Stirring cup assembly and food processor

By using a pressure plate to press the electrical components against the heating plate in the blender's mixing cup assembly and optimizing the wire layout, the problem of the large space occupied by the support was solved, achieving a compact design and stable connection for the blender cup assembly.

CN224671372UActive Publication Date: 2026-08-25ZHEJIANG SHAOXING SUPOR DOMESTIC ELECTRICAL APPLIANCE CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202522037383.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2025-01-22
Filing Date
2025-09-22
Publication Date
2026-08-25
Estimated Expiration
2035-09-22

AI Technical Summary

Technical Problem

The mixing cup assembly of the food processor is quite tall due to the large size of its support, which takes up a lot of space and affects the overall compactness and stability of the design.

Method used

The electrical components are pressed against the heating plate using a pressing plate, and the bending structure saves assembly space. The optimized layout of the wires reduces the risk of wire damage and improves assembly stability.

Benefits of technology

It effectively reduces the overall height of the mixing cup assembly, improves assembly stability, ensures good conductivity, reduces the risk of wires being crushed, and simplifies the internal structure.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224671372U_ABST
    Figure CN224671372U_ABST
Patent Text Reader

Abstract

The application provides a stirring cup assembly and a food processor. The stirring cup assembly comprises a cup seat, a cup body, a heating disc, an electric component and a pressing sheet. The cup body is arranged on the cup seat. The heating disc is fixed to the bottom of the cup body. The electric component is located below the heating disc. The pressing sheet comprises a connecting portion and a pressing portion which are connected with each other. The connecting portion is fixed to the cup seat. The pressing portion is bent twice from the connecting portion to the direction close to the heating disc. The end of the pressing portion away from the connecting portion is upwardly pressed to the electric component to the heating disc. The distance between the end of the pressing portion away from the connecting portion and the connecting portion in the pressing direction (up-down direction) is large, so that the electric component can be more tightly pressed to the heating disc, thereby improving the stability of assembly.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of food processing, and more particularly to a mixing cup assembly and a food processor. Background Technology

[0002] As people's living standards continue to improve, many different types of food processors have appeared on the market. The functions of a food processor can include, but are not limited to, making soy milk, juicing, rice paste, mincing meat, shaved ice, making coffee, and / or preparing face masks. Food processors can include machines that pulverize and blend food, such as soy milk makers, blenders, or high-speed blenders.

[0003] The heating plate of a food processor's blending jar assembly houses electronic components such as a temperature controller. In some food processors, these electronic components are mounted below the heating plate via a support. The projection of the support in the horizontal plane is roughly the same as the heating plate. However, this support is relatively large and takes up a lot of space, resulting in a relatively high blending jar assembly. Utility Model Content

[0004] This application provides a blending cup assembly and a food processor that saves space and reduces height.

[0005] This application provides a stirring cup assembly, including:

[0006] Cup holder;

[0007] The cup body is mounted on the cup holder;

[0008] A heating plate is fixed to the bottom of the cup body;

[0009] Electrical components are located below the heating plate; and

[0010] The pressing plate includes a connecting part and a pressing part that are connected to each other. The connecting part is fixed to the cup seat. The pressing part presses the electrical component upward to the heating plate from the end away from the connecting part. The pressing part bends at least twice from the connecting part toward the heating plate.

[0011] In this way, by using a pressing plate to press the electrical components against the heating plate, assembly space for the electrical components can be saved, and the overall height of the stirring cup assembly can be reduced. Moreover, the end of the pressing part away from the connecting part presses against the electrical components, and the pressing part bends at least twice from the connecting part towards the heating plate. The distance between the end of the pressing part away from the connecting part and the connecting part in the pressing direction (vertical direction) is relatively large, which can press the electrical components against the heating plate more tightly, thereby improving the stability of the assembly.

[0012] Optionally, the stirring cup assembly further includes a wire connected to the electrical component, the wire extending between the pressing portion and the cup holder, and between the connecting portion and the cup holder.

[0013] In this way, there can be a larger gap between the pressing part and the cup holder, as well as between the connecting part and the cup holder, which allows the wires connected to the electrical components to extend between the pressing part and the cup holder, as well as between the connecting part and the cup holder, giving the wires more space, reducing or avoiding the risk of the wires being crushed, and thus ensuring good conductivity.

[0014] Optionally, the pressing part includes a first bending part and a second bending part. The first bending part is connected between the second bending part and the connecting part. The first bending part bends from the connecting part toward the heating plate. The second bending part bends from the first bending part toward the heating plate. The second bending part presses against the electrical component. The wire connected to the electrical component extends between the first bending part and the cup holder.

[0015] This design allows the second bend to press against the electrical components. The greater distance between the second bend and the connecting part in the pressing direction (vertical direction) allows for tighter pressure on the electrical components against the heating plate, thus improving assembly stability. Furthermore, a larger gap exists between the second bend and the cup holder, and between the connecting part and the cup holder, allowing the wires connecting to the electrical components to extend between these spaces. This provides more space for the wires, reducing or eliminating the risk of damage and ensuring good conductivity.

