Stirring cup assembly and food processor

By designing a bent connection bar and a gap between the connection bar and the temperature sensor in the stirring cup assembly, the problem of small spacing between the connection bar and the temperature sensor is solved, improving safety and heating efficiency, and ensuring uniform heating of the heating plate assembly.

CN224671378UActive Publication Date: 2026-08-25ZHEJIANG SHAOXING SUPOR DOMESTIC ELECTRICAL APPLIANCE CO LTD
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Patent Information

Application Number
CN202522040066.X
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

In existing food processors, the distance between the heating element's connector and the temperature sensor is too small, resulting in low safety.

Method used

Design a stirring cup assembly in which the bent part of the heating element's connecting rod is bent toward the inside of the heating plate assembly, and there is a gap between the connecting rod and the temperature sensor to ensure insulation distance. The structure of the heating plate assembly is optimized to ensure heating efficiency and uniformity.

Benefits of technology

The insulation distance between the connector and the temperature sensor has been increased, enhancing safety and service life, while ensuring the heating efficiency and uniformity of the heating plate assembly.

✦ Generated by Eureka AI based on patent content.

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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 assembly and a temperature sensor. The cup body is arranged on the cup seat. The heating disc assembly is assembled on the bottom of the cup body, and comprises a heating disc body, a heating tube and a connecting rod. The heating tube is arranged on the lower surface of the heating disc body, extends along the circumference of the heating disc assembly, and has a gap between two ends thereof. The two ends of the heating tube are respectively connected with the connecting rod, and are located in the gap. The connecting rod comprises a first end, a second end and a bending portion connected between the first end and the second end, the first end is connected with the heating tube, and the bending portion is bent towards the space enclosed by the heating tube. The temperature sensor is arranged on the heating disc body and located in the gap, and has a gap between the temperature sensor and the connecting rod.
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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] Existing food processors have a heating element located below the heating plate. A temperature sensor is positioned between the two ends of the heating element and connected to a temperature control element via a connecting rod. This connecting rod is straight and extends from both ends of the heating element towards the temperature sensor, resulting in a small distance between the connecting rod and the temperature sensor, thus compromising safety. Utility Model Content

[0004] This application provides a mixing cup assembly and a food processor that can improve safety.

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

[0006] Cup holder;

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

[0008] A heating plate assembly is assembled at the bottom of the cup body. The heating plate assembly includes a heating plate body, a heating tube, and connecting rods. The heating tube is disposed on the lower surface of the heating plate body and extends circumferentially along the heating plate assembly. A notch is formed between the two ends of the heating tube. The connecting rods are respectively connected to the two ends of the heating tube and are located within the notches. The connecting rods include a first end, a second end, and a bent portion connecting the first end and the second end. The first end is connected to the heating tube, and the bent portion bends towards the space enclosed by the heating tube.

[0009] A temperature sensor is disposed on the heating plate body, located within the notch, and has a gap between it and the wiring rod.

[0010] In this way, the bent portion of the connecting rod bends towards the space enclosed by the heating element, extending the connecting rod's bend. This results in a greater distance between the connecting rods at both ends of the heating element and the temperature sensor, ensuring a larger gap between them and maintaining proper insulation between the connecting rods and the temperature sensor, thus improving safety and lifespan. Furthermore, it allows for a longer heating element, ensuring the heating efficiency of the heating plate assembly and improving its heating uniformity.

[0011] Optionally, the distance between the bent portions of the connecting rods at both ends of the heating element is less than or equal to one-third of the total length of the heating element.

[0012] This ensures the length of the heating element, thereby guaranteeing heating efficiency and uniformity.

[0013] Optionally, the distance between the connector and the temperature sensor is greater than or equal to 3 mm.

[0014] This ensures the insulation distance between the connector and the temperature sensor, improving safety and service life.

[0015] Optionally, the distance between the bent portion of the connector and the temperature sensor is 3 mm to 18 mm.

[0016] This ensures the insulation distance between the connector and the temperature sensor, improving safety and service life, while also guaranteeing the length of the heating element to ensure heating efficiency and uniformity.

[0017] Optionally, the bending angle of the bent portion is 80 degrees to 100 degrees.

