CN210043812U - Heating disc assembly and food processor comprising same - Google Patents

Heating disc assembly and food processor comprising same Download PDF

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Publication number
CN210043812U
CN210043812U CN201822206807.7U CN201822206807U CN210043812U CN 210043812 U CN210043812 U CN 210043812U CN 201822206807 U CN201822206807 U CN 201822206807U CN 210043812 U CN210043812 U CN 210043812U
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CN
China
Prior art keywords
sleeve body
heating
heating plate
cover
sealing ring
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Active
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CN201822206807.7U
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Chinese (zh)
Inventor
刘福斌
程宗亮
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Priority to CN201822206807.7U priority Critical patent/CN210043812U/en
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Publication of CN210043812U publication Critical patent/CN210043812U/en
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Abstract

The utility model provides a heating plate subassembly reaches cooking machine including this heating plate subassembly can dismantle the heating plate subassembly during washing, convenient operation, and wash thoroughly. This heating plate subassembly includes: a heating plate cover; a heating plate; the stirring knife assembly comprises a knife shaft penetrating through the heating disc cover and the heating disc, a blade fixed on the knife shaft, and a first sleeve body and a second sleeve body sleeved on the knife shaft, wherein the first sleeve body penetrates through the heating disc, the second sleeve body penetrates through the heating disc cover, and the first sleeve body and the second sleeve body are matched and locked together so as to fix the heating disc and the heating disc cover together; the first sleeve body is sealed with the heating disc through a first sealing ring, the first sleeve body is sealed with the cutter shaft through a first sealing part, the second sleeve body is sealed with the heating disc cover through a second sealing ring, and the second sleeve body is sealed with the cutter shaft through a second sealing part.