[0016] Optionally, the electrical components include a temperature control and a fuse. The temperature control and the fuse are disposed within the cup holder and located on the bottom surface of the heating plate. The pressing part presses the temperature control and the fuse upward against the heating plate. The first pressing part is connected to one end of the connecting part and presses against the temperature control, and the second pressing part is connected to the other end of the connecting part and presses against the fuse. Both the first pressing part and the second pressing part include a first bending part and a second bending part.

[0017] In this way, the temperature control and fuse are fixed relative to the heating element. The wires connecting the temperature control and fuse extend between the pressure part and the cup holder, and between the connecting part and the cup holder, providing more space for the wires and reducing or avoiding the risk of the wires being damaged, thus ensuring good conductivity. At the same time, it facilitates the partitioning of the temperature control and fuse, and ensures stable assembly of the temperature control and fuse.

[0018] Optionally, the extending direction of the second bent portion of the first pressing portion is parallel to the extending direction of the second bent portion of the second pressing portion.

[0019] In this way, the temperature control and the fuse are subjected to equal pressure, which can simultaneously and firmly press the temperature control and the fuse.

[0020] Optionally, the first pressing part and the second pressing part are symmetrically arranged, the connecting part is provided with a connecting hole, and the stirring cup assembly further includes a connector, which passes through the connecting hole to fix the connecting part to the cup base; the connecting hole is located on the axis of symmetry between the first pressing part and the second pressing part.

[0021] In this way, the second bending part of the first pressing part and the second bending part of the second pressing part apply pressure evenly to the electrical components being pressed, ensuring the fixing effect of the pressure plate on the electrical components.

[0022] Optionally, the included angle between the first bent portion and the connecting portion is greater than 90 degrees.

[0023] This reduces the size of the tablet in the extension direction of the connecting part.

[0024] Optionally, the cup holder includes a cup holder top cover, the heating plate is assembled on top of the cup holder top cover, the cup holder top cover is provided with a mounting groove, the mounting groove includes a through groove that runs vertically through the cup holder and a blind groove that communicates with the through groove, the electrical components are disposed in the through groove, and the wires extend in the blind groove.

[0025] In this way, the electrical components are placed in the mounting slot, so that the electrical components abut against the bottom of the heating plate. The mounting slot positions the electrical components from both sides, thereby achieving the positioning of the electrical components.

[0026] Optionally, the shape of the orthographic projection of the mounting groove on the horizontal plane is consistent with the shape of the orthographic projection of the pressure plate on the horizontal plane.

[0027] Thus, when the tablet is assembled with the cup holder, the mounting groove positions the tablet, facilitating the positioning and assembly of the tablet.

[0028] Optionally, the cup holder further includes a positioning part, which is disposed on the side of the mounting groove and extends downward from the lower edge of the side of the mounting groove, and the positioning part abuts against the first bending part.

[0029] Thus, during the assembly of the pressing sheet into the cup holder, the positioning part positions the first bending part, which facilitates the overall assembly of the pressing sheet into the mounting groove, thereby facilitating the pressing sheet to press against the electrical components.

[0030] Optionally, the connecting part is provided with a connecting hole, the lower edge of the connecting hole being flush with the lower surface of the connecting part; the stirring cup assembly further includes a connector, which passes through the connecting hole from below to fix the connecting part to the cup base.

[0031] In this way, the lower edge of the connecting hole is flush with the lower surface of the connecting part, thus simplifying the manufacturing of the connecting part.

[0032] Optionally, the connecting portion includes a first side and a second side opposite to each other, the pressing plate includes a folded edge, the pressing portion is connected to the first side, the folded edge is connected to the second side, the folded edge is bent from the second side of the connecting portion in a direction away from the heating plate, and the wire connected to the electrical component extends through the folded edge.

[0033] Thus, the wire extends between the pressing part and the cup seat, and between the connecting part and the cup seat, and extends out of the pressing plate from the second side of the pressing plate. By providing a folded edge that bends away from the heating plate, the edge where the pressing plate contacts the wire is smooth, avoiding cutting the wire.

[0034] Optionally, the mixing cup assembly includes a motor and a blade assembly, the motor being disposed within the cup holder, the motor including a motor shaft, and the blade assembly being connected to the motor shaft.

[0035] By placing the motor inside the mixing cup assembly and directly connecting it to the blade assembly, it is easier for the motor to drive the blade assembly to cut the food inside the mixing cup.

[0036] Optionally, the mixing cup assembly includes a blade assembly, which includes a blade shaft and an upper clutch. The blade shaft passes through the cup holder and extends out of the lower surface of the cup holder, and the upper clutch is located at the bottom of the blade shaft.

[0037] In this way, the blade assembly can be connected to the motor located outside the mixing cup assembly via the lower clutch, which simplifies the internal structure of the mixing cup assembly, helps to reduce the height and weight of the mixing cup assembly, and makes it easier to pick up the mixing cup assembly.

