Cup body assembly and food processor

By incorporating a glass bottom and vibration damping components into the food processor, the problems of sticky residue on the bottom of the glass cup being difficult to clean and breakage due to vibration have been solved. This achieves efficient steam heating and a stable sealing structure, improving the user experience and equipment reliability.

CN223817431UActive Publication Date: 2026-01-23ZHEJIANG SHAOXING SUPOR DOMESTIC ELECTRICAL APPLIANCE CO LTD
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Patent Information

Application Number
CN202520202284.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-08
Publication Date
2026-01-23
Estimated Expiration
2035-02-08

AI Technical Summary

Technical Problem

The bottom of the glass container of existing food processors is not sealed, and the heating plate is made of aluminum or steel, which makes it difficult to clean the food residue. In addition, the blade assembly vibrates a lot and is easy to break.

Method used

Featuring a glass-sealed bottom design, combined with vibration damping components and a sealing structure, it heats food with steam and absorbs vibrations from the blade assembly using damping and cushioning components, reducing the risk of the glass breaking. At the same time, a multi-layered sealing structure prevents food residue and dust from entering.

Benefits of technology

It reduces the difficulty of cleaning due to food residue, decreases the risk of glass breakage, improves cleaning convenience and sealing effect, and ensures stable operation of the food processor.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a cup body assembly and a food processor. According to one embodiment of the invention, the cup body assembly comprises a glass cup, the glass cup comprises a glass sealing bottom, the glass sealing bottom is provided with a cutter mounting hole and a steam connector, and the steam connector is used for being connected with a steam generating device of the food processor; the vibration reduction assembly comprises a vibration reduction piece, and the vibration reduction piece is arranged on the peripheral side of the glass cup in a sleeving mode; and the cutter assembly comprises a cutter holder and a cutter assembled on the cutter holder, and the cutter holder is arranged in the mounting hole in a penetrating manner and is mounted on the vibration reduction part. According to the scheme, a user can conveniently clean the cup bottom, and meanwhile the vibration influence of the cutter assembly on the all-glass cup is reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of food processors, in particular to a cup assembly and a food processor. BACKGROUND

[0002] The bottom of the glass cup of some food processors is not sealed, and the heating disc is fixed on the bottom wall of the glass cup through a sealing ring to realize the heating function of the food. In this scheme, the material of the heating disc is usually aluminum or steel. The food needs to be in contact with the aluminum or steel heating disc. Once the bottom is burnt, the heating disc at the bottom of the cup is difficult to clean. CONTENT OF THE UTILITY MODEL

[0003] The present application provides a cup assembly and a food processor, which facilitates the user to clean the bottom of the cup and reduces the vibration influence of the knife assembly on the full glass cup.

[0004] In a first aspect, the present application provides a cup assembly, comprising: a glass cup comprising a glass sealing bottom, the glass sealing bottom being provided with a knife mounting hole and a steam interface, the steam interface being used for connecting a steam generating device of a food processor; a damping assembly comprising a damping piece, the damping piece being sleeved on the circumferential side of the glass cup; and a knife assembly comprising a knife seat and a knife tool assembled on the knife seat, the knife seat being provided in the mounting hole and mounted on the damping piece.

[0005] By adopting the above technical scheme, the glass sealing bottom is in contact with the food at the bottom of the glass cup, rather than an aluminum or steel heating disc, which reduces the risk of burnt bottom and facilitates the user to clean. In addition, the steam interface for connecting the steam generating device is arranged on the glass sealing bottom, and the steam is used to heat the food in the glass cup, which is more efficient. In addition, since the bottom of the glass cup is a glass sealing bottom, if the knife assembly is directly mounted on the glass sealing bottom, the knife assembly will generate a large vibration during operation, which has a risk of causing the glass cup to break. Therefore, the knife seat of the present scheme is mounted on the damping piece, and the damping piece acts as an intermediate piece between the glass cup and the knife assembly during high-speed rotation of the knife tool for cutting and stirring the food. The damping piece can absorb and alleviate the vibration generated by the knife assembly, thereby reducing the risk of the glass cup breaking due to vibration.