Description

Heating disc assembly and food processor comprising same
Technical Field
The application relates to the field of small household appliances, in particular to a heating plate assembly and a food processor comprising the same.
Background
With the increasing living standard of people, many different types of food processors appear on the market. The functions of the food processor mainly include, but are not limited to, functions of making soybean milk, squeezing fruit juice, making rice paste, mincing meat, shaving ice, making coffee and/or blending facial masks and the like. The food processor can comprise a soybean milk machine, a stirrer or a wall breaking food processor and other machines for crushing and stirring food materials. Present cooking machine, broken wall cooking machine especially, its heating plate subassembly is fixed in the stirring cup, can only scrub in the cup with the brush when wasing, and the stirring cup often is difficult for the operation too dark, and the heating plate subassembly has unable abluent dead angle inevitable simultaneously, breeds the bacterium easily, produces the peculiar smell.
SUMMERY OF THE UTILITY MODEL
An object of this application is to provide a heating plate subassembly and including this heating plate subassembly's cooking machine, can dismantle the heating plate subassembly when wasing, convenient operation, washing thoroughly, the assembly simple to operate of heating plate simultaneously is convenient, and the leakproofness is good.
One aspect of the present application provides a heat generating tray assembly. This heating plate subassembly includes: a heating plate cover; a heating plate; the stirring knife assembly comprises a knife shaft penetrating through the heating disc cover and the heating disc, a blade fixed on the knife shaft, and a first sleeve body and a second sleeve body sleeved on the knife shaft, wherein the first sleeve body is matched with the heating disc, the second sleeve body is matched with the heating disc cover, and the first sleeve body and the second sleeve body are matched and locked to fix the heating disc and the heating disc cover together; the first sleeve body is sealed with the heating plate through a first sealing ring, the first sleeve body is sealed with the cutter shafts through first sealing parts, the second sleeve body is sealed with the heating plate cover through a second sealing ring, and the second sleeve body is sealed with the cutter shafts through a second sealing part.
Optionally, the first sleeve penetrates through the heating plate, and the second sleeve penetrates through the heating plate cover; or the first sleeve body penetrates through the heating plate and the heating plate cover to be locked with the second sleeve body; or the second sleeve body penetrates through the heating plate cover and the heating plate and is locked with the first sleeve body.
Optionally, the thickness range of the first sealing ring is 1.5 mm to 6 mm, and the thickness range of the second sealing ring is 1.5 mm to 6 mm.
Optionally, the first sealing element includes a sealing ring and an oil seal, and the second sealing element includes a sealing ring and an oil seal.
Optionally, the first sleeve includes a first body portion penetrating through the heating tray and a first abutting portion abutting against the heating tray, the first sealing ring is disposed between the first abutting portion and the heating tray, the second sleeve includes a second body portion penetrating through the heating tray cover and a second abutting portion abutting against the heating tray cover, and the second sealing ring is disposed between the second abutting portion and the heating tray cover.
Optionally, a groove surrounding the first body portion is formed in the bottom of the first pressing portion, and the first sealing ring is accommodated in the groove.
Optionally, the heating plate cover is provided with an accommodating space which is formed by being recessed towards the heating plate, the accommodating space is provided with a peripheral wall and an end wall which is located at the top end of the peripheral wall, the second body portion penetrates through the end wall, and the second sealing ring is arranged between the second pressing portion and the end wall.
Optionally, the first sleeve is provided with a first accommodating groove penetrating through the bottom surface of the first body part, and the first sealing element is accommodated in the first accommodating groove and sleeved on the cutter shaft.
Optionally, the second sleeve body is provided with a second accommodating groove and a third accommodating groove located above the second accommodating groove, the second sealing element is accommodated in the second accommodating groove and sleeved on the cutter shaft, and a bearing is arranged in the third accommodating groove.
Optionally, the cutter shaft includes a first end penetrating through the heating plate and a second end penetrating through the heating plate cover, the first end is provided with the blade, the second end is provided with an upper clutch, and the upper clutch is accommodated in the accommodating space.