[0038] This application provides a food processor including a base and a blending cup assembly as described in the first aspect, the base including a base and a support extending upward from the base; the blending cup assembly is detachably assembled to the base.

[0039] In this way, by using a pressing plate to press the electrical components against the heating plate, assembly space for the electrical components can be saved, and the overall height of the stirring cup assembly can be reduced. Moreover, the end of the pressing part away from the connecting part presses against the electrical components, and the pressing part bends at least twice from the connecting part towards the heating plate. The distance between the end of the pressing part away from the connecting part and the connecting part in the pressing direction (vertical direction) is relatively large, which can press the electrical components against the heating plate more tightly, thereby improving the stability of the assembly.

[0040] Optionally, the food processor includes a lid and a control assembly. The lid is assembled to the support base and covers the mixing cup assembly. The control assembly is located on the lid and / or the support base.

[0041] In this way, the food processor takes up less space horizontally and its height is reduced.

[0042] Optionally, the cover can be rotatably assembled to the support base; or, the cover can be rotatably assembled to the support base in the horizontal direction; or, the cover can be detachably assembled to the support base.

[0043] With the above configuration, the cover can be rotatably assembled onto the support base, requiring little space in the horizontal direction when flipping the cover, and the connection between the cover and the support base is easy to achieve using a simple connection structure; the cover can be rotatably assembled onto the support base in the horizontal direction, requiring little space in the vertical direction when rotating the cover, and the base is not easily tilted towards the support base; the cover can be detachably assembled onto the support base, requiring little space in the horizontal and vertical directions when removing the cover, the base is not easily tilted towards the support base, and the cover is easy to clean. Attached Figure Description

[0044] The accompanying drawings, which are incorporated in and form a part of this specification, illustrate embodiments consistent with this disclosure and, together with the description, serve to explain the principles of this disclosure.

[0045] Figure 1 The image shown is a cross-sectional schematic diagram of one embodiment of the food processor of this application.

[0046] Figure 2 As shown Figure 1 The diagram shows the mixing bowl assembly of the food processor.

[0047] Figure 3 As shown Figure 1 An exploded view of the blender cup assembly of the food processor shown.

[0048] Figure 4 As shown Figure 1 The diagram shows a cross-sectional view of the blender cup assembly of the food processor.

[0049] Figure 5 As shown Figure 4 A magnified view of part A of the stirring cup assembly shown.

[0050] Figure 6 As shown Figure 4 The diagram shows the cup holder of the mixing cup assembly.

[0051] Figure 7 As shown Figure 4 A schematic diagram of the pressing of the stirring cup assembly shown.

[0052] Figure 8 As shown Figure 7 This is a schematic diagram of the tablet compression from another perspective.

[0053] Figure 9 As shown Figure 4 A schematic diagram of the cup holder of the mixing cup assembly shown.

[0054] Explanation of reference numerals in the attached figures:

[0055] 100. Food processor; 10. Base; 11. Stand; 12. Support; 20. Blending cup assembly; 21. Blending cup; 211. Cup body; 212. Handle; 213. Spout; 22. Blade assembly; 23. Heating plate; 24. Lid; 25. Cup base; 251. Cup base top cover; 252. Mounting slot; 2521. Through slot; 2522. Blind slot; 253. Positioning part; 26. Cover plate; 30. Pressing plate; 31. Connecting part; 311. Connecting hole; 32. Pressing part; 321. First bending part; 3211. First section; 3212. Second section; 322. Second bending part; 3221. Third section; 3222. Fourth section; 323. First pressing part; 324. Second pressing part; 33. Connector; 34. Folded edge; 35. Electrical component; 351. Wire; 352. Temperature control; 353. Fuse; 40. Motor; 41. Motor shaft; 50. Control assembly; 60. Power supply assembly; 70. Cover. Detailed Implementation

[0056] The technical solutions in the embodiments (or "implementations") of this application will be clearly and completely described herein with reference to the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements.

[0057] If the embodiments of this application contain terms relating to directional indications or positional relationships (such as up, down, left, right, front, back, inside, outside, top, bottom, center, vertical, horizontal, longitudinal, transverse, length, width, counterclockwise, clockwise, axial, radial, circumferential, etc.), such terms are only used to explain the relative positional relationships and movements between components in a specific posture (as shown in the attached figures); if the specific posture changes, the directional indications or positional relationships will also change accordingly. Furthermore, the terms "first" and "second" used in the embodiments of this application are only for descriptive convenience and should not be construed as indicating or implying relative importance.

[0058] See Figure 1 As shown, the food processor 100 can be used to make soy milk, rice paste, juice, etc. The food processor 100 includes a base 10 and a blending cup assembly 20.

[0059] The base 10 includes a base 11 and a support 12 extending upward from the base 11. The support 12 and the base 11 can be integrally formed or formed separately and then assembled together. The top view of the base 10 can be circular, rectangular (with rounded corners), square (with rounded corners), polygonal (with rounded corners), elliptical, etc. The top view of the mixing cup assembly 20 can be the same as or different from the shape of the base 10.