[0018] This design maximizes the distance between the connector and the temperature sensor, ensuring adequate insulation and maximizing the length of the heating element. Furthermore, it avoids excessively large bending angles at the bends, which could interfere with wiring and connector soldering, thus facilitating assembly and soldering.

[0019] Optionally, the cup body has a quadrilateral cross-section in the horizontal direction, and the heating plate body has a quadrilateral orthographic projection in the horizontal plane.

[0020] In this way, the mixing cup can be made shorter while maintaining the same volume, and the square cup body can better achieve turbulence when mixing ingredients, which is conducive to better crushing of ingredients.

[0021] Optionally, the heating elements are arranged in a quadrilateral shape, with a notch located on one side of the quadrilateral.

[0022] Thus, when the temperature sensor is placed inside the notch, and the distance between the temperature sensor and the two ends of the heating tube is equal, the above arrangement minimizes the distance between the bent portions of the connecting rods at both ends of the heating tube, ensuring the length of the heating tube and thus guaranteeing heating efficiency and heating uniformity.

[0023] Optionally, the stirring cup assembly includes a temperature control element disposed on the lower surface of the heating plate body, located within the space enclosed by the heating tube, and connected to the second end of the connecting rod; the quadrilateral includes a first side opposite to each other in a first direction and a second side opposite to each other in a second direction, the first side intersecting the second side, the notch being disposed on one of the first side, the length direction of the temperature control element being disposed along the extension direction of the second side, and the first direction and the second direction being perpendicular in the horizontal plane.

[0024] This facilitates the wiring of the temperature control element and the welding assembly of the second end of the connector, reducing or eliminating the impact on the temperature sensor during welding assembly. The two ends of the heating element are located on the first side, and are connected to the temperature control element placed along the second side. This reduces the length of the wires between the temperature control element and the connector, facilitating wiring between the connector and the temperature control element, as well as welding the wiring to the connector.

[0025] Optionally, the stirring cup assembly further includes a blade assembly. The heating plate body includes a through hole, and the through hole includes a center line along the second direction. The blade assembly passes through the through hole. The temperature control element includes a thermostat and a fuse, which are located on both sides of the center line of the through hole. The connecting rods at both ends of the heating tube are located on both sides of the center line. The connecting rod at one end of the heating tube is connected to the thermostat located on the same side of the center line, and the connecting rod at the other end of the heating tube is connected to the fuse.

[0026] In this way, the thermostat and fuse are set up separately, and the connecting rods at both ends of the heating element can be connected to the nearby temperature control element respectively, avoiding the crossing of the wires of the thermostat and the fuse, and facilitating the wiring and soldering assembly between the connecting rods and the temperature control element.

[0027] This application provides a food processor that includes a base and a mixing cup assembly as described in the first aspect.

[0028] In this way, the bent portion of the connecting rod bends towards the space enclosed by the heating element, extending the connecting rod's bend. This results in a greater distance between the connecting rods at both ends of the heating element and the temperature sensor, ensuring a larger gap between them and maintaining proper insulation between the connecting rods and the temperature sensor, thus improving safety and lifespan. Furthermore, it allows for a longer heating element, ensuring the heating efficiency of the heating plate assembly and improving its heating uniformity.

[0029] Optionally, the base includes a base and a support extending upward from the base; the stirring cup assembly is detachably assembled to the base.

[0030] This design, with its base and support, makes the food processor more stable.

[0031] 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.

[0032] In this way, the food processor takes up less space horizontally, making it compact and exquisite.

[0033] 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.

[0034] 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

[0035] 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.

[0036] Figure 1 The diagram shown is a schematic diagram of one embodiment of the food processor of this application.

[0037] Figure 2 As shown Figure 1 The diagram shows the mixing bowl assembly of the food processor.

[0038] Figure 3 As shown Figure 2 An exploded view of the mixing cup assembly shown.

[0039] Figure 4 As shown Figure 2 A schematic diagram of the heating plate assembly of the stirring cup assembly shown.

[0040] Figure 5 As shown Figure 4 The diagram shows a top view of the heating plate assembly, temperature sensor, and temperature control element.

[0041] Figure 6 As shown Figure 4 The diagram shows a top view of the heating plate assembly.