Optionally, the heating plate and the heating plate cover are sealed by a heating plate sealing ring.
Optionally, the first sleeve body and the second sleeve body are connected through threads or buckles.
Another aspect of the present application provides a food processor. This cooking machine includes: a host; the stirring cup assembly is detachably installed on the host, the stirring cup assembly comprises a stirring cup and the heating plate assembly, and the heating plate assembly is detachably installed at the bottom of the stirring cup.
Optionally, the stirring cup includes cup, pedestal and installed part, the pedestal passes through the installed part is fixed in the cup bottom, just the pedestal is equipped with the mounting, the subassembly that generates heat passes through the mounting detachably install in the pedestal.
Optionally, the stirring cup further comprises a cup seat, and the cup seat is mounted on the outer side of the seat body.
According to the food processor, when the stirring cup assembly needs to be cleaned after being used, the heating disc assembly is detached, the operation is convenient, and the cleaning is thorough, so that dead corners which cannot be cleaned do not exist on the heating disc assembly any more, and the situations of bacteria breeding and peculiar smell generation are effectively avoided; because through the cooperation locking of the first cover body and the second cover body, the dish that will generate heat is together fixed with the dish lid that generates heat, and the assembly is simple and convenient, simultaneously, makes the dish subassembly that generates heat have better leakproofness through setting up first sealing washer, first sealing member, second sealing washer and second sealing member.
Drawings
Fig. 1 is a cross-sectional view of an embodiment of the food processor of the present application, wherein the main body is not shown;
FIG. 2 is a perspective assembly view of the heater tray assembly shown in FIG. 1;
FIG. 3 is a cross-sectional view of the heater tray assembly shown in FIG. 2 in an assembled state;
FIG. 4 is an enlarged view of the portion A shown in FIG. 3;
FIG. 5 is an enlarged view of the portion B shown in FIG. 3;
fig. 6 is a sectional view of the heater tray assembly shown in fig. 2 in an exploded state.
Detailed Description
Reference will now be made in detail to the exemplary embodiments, examples of which are illustrated in the accompanying drawings. When the following description refers to the accompanying drawings, like numbers in different drawings represent the same or similar elements unless otherwise indicated. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present application. Rather, they are merely examples of apparatus consistent with certain aspects of the present application, as detailed in the appended claims.
The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. Unless defined otherwise, technical or scientific terms used herein shall have the ordinary meaning as understood by those of ordinary skill in the art to which the invention belongs. The use of "first," "second," and similar terms in the description and in the claims does not indicate any order, quantity, or importance, but rather is used to distinguish one element from another. Also, the use of the terms "a" or "an" and the like do not denote a limitation of quantity, but rather denote the presence of at least one. "plurality" or "a number" means two or more. Unless otherwise indicated, "front", "rear", "lower" and/or "upper" and the like are for convenience of description and are not limited to one position or one spatial orientation. The word "comprising" or "comprises", and the like, means that the element or item listed as preceding "comprising" or "includes" covers the element or item listed as following "comprising" or "includes" and its equivalents, and does not exclude other elements or items. The terms "connected" or "coupled" and the like are not restricted to physical or mechanical connections, but may include electrical connections, whether direct or indirect. As used in this specification and the appended claims, the singular forms "a", "an", and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. It should also be understood that the term "and/or" as used herein refers to and encompasses any and all possible combinations of one or more of the associated listed items.
Referring to fig. 1, the food processor 500 includes a main body (not shown), a blending cup assembly 300 and a lid assembly 400. The blender cup assembly 300 is removably mounted to the main frame. The cup cover assembly covers the stirring cup assembly 300. The stirring cup assembly 300 includes a stirring cup 200 and a heat generating plate assembly 100. The heating plate assembly 100 is detachably mounted at the bottom of the mixing cup 200. When the stirring cup assembly 300 needs to be cleaned after being used, the heating disc assembly 100 is detached, the operation is convenient, the cleaning is thorough, and therefore the heating disc assembly 100 has no dead angle which can not be cleaned, and the conditions of bacteria breeding and peculiar smell generation are effectively avoided.