[0060] The mixing cup assembly 20 is assembled on the base 11. The mixing cup assembly 20 includes a mixing cup 21, a heating plate 23 disposed at the bottom of the cup body 211 of the mixing cup 21, and a blade assembly 22. The mixing cup 21 is used to hold food, the heating plate 23 is used to heat the food in the mixing cup 21, and the blade assembly 22 is used to mix and grind the food in the mixing cup 21.

[0061] See Figures 2-4 As shown, the mixing cup 21 includes a cup base 25, a cup body 211, and a handle 212. The cup body 211 has a spout 213, which is positioned opposite to the handle 212. The cup body 211 is mounted on the cup base 25. The support base 12 has a mating groove corresponding to the spout 213, and the spout 213 is located within the mating groove. The cross-section of the cup body 211 can be square, meaning that the orthographic projection of the cup body 211 in the horizontal plane is square. The mixing cup 21 is a square cup. This allows the mixing cup 21 to be made shorter while maintaining the same volume, and the square cup body 211 can better achieve turbulence when mixing food, which is beneficial for better pulverization of food. In other embodiments, the cross-section of the cup body 211 can also be circular or other shapes.

[0062] The cooking machine 100 further includes a machine cover 70 and a control component 50. The machine cover 70 is assembled to the support base 12, and the machine cover 70 covers the stirring cup assembly 20. The machine base 10 and the machine cover 70 are in an "L" shape, with three sides wrapping the stirring cup assembly 20, reducing the reflected noise outside the machine base 10 of the noise generated inside the stirring cup assembly 20. At the same time, the overall cooking machine 100 occupies less space in the horizontal direction and reduces the height of the cooking machine 100.

[0063] In some embodiments, the machine cover 70 is movably covered on the stirring cup assembly 20. When the machine cover 70 is disposed on the top of the support base 12, by adjusting the position of the machine cover 70, it is convenient to assemble the stirring cup assembly 20 to the base 11. In the embodiments shown in the figures, the machine cover 70 is assembled to the support base 12 in a vertically rotatable manner. When the machine cover 70 is flipped, the space required in the horizontal direction is small, and the connection between the machine cover 70 and the support base 12 is easy to achieve, and a simple connection structure can be used to achieve the connection. In another embodiment, the machine cover 70 is assembled to the support base 12 in a horizontally rotatable manner. When the machine cover 70 is rotated, the space required in the vertical direction is small, and the machine base 10 is not easily tilted towards the support base 12. In another embodiment, the machine cover 70 is detachably assembled to the support base 12. In another embodiment, the machine cover 70 is connected to the support base 12 in a vertically movable manner. When the machine cover 70 is disassembled, the space required in the horizontal and vertical directions is small, the machine base 10 is not easily tilted towards the support base 12, and it is convenient to clean the machine cover 70.

[0064] In another embodiment, the machine cover 70 is fixed to the support base 12, and the stirring cup assembly 20 is pushed into the machine base 10 from the side or the front.

[0065] In some embodiments, the control component 50 is disposed on the machine cover 70 or the support base 12, used for displaying information, such as functions, time, etc., and for user operation, such as selecting cooking functions, starting / pausing cooking work, etc. In the "L" - shaped cooking machine 100 in the related art, the base 11 protrudes from the stirring cup assembly 20 in the horizontal direction, and the control component 50 is disposed on the upper surface of the protruding part. Compared with the related art, in the present application, the control component 50 is disposed on the machine cover 70 or the support base 12, and the overall cooking machine 100 occupies less space in the horizontal direction. The "L" - shaped cooking machine 100 further reduces the space occupation ratio of the whole machine; the "L" - shaped cooking machine 100 can be smaller and thinner through a better arrangement method of electrical components.

[0066] In the illustrated embodiment, the control component 50 is located on the cover 70, which facilitates user operation, eliminates the need for bending over, and is closer to the user's eyes, making it easier for the user to see the information on the control component 50. A power supply component 60 is housed within the support base 12, and the control component 50 is electrically connected to the power supply component 60. The power supply component 60 is used to connect to an external power source to power the food processor 100 and can power the control component 50. In this embodiment, the motor 40 is located in the base 11, and the motor 40 includes a motor shaft 41 and a lower clutch 42. The blade assembly 22 includes a blade shaft 221 and an upper clutch 222. The blade shaft 221 passes through the cup holder 25 and extends downward beyond the lower surface of the cup holder 25, and the upper clutch 222 is located at the bottom of the blade shaft 221. The motor 40 drives the blade assembly 22 to rotate through the engagement between the lower clutch 42 and the upper clutch 222. Thus, simplifying the internal structure of the mixing cup assembly 20 helps to reduce the height and weight of the mixing cup assembly 20, making it easier to pick up the mixing cup assembly 20.

[0067] In other embodiments, the motor is located within the cup holder. The motor includes a motor shaft, and the blade assembly is connected to the motor shaft. Thus, placing the motor within the mixing cup assembly and directly connecting it to the blade assembly facilitates the motor driving the blade assembly to cut the food within the mixing cup.