[0042] Explanation of reference numerals in the attached figures:

[0043] 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 assembly; 231. Heating plate body; 2311. Through hole; 2312. Connecting part; 2313. Center line; 232. Heating element; 2321. Notch; 233. Connecting rod; 2331. First 2332, Second end; 2333, Bending part; 234, First side; 235, Second side; 24, Cup lid; 25, Cup holder; 30, Machine cover; 31, Temperature control element; 311, Temperature controller; 312, Fuse; 32, Temperature sensor; 321, Sensor body; 322, Mounting part; 323, Wire; 40, Motor; 41, Output shaft; 50, Control component; 60, Power supply component; 70, Machine cover. Detailed Implementation

[0044] 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.

[0045] 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.

[0046] 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.

[0047] 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.

[0048] The mixing cup assembly 20 is assembled to the base 11. The mixing cup assembly 20 includes a mixing cup 21, a heating plate assembly 23 disposed at the bottom of the mixing cup 21, and a knife assembly 22. The mixing cup 21 is used for placing food ingredients, the heating plate assembly 23 is used for heating the food ingredients in the mixing cup 21, and the knife assembly 22 is used for whipping and crushing the food ingredients in the mixing cup 21. Refer to Figure 3 As shown, the cross-section of the cup body 211 and the heating plate body 231 in the horizontal direction is quadrilateral (the corners can be rounded).

[0049] Refer to Figures 1-3 As shown, the mixing cup 21 includes a cup base 25, a cup body 211, and a handle 212. The cup body 211 is provided with a cup spout 213, and the cup spout 213 is disposed opposite to the handle 212. The cup body 211 is disposed on the cup base 25. The support base 12 is provided with a mating groove corresponding to the cup spout 213, and the cup spout 213 is located in the mating groove. The cross-section of the cup body 211 and the heating plate body 231 in the horizontal direction is quadrilateral. The cross-section of the cup body 211 can be set as square, that is, the orthographic projection of the cup body 211 in the horizontal plane is square. The mixing cup 21 is a square cup. In this way, the mixing cup 21 can be made shorter to have the same volume, and the square cup body 211 can better realize the turbulent flow when whipping food ingredients, which is beneficial to better crushing the food ingredients. In other embodiments, the cross-section of the cup body 211 can also be set as circular or other shapes.

[0050] 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 mixing cup assembly 20. The machine base 10 and the machine cover 70 present a "C" shape, and the three sides wrap the mixing cup assembly 20, so as to reduce the reflected noise of the noise generated inside the mixing cup assembly 20 outside the machine base 10.

[0051] In some embodiments, the machine cover 70 can be movably covered on the mixing 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 mixing cup assembly 20 to the base 11. In Figure 1In the illustrated embodiment, the cover 70 is rotatably assembled to the support base 12. This requires minimal horizontal space when flipping the cover 70, and the connection between the cover 70 and the support base 12 is easy to achieve using a simple connection structure. In another embodiment, the cover 70 is rotatably assembled to the support base 12 in the horizontal direction. This requires minimal vertical space when rotating the cover 70, and the base 10 is less likely to tilt towards the support base 12. In another embodiment, the cover 70 is detachably assembled to the support base 12. In yet another embodiment, the cover 70 is vertically and vertically connected to the support base 12. This requires minimal horizontal and vertical space when removing the cover 70, the base 10 is less likely to tilt towards the support base 12, and it facilitates cleaning the cover 70.

[0052] In another embodiment, the cover 70 is fixed to the support base 12, and the stirring cup assembly 20 is pushed into the base 10 from the side or the front.

[0053] In some embodiments, the control component 50 is disposed on the cover 70 or the support base 12, and is used to display information, such as function and time, and for user operation, such as selecting a cooking function, starting / pausing the cooking process, etc. In the related "L"-shaped blender 100, the base 11 protrudes horizontally from the blending cup assembly 20, and the control component 50 is disposed on the upper surface of the protruding portion. Compared with the related technology, the control component 50 of this application is disposed on the cover 70 or the support base 12, and the blender 100 occupies less space in the horizontal direction overall. The "U"-shaped blender 100 further reduces the overall space ratio of the machine; the "U"-shaped blender 100 can be smaller and thinner through a better arrangement of electrical components.