Referring to fig. 2 to 6, the heating plate assembly 100 includes: heating plate lid 10, heating plate 20 and stirring sword subassembly 30. The stirring knife assembly 30 comprises a knife shaft 31 penetrating through the heating disc cover 10 and the heating disc 20, a blade 32 fixed on the knife shaft 31, and a first sleeve body 34 and a second sleeve body 35 sleeved on the knife shaft 31, wherein the first sleeve body 34 is matched with the heating disc 20, the second sleeve body 35 is matched with the heating disc cover 10, and the first sleeve body 34 is matched and locked with the second sleeve body 35, so that the heating disc 20 and the heating disc cover 10 are fixed together. The first sleeve 34 and the heating plate 20 are sealed by a first sealing ring 345, the first sleeve 34 and the knife shaft 31 are sealed by a first sealing member 343, the second sleeve 35 and the heating plate cover 10 are sealed by a second sealing ring 355, and the second sleeve 35 and the knife shaft 31 are sealed by a second sealing member 353. The heating plate 20 and the heating plate cover 10 are fixed together by the first sleeve body 34 and the second sleeve body 35 which are locked in a matching way, so that the assembly is simple and convenient, and the heating plate assembly 100 has better sealing performance by arranging the first sealing ring 345, the first sealing piece 343, the second sealing ring 355 and the second sealing piece 353.
In the illustrated embodiment, the first sleeve 34 penetrates through the heat generating plate 20, and the second sleeve 35 penetrates through the heat generating plate cover 10. In another embodiment, the first sleeve 34 is inserted through the heating plate 20 and the heating plate cover 10 and locked with the second sleeve 35; in another embodiment, the second sleeve body 35 is inserted through the heating plate cover 10 and the heating plate 20 and locked with the first sleeve body 34.
The thickness range of the first sealing ring 345 is 1.5 mm to 6 mm, and the thickness range of the second sealing ring 355 is 1.5 mm to 6 mm, so that a better sealing effect can be achieved.
The first sealing member 343 includes a sealing ring and an oil seal, and the second sealing member 353 includes a sealing ring and an oil seal. In the illustrated embodiment, the first seal 343 and the second seal 353 are both oil seals.
The mixing cup 200 comprises a cup body 50, a seat body 60 and a mounting part 70, wherein the seat body 60 is fixed at the bottom of the cup body 50 through the mounting part 70, the seat body 60 is provided with a fixing part 80, and the heating plate assembly 100 is detachably mounted in the seat body 60 through the fixing part 80. The mounting member 70 is annular. The cup 50 and the mounting member 70 are connected by means of threads, snaps, etc., and the seat body 60 and the mounting member 70 are connected by means of threads, snaps, etc. In the illustrated embodiment, the bottom of the cup 50 is provided with a radially inwardly shrinking fitting portion 51, the fitting portion 51 is provided with a first external thread, and the upper end of the mounting member 70 is provided with a first internal thread fitted with the first external thread. The base body 60 is provided with a second external thread, and the lower end of the mounting member 70 is provided with a second internal thread matched with the second external thread. The cup sealing ring 65 is installed on the inner side of the seat body 60, when the seat body 60 is fixed at the bottom of the cup 50 through the installation part 70, and the heating plate assembly 100 is installed in the seat body 60 through the fixing part 80, the edge of the heating plate 20 presses the cup sealing ring 65 against the bottom of the cup 50, so that sealing is formed between the cup 50 and the heating plate assembly 100.
In the illustrated embodiment, the mixing cup 200 further includes a cup holder 55, and the cup holder 55 is mounted on the outer side of the holder body 60. In this embodiment, the cup holder 55 and the holder body 60 are fixed by a snap fit, but not limited thereto.
The heating plate cover 10 and the heating plate 20 are matched to form a closed cavity 15, and the heating plate 20 is provided with an upper coupler 21. The upper coupler 21 is accommodated in the closed cavity 15, and the heating plate cover 10 is provided with a coupler hole 11 through which the upper coupler 21 passes. The upper coupler 21 and the heating panel cover 10 are sealed by a coupler seal ring 211. The upper coupler 21, the wires and other electronic components can be accommodated in the closed cavity 15 without being exposed outside, so that the heating plate assembly 100 can be conveniently cleaned.