[0068] In one embodiment, the motor 40 is a brushless motor 40 without a rear end cover, which results in a lower height for the motor 40, thus reducing the overall height of the food processor 100. In other embodiments, the motor 40 may also be a conventional brushed motor or a brushless motor.

[0069] Since the power supply component 60 is located inside the support base 12 and the control component 50 is located inside the cover 70, the power supply component 60, control component 50 and motor 40 are not stacked together. By reasonably arranging the positions of the three, the height of the food processor 100 can be effectively reduced, so that the overall height of the food processor 100 is no more than millimeters, making it more compact and exquisite. In this way, the vibration generated by the food processor 100 during operation can be reduced, and it occupies less space.

[0070] In another embodiment, both the power supply component 60 and the control component 50 are disposed within the cover 70. The power supply component 60 and the control component 50 can be integrated or disposed separately. The motor 40 is disposed within the base 11 or at the bottom of the mixing cup 21, which also reduces the height of the food processor 100. In another embodiment, both the power supply component 60 and the control component 50 are disposed within the support base 12. The power supply component 60 and the control component 50 can be integrated or disposed separately. The motor 40 is disposed within the base 11 or at the bottom of the mixing cup 21. In another embodiment, the power supply component 60 is disposed within the base 11, the control component 50 is disposed within the support base 12, and the motor 40 is disposed within the base 11 or at the bottom of the mixing cup 21. In another embodiment, both the power supply component 60 and the control component 50 are disposed within the base 11. In yet another embodiment, both the power supply component 60 and the control component 50 are disposed within the cover 70, and the motor 40 is disposed within the cup lid 24 of the mixing cup assembly 20. In another embodiment, the power supply assembly 60 is disposed within the support base 12, the control assembly 50 is disposed within the cover 70, and the motor 40 is disposed within the cup cover 24 of the mixing cup assembly 20.

[0071] See Figures 2-6 As shown, the stirring cup assembly 20 also includes an electrical component 35 and a pressure plate 30. The electrical component 35 is located below the heating plate 23. The pressure plate 30 includes a connecting portion 31 and a pressing portion 32 connected to each other. The connecting portion 31 is fixed to the cup base 25, and the end of the pressing portion 32 away from the connecting portion 31 presses the electrical component 35 upward against the heating plate 23. The pressing portion 32 bends upward from the connecting portion 31 at least twice towards the heating plate 23. The electrical component 35 is pressed upward and adheres to the bottom surface of the heating plate 23. The pressing portion 32 can be bent upward two or more times.

[0072] In this way, by using the pressure plate 30 to press the electrical component 35 against the heating plate 23, the assembly space of the electrical component 35 can be saved and the main body height of the stirring cup assembly 20 can be reduced. Moreover, the end of the pressing part 32 away from the connecting part 31 presses against the electrical component 35. The pressing part 32 bends at least twice from the connecting part 31 towards the heating plate 23. The distance between the end of the pressing part 32 away from the connecting part 31 and the connecting part 31 in the pressing direction (vertical direction) is large, which can press the electrical component 35 against the heating plate 23 more tightly, thereby improving the stability of the assembly.

[0073] In an optional embodiment, the stirring cup assembly 20 includes a wire 351 connected to an electrical component 35. The wire 351 extends between the pressing portion 32 and the cup holder 25, and between the connecting portion 31 and the cup holder 25. The connecting portion 31 is located below the cup holder 25, and the pressing portion 32 extends upward from below the cup holder 25, pressing against the electrical component 35.

[0074] In this way, there can be a larger gap between the pressing part 32 and the cup holder 25, as well as between the connecting part 31 and the cup holder 25, so that the wire 351 connected to the electrical component 35 can extend between the pressing part 32 and the cup holder 25, as well as between the connecting part 31 and the cup holder 25, leaving more space for the wire 351, reducing or avoiding the risk of the wire 351 being crushed, thereby ensuring good conductivity.

[0075] In an optional embodiment, see Figure 7 and Figure 8 As shown, the pressing part 32 includes a first bending part 321 and a second bending part 322. The first bending part 321 is connected between the second bending part 322 and the connecting part 31. The first bending part 321 bends from the connecting part 31 toward the heating plate 23, and the second bending part 322 bends from the first bending part 321 toward the heating plate 23. The second bending part 322 presses against the electrical component 35, and the wire 351 connected to the electrical component 35 extends between the first bending part 321 and the cup holder 25. The first bending part 321 includes a first segment 3211 extending obliquely upward and a second segment 3212 extending horizontally. The first segment 3211 is connected to the connecting part 31, and the second segment 3212 is connected to the second bending part 322. The second bend 322 includes a third segment 3221 extending obliquely upward and a fourth segment 3222 extending horizontally. The third segment 3221 is connected to the first bend 321, and the fourth segment 3222 is used to resist the piezoelectric component 35.