[0054] 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 also power the control component 50. The motor 40 is located within the base 11 or at the bottom of the mixing cup 21. The motor 40 includes an output shaft 41, and the blade assembly 22 is located at the top of the output shaft 41. In this embodiment, the mixing cup assembly 20 also includes a cover plate, which is located within the cup holder 25, and the motor 40 is located below the cover plate. In one embodiment, the motor 40 is a brushless motor 40 without a rear end cover, resulting in a lower motor height, which helps reduce the overall height of the food processor 100. In other embodiments, the motor 40 can also be a conventional brushed motor 40 or a brushless motor 40.

[0055] 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.

[0056] 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.

[0057] In one embodiment, the blade assembly 22 is detachably disposed at the bottom of the mixing cup 21. See also... Figure 1 The motor 40 is located at the bottom of the mixing cup 21. The output shaft 41 of the motor 40 passes through the heating plate, and a rotating shaft is provided at the top of the output shaft 41. The blade assembly 22 is detachably assembled to the rotating shaft. The direct connection between the output shaft 41 of the motor 40 and the blade assembly 22 can reduce the height of the food processor 100.

[0058] See Figures 4-6 As shown, the heating plate assembly 23 includes a heating plate body 231, a heating tube 232, and a connecting rod 233. The heating tube 232 is disposed on the lower surface of the heating plate body 231 and extends circumferentially along the heating plate assembly 23. There is a notch 2321 between the two ends of the heating tube 232. The two ends of the heating tube 232 are respectively connected to the connecting rod 233, which is located within the notch 2321. The connecting rod 233 includes a first end 2331, a second end 2332, and a bent portion 2333 connecting the first end 2331 and the second end 2332. The first end 2331 is connected to the heating tube 232, and the bent portion 2333 bends toward the space enclosed by the heating tube 232.

[0059] The stirring cup assembly 20 also includes a temperature sensor 32. The temperature sensor 32 is disposed within the heating plate body 231, located within the notch 2321, and has a gap between it and the connecting rod 233. The temperature sensor 32 is an NTC sensor. The heating plate body 231 has a connecting portion 2312. The temperature sensor 32 includes a mounting portion 322 and a sensor body 321. The mounting portion 322 is a nut. The sensor body 321 passes through the connecting portion 2312 and has circumferential threads, thus securing the sensor body 321 to the mounting portion 322 via these threads.

[0060] The heating element 232 is located near the edge of the heating plate body 231. The two ends of the heating element 232 are not connected, forming a gap 2321. A connecting rod 233 is connected to each end of the heating element 232. The connecting rod 233 extends from the heating element 232 into the gap 2321, then bends and extends into the space enclosed by the heating element 232. The connecting rod 233 extends away from the temperature sensor 32, maintaining a certain distance from it. The temperature sensor 32 is located between the two connecting rods 233, specifically between the bends 2333 of the two connecting rods 233.

[0061] In this way, the bent portion 2333 of the connecting rod 233 bends towards the space enclosed by the heating tube 232, and the connecting rod 233 extends in a bent manner. This results in a greater distance between the connecting rods 233 at both ends of the heating tube 232 and the temperature sensor 32, and a larger gap between them. This ensures a greater insulation distance between the connecting rods 233 and the temperature sensor 32, improving safety and service life. Furthermore, it ensures that the length of the heating tube 232 is as long as possible, ensuring the heating efficiency of the heating plate assembly 23 and improving the heating uniformity of the heating plate assembly 23.

[0062] In an optional embodiment, see Figure 5 As shown, the distance D1 between the two bends 2333 is less than or equal to one-third of the total length of the heating element 232. D1 is the distance between the closest points of the two bends 2333.

[0063] Thus, limiting the distance between the two ends of the heating element 232 ensures the length of the heating element 232, thereby guaranteeing heating efficiency and heating uniformity. If the distance D1 between the bends 2333 is too large, the notch 2321 will be too large, the distance between the two ends of the heating element 232 will be too far, and the area around the heating plate body 231 that is not directly heated will be too large, affecting heating efficiency and heating uniformity. This design in this application can improve heating efficiency and heating uniformity.

[0064] In an optional embodiment, see Figures 4-6As shown, the distance D2 between the bent portion 2333 of the connector 233 and the temperature sensor 32 is greater than or equal to 3 mm. For example, 5 mm, 8 mm, 10 mm, etc. The distance D2 between the bent portion 2333 of the connector 233 and the temperature sensor 32 is the distance between their orthographic projections in the horizontal plane.