The heating plate 20 is provided with a temperature controller 22 and/or a fuse (not shown) electrically connected to the upper coupler 21, and the temperature controller 22 and/or the fuse are accommodated in the closed cavity 15. In the illustrated embodiment, the hot plate 20 is provided with a thermostat 22 and a fuse electrically connected to the upper coupler 21, and the thermostat 22 and the fuse are connected in series between the hot plate 20 and the upper coupler 21. The thermostat 22 and fuse may be secured by fasteners, such as: screws, etc. fixed to the heating plate 20. In use, when the temperature of the heating plate 20 is too high, the temperature controller 22 is turned off or the fuse is turned off, so that the heating plate 20 stops heating continuously, and the potential safety hazard is eliminated. In other embodiments, the heating plate 20 may be provided with only the temperature controller 22 or only the fuse.
In the illustrated embodiment, the heat generating plate 20 is provided with a temperature sensor 24 electrically connected to the upper coupler 21. The temperature sensor 24 passes through the hot plate 20 and protrudes from the upper surface of the hot plate 20. The temperature sensor 24 is fixed to the heat generating plate 20 by fitting a nut 241. A sensor sealing ring (not labeled) is provided between the temperature sensor 24 and the upper surface of the heat generating plate 20 to form a seal.
The heat-generating tray cover 10 includes an annular side wall 18. The heating plate cover 10 is further provided with an anti-overflow signal contact 185 penetrating through the side wall 18, and the anti-overflow signal contact 185 is electrically connected with the upper coupler 21. The anti-overflow signal contact 185 is in abutting engagement with an anti-overflow conducting structure provided in the mixing cup 200, for transmitting an anti-overflow signal to a controller of the host. In the illustrated embodiment, the heat-generating tray cover 10 includes a supporting protrusion 186 protruding outward from the side wall 18, and the overflow prevention signal contact 185 is exposed on an upper surface of the supporting protrusion 186. The support bosses 186 are configured to provide support to the anti-spill signal contact 185.
The upper coupler 21 is mounted to the heat generating plate 20 through a coupler bracket 25. The upper coupler 21 is mounted to the coupler bracket 25 by a fastener, and the coupler bracket 25 is mounted to the heat generating plate 20 by a fastener. In one embodiment, coupler bracket 25 is provided with a stud and upper coupler 21 is provided with a hole for mating with the stud, and a fastener is passed through the hole of upper coupler 21 to lockingly mate with the stud of coupler bracket 25 to secure upper coupler 21 to coupler bracket 25. Similarly, the heating plate 20 is provided with studs, the coupler bracket 25 is provided with holes corresponding to the studs, and fasteners are passed through the holes of the coupler bracket 25 to be in locking fit with the studs of the heating plate 20, so as to fix the coupler bracket 25 to the heating plate 20.
A sealing ring 40 is arranged between the side wall 18 and the heating plate 20, and an isolation groove 183 is arranged in the region where the side wall 18 is matched with the sealing ring 40. Since the isolation groove 183 is formed in the region where the side wall 18 is engaged with the sealing ring 40, the external liquid will fall into the isolation groove 183 in the process of penetrating into the heat generating tray assembly 100 from between the side wall 18 and the heat generating tray 20, and finally cannot penetrate into the heat generating tray assembly 100. Thus, the heat generating tray assembly 100 has good sealing performance.
In the illustrated embodiment, the isolation groove 183 is one, and the region where the sidewall 18 engages the seal ring 40 is divided into a first sealing region 181 and a second sealing region 182 by the isolation groove 183. In other embodiments, the isolation groove 183 may be provided in two, three, four, etc., and the region where the sidewall 18 cooperates with the sealing ring 40 is divided into a plurality of sub-sealing regions by the isolation groove 183.
In the illustrated embodiment, the isolation groove 183 is a continuous ring. In other embodiments, the isolation groove is a discontinuous ring, i.e., the isolation groove 183 may have a rib disposed therein.
The width of the first sealing region 181 ranges between 1 mm and 3 mm, and the width of the second sealing region 182 ranges between 1 mm and 3 mm. In this way, a better sealing effect can be achieved, and the sealing area of the side wall 18 and the sealing ring 40 is not too large.
The seal ring 40 comprises a main body part 41 and a convex part 42 protruding from the main body part 41, the convex part 42 is matched with the isolation groove 183 for limiting, and the convex part 42 is matched with the isolation groove 183 for limiting the seal ring 40. The projection 42 may be continuous or discontinuous. The thickness of the main body 41 ranges from 1.5 mm to 6 mm, so that a better sealing effect can be achieved.