[0076] With this configuration, the second bend 322 presses against the electrical component 35. The distance between the second bend 322 and the connecting portion 31 in the pressing direction (vertical direction) is relatively large, allowing for tighter pressure on the electrical component 35 against the heating plate 23, thereby improving assembly stability. Furthermore, a larger gap exists between the second bend 322 and the cup holder 25, and between the connecting portion 31 and the cup holder 25, to allow the wire 351 connected to the electrical component 35 to extend between the pressing portion 32 and the cup holder 25, and between the connecting portion 31 and the cup holder 25. This provides more space for the wire 351, reducing or eliminating the risk of the wire 351 being damaged, thus ensuring good conductivity.

[0077] In an optional embodiment, see Figure 6 As shown, the electrical component 35 includes a temperature control 352 and a fuse 353. The temperature control 352 and the fuse 353 are disposed within the cup holder 25 and located on the bottom surface of the heating plate 23. The pressing part 32 presses the temperature control 352 and the fuse 353 upwards against the heating plate 23. In some other embodiments, the electrical component 35 may include other components. The temperature control 352 and the fuse 353 are respectively connected to their respective wires 351. The temperature control 352 and the fuse 353 are pressed against the bottom surface of the heating plate 23.

[0078] In this way, the temperature control 352 and the fuse 353 are fixed relative to the heating plate 23. The wire 351 connected to the temperature control 352 and the fuse 353 extends between the pressing part 32 and the cup seat 25, and between the connecting part 31 and the cup seat 25, leaving more space for the wire 351, reducing or avoiding the risk of the wire 351 being crushed, thereby ensuring good conductivity.

[0079] In an optional embodiment, see Figure 7 and Figure 8 As shown, the pressing part 32 includes a first pressing part 323 and a second pressing part 324. The first pressing part 323 is connected to one end of the connecting part 31 and presses against the temperature control 352. The second pressing part 324 is connected to the other end of the connecting part 31 and presses against the fuse 353. Both the first pressing part 323 and the second pressing part 324 include a first bending part 321 and a second bending part 322. In some embodiments, the temperature control 352 and the fuse 353 are separately arranged and located on both sides of the center of the heating plate 23. The first pressing part 323 and the second pressing part 324 extend from the connecting part 31 to the same side of the connecting part 31. The first pressing part 323, the connecting part 31 and the second pressing part 324 are connected in sequence to form a C-shape.

[0080] This facilitates the partitioning between the temperature control unit 352 and the fuse 353, and ensures stable assembly of the temperature control unit 352 and the fuse 353.

[0081] In an optional embodiment, see Figure 7 and Figure 8 As shown, the extending direction of the second bending portion 322 of the first pressing portion 323 is parallel to the extending direction of the second bending portion 322 of the second pressing portion 324.

[0082] In this way, the temperature control 352 and the fuse 353 are subjected to equal pressure, and can simultaneously and firmly press against the temperature control 352 and the fuse 353.

[0083] In some embodiments, the first bend 321 of the first pressing portion 323 and the first bend 321 of the second pressing portion 324 are V-shaped, with the distance between them increasing from the connecting portion 31 away from the connecting portion 31. In this way, the size of the connecting portion 31 can be smaller.

[0084] In an optional embodiment, see Figure 7 and Figure 8As shown, the first pressing part 323 and the second pressing part 324 are arranged symmetrically along an axis, and the connecting part 31 is provided with a connecting hole 311. The stirring cup assembly 20 also includes a connector 33, which passes through the connecting hole 311 and fixes the connecting part 31 to the cup base 25; the connecting hole 311 is located on the axis of symmetry between the first pressing part 323 and the second pressing part 324. In this embodiment, the connecting hole 311 is a threaded hole, and the connector 33 is a bolt or screw.

[0085] Thus, the second bending portion 322 of the first pressing portion 323 and the second bending portion 322 of the second pressing portion 324 apply uniform pressing pressure to the electrical components 35 respectively, ensuring the fixing effect of the pressure plate 30 on the electrical components 35.

[0086] In an optional embodiment, see Figure 7 and Figure 8 As shown, the included angle between the first bending portion 321 and the connecting portion 31 is greater than 90 degrees. The included angle between the first segment 3211 of the first bending portion 321 and the connecting portion 31 is greater than 90 degrees.

[0087] This reduces the size of the tablet 30 in the extending direction of the connecting portion 31.

[0088] In some embodiments, the included angle between the second bend 322 and the first bend 321 is greater than 90 degrees. The included angle between the third segment 3221 of the second bend 322 and the second segment 3212 of the first bend 321 is also greater than 90 degrees. This reduces the dimension of the pressure plate 30 in the extending direction of the connecting portion 31.

[0089] In an optional embodiment, the cup holder 25 includes a cup holder top cover 251, and a heating plate 23 is assembled on top of the cup holder top cover 251. The cup holder top cover 251 is provided with a mounting groove 252, which includes a through groove 2521 extending vertically and a blind groove 2522 communicating with the through groove 2521. An electrical component 35 is disposed in the through groove 2521, and a wire 351 extends in the blind groove 2522. The through groove 2521 communicates with the heating plate 23.