[0065] This ensures the insulation distance between the connector 233 and the temperature sensor 32, improving safety and service life. Based on ensuring a distance D2 between the bent portion 2333 of the connector 233 and the temperature sensor 32, the larger the horizontal dimension of the temperature sensor 32, the larger the distance D1 between the two bent portions 2333, but it should not exceed one-third of the total length of the heating element 232.

[0066] Furthermore, the distance D2 between the bent portion 2333 of the connector 233 and the temperature sensor 32 is 3 mm to 18 mm. For example, 5 mm, 8 mm, 10 mm, 15 mm, etc.

[0067] This ensures the insulation distance between the connector 233 and the temperature sensor 32, improving safety and service life, while also ensuring the length of the heating element 232 to guarantee heating efficiency and heating uniformity.

[0068] In an optional embodiment, the bending angle of the bending portion 2333 is 80-100 degrees. Specifically, it can be 85 degrees, 90 degrees, 95 degrees, etc. The included angle between the first end 2331 and the second end 2332 is 80-100 degrees.

[0069] This design maximizes the distance between the connector 233 and the temperature sensor 32, ensuring adequate insulation between them and maximizing the length of the heating element 232. Furthermore, it avoids excessively large bending angles in the bend 2333, which could affect wiring and soldering of the connector 233. A bending angle of 80-100 degrees facilitates assembly and soldering. The bend 2333 can be extended in an arc shape.

[0070] In an optional embodiment, see Figures 4-6 As shown, the heating element 232 is arranged in a quadrilateral, with a notch 2321 located on one side of the quadrilateral. Thus, when the temperature sensor 32 is positioned within the notch 2321, and the distance between the temperature sensor 32 and the two ends of the heating element 232 is equal, this arrangement minimizes the distance between the bent portions 2333 of the connecting rods 233 at both ends of the heating element 232, ensuring the length of the heating element 232 and thus guaranteeing heating efficiency and uniformity.

[0071] In an optional embodiment, see Figures 4-6As shown, the stirring cup assembly 20 also includes a temperature control element 31. The temperature control element 31 is disposed on the lower surface of the heating plate body 231, located within the space enclosed by the heating tube 232, and connected to the second end 2332 of the connecting rod 233. Specifically, the temperature control element 31 and the connecting rod 233 are connected by spot welding. The heating plate body 231 has a quadrilateral shape in its orthographic projection in the horizontal plane. The quadrilateral includes a first side 234 opposite each other in the first direction X and a second side 235 opposite each other in the second direction Y, the first side 234 and the second side 235 intersecting. A notch 2321 is provided on one of the first side 234, and the length direction of the temperature control element 31 is along the direction of the second side 235. The first direction X and the second direction Y are perpendicular in the horizontal plane. The length direction of the temperature control element 31 is along the extending direction of the second side 235. The wire 323 of the temperature control element 31 extends from one end of the temperature control element 31 near the terminal 233 along the length direction to the second end 2332 of the terminal 233 and is connected to the second end 2332.

[0072] Thus, the temperature control element 31 is located within the space enclosed by the heating element 232 and is electrically connected to the second end 2332 of the connector 233 via a wire. This facilitates the wiring of the temperature control element 31 and the welding assembly of the second end 2332 of the connector 233, reducing or avoiding the impact on the temperature sensor 32 during welding assembly. The two ends of the heating element 232 are located on the first side 234, and are connected to the temperature control element 31, which is placed along the second side 235. This reduces the length of the wire 323 between the temperature control element 31 and the connector 233, facilitating the wiring between the connector 233 and the temperature control element 31, as well as the welding of the wiring to the connector 233.

[0073] In an optional embodiment, see Figures 4-6 As shown, the heating plate body 231 includes a through hole 2311, which includes a centerline along the second direction Y. The blade assembly 22 passes through the through hole 2311, thereby connecting to the motor 40 inside the cup holder 25. The temperature control element 31 includes a temperature controller 311 and a fuse 312 (understandably, a fuse is a type of fuse), located on both sides of the centerline 2313 of the through hole 2311. The connecting rods 233 connected to both ends of the heating tube 232 are located on both sides of the centerline 2313 of the through hole 2311. The connecting rod 233 connected to one end of the heating tube 232 is connected to the temperature controller 311 on the same side of the centerline 2313, and the connecting rod 233 connected to the other end of the heating tube 232 is connected to the fuse 312. The length direction of the temperature controller 311 and the fuse 312 is along the direction of the second side 235. The thermostat 311 is connected to the terminal block 233 at one end of the heating element 232, and the fuse 312 is connected to the terminal block 233 at the other end.