In the illustrated embodiment, the side wall 18 includes a fitting portion 184 surrounding the edge of the heat-generating plate 20, and the fitting portion 184 can limit the heat-generating plate 20 and shield the edges of the sealing ring 40 and the heat-generating plate 20, so that the heat-generating plate assembly 100 has a more beautiful appearance.
The side wall 18 further includes a support portion 185 for supporting an edge of the heat generating plate 20, and the edge of the heat generating plate 20 can be kept flush with the fitting portion 184 by the support portion 185, so that when the heat generating plate 20 and the heat generating plate cover 10 are assembled too tightly, the support portion 185 can prevent a height difference between the edge of the heat generating plate 20 and the fitting portion 184.
In the illustrated embodiment, the first sleeve 34 is threadably connected to the second sleeve 35. In other embodiments, the first sleeve 34 and the second sleeve 35 may be connected by other means, such as a snap, without limitation.
In the illustrated embodiment, a bearing 36 is disposed in the second sleeve 35 and is engaged with the knife shaft 31. In another embodiment, a bearing engaged with the knife shaft 31 is disposed in the first sleeve body 34. In another embodiment, a bearing engaged with the knife shaft 31 is disposed in the second sleeve 35, and a bearing engaged with the knife shaft 31 is disposed in the first sleeve 34.
The first sleeve 34 includes a first body 341 penetrating through the heating plate 20 and a first pressing portion 342 pressed against the heating plate 20, and the first sealing ring 345 is disposed between the first pressing portion 342 and the heating plate 20. The first pressing portion 342 protrudes radially outward from the first body 341, and the first pressing portion 342 presses against the top surface of the heating plate 20.
In the illustrated embodiment, a groove 3421 surrounding the first body 341 is disposed at the bottom of the first pressing portion 342, and the first sealing ring 345 is accommodated in the groove 3421.
The first sleeve 34 is provided with a first receiving groove 349 penetrating through the bottom surface of the first body 341, and the first sealing member 343 is received in the first receiving groove 349 and is sleeved on the knife shaft 31. The first sealing member 343 is positioned at the top of the first receiving groove 349.
The second sleeve 35 includes a second body 351 penetrating through the heating panel cover 10 and a second pressing portion 352 pressed against the heating panel cover 10, and the second sealing ring 355 is disposed between the second pressing portion 352 and the heating panel cover 10. The second body portion 351 extends upward from the second pressing portion 352 into the hole 29 of the heat generating plate 20, and the second body portion 351 is screwed with the first body portion 341 in the hole 29. The bearing 36 is disposed in the second body portion 351, and in the illustrated embodiment, the bearing 36 is located between the heat generating plate 20 and the heat generating plate cover 10.
The second sleeve body 35 is provided with a second receiving groove 357 and a third receiving groove 359 located above the second receiving groove 358, the second sealing member 353 is received in the second receiving groove 358 and sleeved on the cutter shaft 31, and a bearing 36 is disposed in the third receiving groove 359.
In the illustrated embodiment, the first body portion 341 is provided with an external thread 348, and the second body portion 351 is provided with an internal thread 358 that mates with the external thread 348. In another embodiment, the first body portion 341 is provided with an internal thread, and the second body portion 351 is provided with an external thread engaged with the internal thread.
The heat generating tray cover 10 is provided with an accommodating space 16 recessed toward the heat generating tray 20, the accommodating space 16 has a peripheral wall 161 and an end wall 162 located at a top end of the peripheral wall 161, the second body 351 penetrates the end wall 162, and the second sealing ring 355 is disposed between the second pressing part 352 and the end wall 162.
The knife shaft 31 comprises a first end 311 penetrating through the heating disc 20 and a second end 312 penetrating through the heating disc cover 10, the knife blade 32 is arranged at the first end 311, the upper clutch 38 is arranged at the second end 312, and the upper clutch 38 is accommodated in the accommodating space 16, so that the structure is compact, and the appearance is attractive.
The above description is only exemplary of the present application and should not be taken as limiting the present application, as any modification, equivalent replacement, or improvement made within the spirit and principle of the present application should be included in the scope of protection of the present application.