[0090] Thus, the electrical component 35 is positioned within the mounting groove 252, allowing it to abut against the bottom of the heating plate 23. The mounting groove 252 positions the electrical component 35 from both sides, thereby achieving proper positioning. The blind groove 2522 separates the heating plate 23 from the wire 351, reducing the impact of the heat from the heating plate 23 on the wire 351. The connecting portion 31 of the pressure plate 30 can be fixed to the blind groove 2522.

[0091] In an optional embodiment, see Figures 7-9As shown, the shape of the orthographic projection of the mounting groove 252 on the horizontal plane is consistent with the shape of the orthographic projection of the pressure plate 30 on the horizontal plane. The side of the mounting groove 252 at least partially abuts against the edge of the pressure plate 30.

[0092] Thus, when the tablet 30 is assembled with the cup holder 25, the mounting groove 252 positions the tablet 30, facilitating its positioning and assembly. The side of the mounting groove 252 can fit against the edge of the tablet 30 or there can be a small gap between them, which serves to position the tablet 30.

[0093] In an optional embodiment, see Figure 6 As shown, the cup holder 25 also includes a positioning portion 253, which is disposed on the side of the mounting groove 252 and extends downward from the lower edge of the side of the mounting groove 252. The positioning portion 253 abuts against the first bent portion 321. The positioning portion 253 may extend along the edge of the mounting groove 252, or it may be configured as a plurality of spaced-apart downwardly extending protrusions. The positioning portion 253 may be a positioning rib, protruding downward from the lower edge of the side of the mounting groove 252. In some embodiments, the positioning portion 253 abuts against the opposing side edges of the first bent portion 321 of the first pressing portion 323 and the first bent portion 321 of the second pressing portion 324.

[0094] Thus, during the assembly of the pressing sheet 30 into the cup holder 25, the positioning part 253 positions the first bending part 321, making it easy for the pressing sheet 30 to be assembled into the mounting groove 252, thereby making it easy for the pressing sheet 30 to press against the electrical component 35.

[0095] In an optional embodiment, see Figure 7 and Figure 8 As shown, the connecting part 31 is provided with a connecting hole 311, the lower edge of which is flush with the lower surface of the connecting part 31; the stirring cup assembly 20 also includes a connector 33, which passes through the connecting hole 311 from below, fixing the connecting part 31 to the cup holder 25. In some embodiments, the lower surface of the connecting part 31 is a plane, and the connecting hole 311 is formed by opening a hole in the connecting part 31.

[0096] Thus, the lower edge of the connecting hole 311 is flush with the lower surface of the connecting part 31, thereby simplifying the manufacturing of the connecting part 31.

[0097] In an optional embodiment, see Figure 7 and Figure 8As shown, the connecting portion 31 includes a first side 332 and a second side 333 opposite to each other. The pressure plate 30 includes a folded edge 34. The pressing portion 32 is connected to the first side 332, and the folded edge 34 is connected to the second side 333. The folded edge 34 bends from the second side 333 of the connecting portion 31 in a direction away from the heating plate 23. The wire 351 connected to the electrical component 35 extends through the folded edge 34. The first pressing portion 323 and the second pressing portion 324 are connected to the two ends of the first side of the connecting portion 31.

[0098] Thus, the wire 351 extends between the pressing portion 32 and the cup holder 25, and between the connecting portion 31 and the cup holder 25, and extends out of the pressing plate 30 from the second side of the pressing plate 30. By providing a folded edge 34 that bends away from the heating plate 23, the edge of the pressing plate 30 in contact with the wire 351 is smooth, avoiding cutting the wire 351. In some embodiments, the angle at which the folded edge 34 bends from the connecting portion 31 is less than 90 degrees. There is a smooth transition between the folded edge 34 and the connecting portion 31.

[0099] In other alternative embodiments, the second side 333 of the connecting portion 31 may also be rounded, so that the edge where the pressure plate 30 contacts the wire 351 is smooth, avoiding cutting the wire 351.

[0100] It should be noted that the technical solutions or features described in the above embodiments can be combined or supplemented with each other without conflict. The scope of protection of this application is not limited to the precise structures described in the above embodiments and shown in the accompanying drawings; all modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of protection of this application.

Claims

1. A stirring cup assembly, characterized in that, include: Cup holder (25); The cup body (211) is disposed on the cup holder (25); Heating plate (23) is fixed to the bottom of the cup body; Electrical components (35) are located below the heating plate (23); and The pressing plate (30) includes a connecting part (31) and a pressing part (32) connected to each other. The connecting part (31) is fixed to the cup holder (25). The pressing part (32) presses the electrical component (35) against the heating plate (23) at one end away from the connecting part (31). The pressing part (32) bends at least twice from the connecting part (31) toward the heating plate (23).

