(43d)More than institute
State compared with small circumference(5r)Diameter.
11. food-handling equipment according to claim 8, it is characterized in that:The interior warp of the input set(43d)From its end
Inwardly tapered at mouthful.
12. food-handling equipment according to claim 11, it is characterized in that:It is interior through being more than at the input set port
The diameter compared with big circumference.
13. food-handling equipment according to claim 8, it is characterized in that:The friction transmission part supports from described first
The diameter of circumference becomes larger where its outer end during being moved towards second supporting surface.
14. food-handling equipment according to claim 8, it is characterized in that:Described friction transmission part is by soft material system
Into.
15. food-handling equipment according to claim 8, it is characterized in that:Described motor(03)By surrounding the electricity
The case of machine(32)It is assemblied in described base(01)It is interior, the case(32)Top be provided with annular groove(321), described annular groove
(321)Open up breach(322), the case(32)Outer wall be provided with the described breach of warp(322)Connect the annular groove(321)'s
Drainage trough(323).
16. food-handling equipment according to claim 15, it is characterized in that:Described annular groove(321)By located at the cover
Inner ring side at the top of shell(324), outer annular edge(325)Formed.
17. food-handling equipment according to claim 16, it is characterized in that:The case(32)Top be provided be located at institute
State inner ring side(324)The recess of inner side(326), described input set(43)Stretch to described recess(326)By described ring
Groove(321)With described rotation output end(31)Isolation.
18. food-handling equipment according to claim 16, it is characterized in that:The outer annular edge(325)Upper end contradict exist
The cup(02)Bottom, described input set(43)With centrifugal pan(431), described centrifugal pan(431)With it is described
Cup(02)Bottom between maintain gap as drainage channel(06), the centrifugal pan(431)Edge be located at the ring
Groove(321)Top.
Priority Applications (1)
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CN201610045653.0A CN105559637B (en) | 2016-01-22 | 2016-01-22 | Motor and the drive mechanism and food-handling equipment of rotating shaft |
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Application Number | Priority Date | Filing Date | Title |
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CN201610045653.0A CN105559637B (en) | 2016-01-22 | 2016-01-22 | Motor and the drive mechanism and food-handling equipment of rotating shaft |
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CN105559637A CN105559637A (en) | 2016-05-11 |
CN105559637B true CN105559637B (en) | 2018-01-23 |
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CN201610045653.0A Active CN105559637B (en) | 2016-01-22 | 2016-01-22 | Motor and the drive mechanism and food-handling equipment of rotating shaft |
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Families Citing this family (2)
Publication number | Priority date | Publication date | Assignee | Title |
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IT201700086645A1 (en) * | 2017-07-27 | 2019-01-27 | De Longhi Appliances Srl | MONTA LATTE AND COFFEE MACHINE THAT INCORPORATES SUCH A WIDE MILK |
CN117204744B (en) * | 2023-11-07 | 2024-01-26 | 九阳股份有限公司 | Food processor |
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US5819641A (en) * | 1997-03-11 | 1998-10-13 | Hsu; Maxwell | Multifunctional food processing machine |
CN201624552U (en) * | 2009-07-15 | 2010-11-10 | 杭州九阳小家电有限公司 | Connecting structure of motor shaft and cutter shaft of food machine |
CN201987369U (en) * | 2011-01-21 | 2011-09-28 | 九阳股份有限公司 | Transmission case of food processing machine |
CN103271641A (en) * | 2013-05-20 | 2013-09-04 | 周林斌 | Milk foam kettle and method thereof |
CN205379224U (en) * | 2016-01-22 | 2016-07-13 | 宁波凯波集团有限公司 | Transmission structure and food treatment facility of motor and pivot |
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US20130264405A1 (en) * | 2012-04-09 | 2013-10-10 | David M. Audette | Food processor |
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US5819641A (en) * | 1997-03-11 | 1998-10-13 | Hsu; Maxwell | Multifunctional food processing machine |
CN201624552U (en) * | 2009-07-15 | 2010-11-10 | 杭州九阳小家电有限公司 | Connecting structure of motor shaft and cutter shaft of food machine |
CN201987369U (en) * | 2011-01-21 | 2011-09-28 | 九阳股份有限公司 | Transmission case of food processing machine |
CN103271641A (en) * | 2013-05-20 | 2013-09-04 | 周林斌 | Milk foam kettle and method thereof |
CN205379224U (en) * | 2016-01-22 | 2016-07-13 | 宁波凯波集团有限公司 | Transmission structure and food treatment facility of motor and pivot |
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