[0074] In this way, the thermostat 311 and the fuse 312 are set separately, and the connecting rods 233 connected to both ends of the heating tube 232 can be connected to the nearby temperature control element 31 respectively, avoiding the crossing of the wires of the thermostat 311 and the fuse 312, and facilitating the wiring and soldering assembly between the connecting rods 233 and the temperature control element 31.

[0075] 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); A heating plate assembly (23) is assembled at the bottom of the cup body (211). The heating plate assembly (23) includes a heating plate body (231), a heating tube (232), and a connecting rod (233). The heating tube (232) is disposed on the lower surface of the heating plate body (231) and extends circumferentially along the heating plate assembly (23). A notch (2321) is provided between the two ends of the heating tube (232), and the connecting rod (233) is connected to both ends of the heating tube (232). The connecting rod (233) includes a first end (2331), a second end (2332), and a bent portion (2333) connecting the first end (2331) and the second end (2332). The first end (2331) is connected to the heating tube (232). A temperature sensor (32) is disposed in the heating plate body (231), located in the notch (2321), and has a gap between it and the connecting rod (233).

2. The stirring cup assembly according to claim 1, characterized in that, The distance between the bent portions (2333) of the connecting rods (233) at both ends of the heating tube (232) is less than or equal to one-third of the total length of the heating tube (232).

3. The stirring cup assembly according to claim 1, characterized in that, The distance between the bent portion (2333) of the connector (233) and the temperature sensor (32) is greater than or equal to 3 mm.

4. The stirring cup assembly (20) according to claim 3, characterized in that, The distance between the bent portion (2333) of the connector (233) and the temperature sensor (32) is 3 mm to 18 mm.

5. The stirring cup assembly according to claim 1, characterized in that, The bending portion (2333) bends toward the space enclosed by the heating tube (232). The stirring cup assembly includes a temperature control element (31), which is disposed on the lower surface of the heating plate body (231), located within the space enclosed by the heating tube (232), and connected to the second end (2332) of the connecting rod (233). The bending angle of the bending portion (2333) is 80 degrees to 100 degrees.

6. The stirring cup assembly according to any one of claims 1-5, characterized in that, The cup body (211) has a quadrilateral cross section in the horizontal direction, and the heating plate body (231) has a quadrilateral orthographic projection in the horizontal plane.

7. The stirring cup assembly according to claim 6, characterized in that, The heating element (232) is arranged in a quadrilateral, and the notch (2321) is provided on one side of the quadrilateral.

8. The stirring cup assembly according to claim 7, characterized in that, The stirring cup assembly includes a temperature control element (31), which is disposed on the lower surface of the heating plate body (231), located within the space enclosed by the heating tube (232), and connected to the second end (2332) of the connecting rod (233); The quadrilateral includes a first side (234) opposite each other in a first direction and a second side (235) opposite each other in a second direction, the first side (234) intersecting the second side (235), the notch (2321) being provided on one of the first side (234), the length direction of the temperature control element (31) being provided along the extension direction of the second side, and the first direction and the second direction being perpendicular in the horizontal plane.

9. The stirring cup assembly according to claim 8, characterized in that, It also includes a blade assembly (22), the heating plate body (231) includes a through hole (2311), the blade assembly (22) passes through the through hole (2311), the through hole (2311) includes a center line (2313) along the second direction; the temperature control element (31) includes a temperature controller (311) and a fuse (312), which are respectively located on both sides of the center line (2313) of the through hole (2311), the connecting rods (233) connected to both ends of the heating tube (232) are respectively located on both sides of the center line (2313), the connecting rod (233) connected to one end of the heating tube (232) is connected to the temperature controller (311) located on the same side of the center line (2313), and the connecting rod (233) connected to the other end of the heating tube (232) is connected to the fuse (312).

10. A food processor, characterized in that, It includes a base (10) and a stirring cup assembly (20) as described in any one of claims 1-9.

11. The food processor according to claim 10, 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).

12. The food processor according to claim 11, 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).

13. The food processor according to claim 12, 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).