2. The stirring cup assembly according to claim 1, characterized in that, The cup holder (25) includes a cup holder top cover (251), and the heating plate (23) is assembled on the top cover (251). The top cover (251) is provided with a mounting groove (252), which includes a through groove (2521) extending vertically. The electrical component (35) is disposed in the through groove (2521), and the pressing part (32) abuts against the electrical component (35) at the through groove (2521) to press the electrical component (35) against the heating plate (23).

3. The stirring cup assembly according to claim 2, characterized in that, The stirring cup assembly (20) also includes a wire (351) connected to the electrical component (35), the wire (351) extending between the pressing part (32) and the cup holder (25), and between the connecting part (31) and the cup holder (25).

4. The stirring cup assembly according to claim 3, characterized in that, The pressing part (32) includes a first bending part (321) and a second bending part (322). The first bending part (321) is connected between the second bending part (322) and the connecting part (31). The first bending part (321) bends from the connecting part (31) toward the heating plate (23). The second bending part (322) bends from the first bending part (321) toward the heating plate (23). The second bending part (322) presses against the electrical component (35). The wire (351) connected to the electrical component (35) extends between the first bending part (321) and the cup holder (25).

5. The stirring cup assembly (20) according to claim 4, characterized in that, The electrical component (35) includes a temperature control (352) and a fuse (353). The temperature control (352) and the fuse (353) are disposed in the through groove (2521) and located on the bottom surface of the heating plate (23). The pressing part (32) includes a first pressing part (323) and a second pressing part (324). The first pressing part (323) is connected to one end of the connecting part (31) and presses against the temperature control (352). The second pressing part (324) is connected to the other end of the connecting part (31) and presses against the fuse (353). Both the first pressing part (323) and the second pressing part (324) include a first bending part (321) and a second bending part (322).

6. The stirring cup assembly according to claim 5, characterized in that, The extension direction of the second bend (322) of the first pressing part (323) is parallel to the extension direction of the second bend (322) of the second pressing part (324).

7. The stirring cup assembly according to claim 5, characterized in that, The first pressing part (323) and the second pressing part (324) are symmetrically arranged. The connecting part (31) is provided with a connecting hole (311). The stirring cup assembly (20) also includes a connector (33). The connector (33) passes through the connecting hole (311) to fix the connecting part (31) to the cup seat (25). The connecting hole (311) is located on the axis of symmetry between the first pressing part (323) and the second pressing part (324).

8. The stirring cup assembly according to claim 4, characterized in that, The included angle between the first bent portion (321) and the connecting portion (31) is greater than 90 degrees.

9. The stirring cup assembly according to claim 4, characterized in that, The mounting groove (252) also includes a blind groove (2522) communicating with the through groove (2521), the pressure plate (30) is at least partially located in the mounting groove (252), and the wire (351) extends in the blind groove (2522).

10. The stirring cup assembly according to claim 9, characterized in that, The pressure plate is assembled in the mounting groove (252), and the shape of the orthographic projection of the mounting groove (252) on the horizontal plane is consistent with the shape of the orthographic projection of the pressure plate (30) on the horizontal plane.

11. The stirring cup assembly according to claim 8, characterized in that, The cup holder (25) also includes a positioning part (253), which is disposed on the side of the mounting groove (252) and extends downward from the lower edge of the side of the mounting groove (252). The positioning part (253) abuts against the first bending part (321).

12. The stirring cup assembly according to claim 3, characterized in that, The connecting portion (31) includes a first side and a second side opposite to each other. The pressing plate (30) includes a folded edge (34). The pressing portion (32) is connected to the first side. The folded edge (34) is connected to the second side. The folded edge (34) bends from the second side of the connecting portion (31) away from the heating plate (23). The wire (351) connected to the electrical component (35) extends through the folded edge (34).

13. The stirring cup assembly according to any one of claims 1-12, characterized in that, The stirring cup assembly (20) includes a motor and a blade assembly. The motor is disposed within the cup holder and includes a motor shaft. The blade assembly is connected to the motor shaft. The stirring cup assembly (20) includes a blade assembly (22), which includes a blade shaft (221) and an upper clutch (222). The blade shaft (221) passes through the cup holder (25) and extends downward beyond the lower surface of the cup holder (25). The upper clutch (222) is located at the bottom of the blade shaft (221).

14. A food processor, characterized in that, It includes a base (10) and a stirring cup assembly (20) as described in any one of claims 1-13.

15. The food processor according to claim 14, characterized in that, The base (10) includes a base (11) and a support (12) extending upward from the base (11); the stirring cup assembly (20) is detachably assembled to the base (11).

16. The food processor according to claim 15, characterized in that, The food processor (100) includes a lid (70) and a control component (50). The lid (70) is assembled to the support base (12) and covers the mixing cup assembly (20). The control component (50) is located on the lid (70) and / or the support base (12).

17. The food processor according to claim 16, characterized in that, The cover (70) is rotatably assembled to the support base (12); or, the cover (70) is rotatably assembled to the support base (12) in the horizontal direction; or, the cover (70) is detachably assembled to the support base (12).