Claims (15)

1. A heating plate component is characterized in that: it includes:
a heating tray cover (10);
a heat generating plate (20); and
the stirring knife assembly (30) comprises a knife shaft (31) penetrating through the heating disc cover (10) and the heating disc (20), a blade (32) fixed on the knife shaft (31), and a first sleeve body (34) and a second sleeve body (35) sleeved on the knife shaft (31), wherein the first sleeve body (34) is matched with the heating disc (20), the second sleeve body (35) is matched with the heating disc cover (10), and the first sleeve body (34) and the second sleeve body (35) are matched and locked to fix the heating disc (20) and the heating disc cover (10) together;
the first sleeve body (34) and the heating disc (20) are sealed through a first sealing ring (345), the first sleeve body (34) and the cutter shaft (31) are sealed through a first sealing piece (343), the second sleeve body (35) and the heating disc cover (10) are sealed through a second sealing ring (355), and the second sleeve body (35) and the cutter shaft (31) are sealed through a second sealing piece (353).
2. A heat generating tray assembly according to claim 1, wherein: the first sleeve body (34) penetrates through the heating plate (20), and the second sleeve body (35) penetrates through the heating plate cover (10); or,
the first sleeve body (34) penetrates through the heating plate (20) and the heating plate cover (10) to be locked with the second sleeve body (35); or,
the second sleeve body (35) penetrates through the heating plate cover (10) and the heating plate (20) to be locked with the first sleeve body (34).
3. A heat generating tray assembly according to claim 1, wherein: the thickness range of the first sealing ring (345) is 1.5 mm to 6 mm, and the thickness range of the second sealing ring (355) is 1.5 mm to 6 mm.
4. A heat generating tray assembly according to claim 1, wherein: the first sealing element (343) comprises a sealing ring and an oil seal, and the second sealing element (353) comprises a sealing ring and an oil seal.
5. A heat generating tray assembly according to claim 1, wherein: the first sleeve body (34) comprises a first body part (341) penetrating through the heating disc (20) and a first abutting part (342) abutting against the heating disc (20), the first sealing ring (345) is arranged between the first abutting part (342) and the heating disc (20), the second sleeve body (35) comprises a second body part (351) penetrating through the heating disc cover (10) and a second abutting part (352) abutting against the heating disc cover (10), and the second sealing ring (355) is arranged between the second abutting part (352) and the heating disc cover (10).
6. A heat emitting disc assembly as claimed in claim 5, wherein: the bottom of the first abutting-against part (342) is provided with a groove (3421) surrounding the first body part (341), and the first sealing ring (345) is accommodated in the groove (3421).
7. A heat emitting disc assembly as claimed in claim 5, wherein: the heating plate cover (10) is provided with an accommodating space (16) which is formed by being concavely arranged towards the direction of the heating plate (20), the accommodating space (16) is provided with a peripheral wall (161) and an end wall (162) which is positioned at the top end of the peripheral wall (161), the second body part (351) penetrates through the end wall (162), and the second sealing ring (355) is arranged between the second pressing part (352) and the end wall (162).
8. A heat emitting disc assembly as claimed in claim 5, wherein: the first sleeve body (34) is provided with a first containing groove (349) penetrating through the bottom surface of the first body portion (341), and the first sealing element (343) is contained in the first containing groove (349) and sleeved on the cutter shaft (31).
9. A heat emitting disc assembly as claimed in claim 5, wherein: the second sleeve body (35) is provided with a second containing groove (358) and a third containing groove (359) located above the second containing groove (358), the second sealing element (353) is contained in the second containing groove (358) and sleeved on the cutter shaft (31), and a bearing (36) is arranged in the third containing groove (359).
10. A heat emitting disc assembly as claimed in claim 7, wherein: the cutter shaft (31) comprises a first end (311) penetrating through the heating disc (20) and a second end (312) penetrating through the heating disc cover (10), the first end (311) is provided with the blade (32), the second end (312) is provided with an upper clutch (38), and the upper clutch (38) is accommodated in the accommodating space (16).
11. A heat generating tray assembly according to claim 1, wherein: the heating plate (20) and the heating plate cover (10) are sealed through a heating plate sealing ring (40).
12. A heat generating tray assembly according to claim 1, wherein: the first sleeve body (34) is connected with the second sleeve body (35) through threads or buckles.
13. A cooking machine, its characterized in that: it includes:
a host;
a mixing cup assembly (300) detachably mounted to the main body, wherein the mixing cup assembly (300) comprises a mixing cup (200) and the heat generating plate assembly (100) as claimed in any one of claims 1 to 12, and the heat generating plate assembly (100) is detachably mounted to the bottom of the mixing cup (200).
14. The food processor of claim 13, wherein: the stirring cup (200) comprises a cup body (50), a base body (60) and a mounting piece (70), wherein the base body (60) is fixed at the bottom of the cup body (50) through the mounting piece (70), a fixing piece (80) is arranged on the base body (60), and the heating disc assembly (100) is detachably mounted in the base body (60) through the fixing piece (80).
15. The food processor of claim 14, wherein: the stirring cup (200) further comprises a cup seat (55), and the cup seat (55) is installed on the outer side of the seat body (60).
CN201822206807.7U 2018-12-26 2018-12-26 Heating disc assembly and food processor comprising same Active CN210043812U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201822206807.7U CN210043812U (en) 2018-12-26 2018-12-26 Heating disc assembly and food processor comprising same

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201822206807.7U CN210043812U (en) 2018-12-26 2018-12-26 Heating disc assembly and food processor comprising same

Publications (1)

Publication Number Publication Date
CN210043812U true CN210043812U (en) 2020-02-11

Family

ID=69378182

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201822206807.7U Active CN210043812U (en) 2018-12-26 2018-12-26 Heating disc assembly and food processor comprising same

Country Status (1)

Country Link
CN (1) CN210043812U (en)

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