[0006] Optionally, the damping assembly further comprises a buffer piece, the buffer piece being clamped between the damping piece and the glass cup.

[0007] This forms a multi-layer damping and buffering structure. The vibration is first transmitted from the knife assembly to the damping piece, then subjected to primary buffering by the damping piece, and then subjected to secondary buffering by the elastic deformation of the buffer piece before being transmitted to the glass cup. In this way, the vibration is gradually reduced, so that the vibration acting on the glass cup is controlled within a small range, thereby further reducing the risk of the glass cup breaking due to vibration.

[0008] Optionally, the buffer member comprises a damping sealing ring arranged in the knife mounting hole, the damping member comprises a first extension part extending into the knife mounting hole, the damping sealing ring is clamped between the first extension part and the glass cup, and the first extension part is clamped between the damping sealing ring and the knife seat.

[0009] In this way, on the one hand, the clamping structure of the damping sealing ring and the first extension part makes the connection between the knife seat, the damping member and the glass cup more compact and stable, so as to prevent the knife seat from loosening and shifting. On the other hand, the damping sealing ring plays a damping role while sealing, preventing moisture or food residues from entering the knife mounting hole.

[0010] Optionally, the damping sealing ring comprises a sealing main body, a first sealing lip and a second sealing lip connected in sequence; the sealing main body is located in the knife mounting hole and extends in the vertical direction, and is clamped between the first extension part and the glass cup; the first sealing lip is located in the glass cup and extends in the horizontal direction, and is clamped between the glass cup and the knife seat; and the second sealing lip is located outside the glass cup and extends in the horizontal direction, and is clamped between the damping member and the glass cup.

[0011] In terms of sealing, the first sealing lip can seal the gap between the glass bottom and the knife seat in the glass cup, preventing food residues, juice and the like from entering the knife mounting hole, and the second sealing lip can seal the gap between the damping member and the glass bottom outside the glass cup, preventing external dust and the like from entering the knife mounting hole and the glass cup. Therefore, the sealing main body, the first sealing lip and the second sealing lip can work cooperatively to achieve multi-directional sealing. In terms of damping, the sealing main body is clamped by the glass bottom and the first extension part in the knife mounting hole, the first sealing lip is clamped by the glass bottom and the knife seat in the glass cup, and the second sealing lip is clamped by the glass bottom and the damping member outside the glass cup. This multi-part clamping structure enables the damping sealing ring to absorb and buffer vibrations from multiple angles and multiple levels when facing the vibrations generated by the operation of the knife assembly.

[0012] Optionally, the top end of the first extension part abuts against the knife seat. In this way, the first extension part can also support the knife seat, improving the installation stability of the knife seat.

[0013] Optionally, the knife seat and the damping member are detachably connected.

[0014] Optionally, the cup body assembly further comprises a nut, the damping member has a through hole opposite to the knife mounting hole, the knife seat has a threaded part, the threaded part passes through the through hole, the nut is sleeved on the outer periphery of the threaded part and abuts against the bottom of the damping member, and the knife seat and the damping member are fixedly connected.

[0015] By sleeving the nut outside the threaded portion of the tool seat and pressing against the bottom of the damping member, a stable and sufficient axial fixing force can be generated to tightly fix the tool seat on the damping member. During the operation of the food processor, especially during the process of high-speed rotation of the cutter assembly for cutting and stirring food materials, the tool seat will bear various external forces such as large centrifugal force and reaction force of food materials. The fixing method of the nut can effectively prevent the tool seat from loosening, shifting or even falling off relative to the damping member, ensure the connection between the tool seat and the damping member to be always stable, and further ensure the reliability of the structure of the entire cup assembly, so as to maintain the stable and safe operation of the food processor.

[0016] Optionally, the cutter assembly further comprises a cutter shaft, a first bearing and a second bearing, the cutter shaft is arranged in the tool seat, the first bearing and the second bearing are arranged between the outer wall of the cutter shaft and the inner wall of the tool seat, and the first bearing and the second bearing are arranged at intervals along the axial direction of the cutter shaft.

[0017] It is easy to understand that the axial length of the cutter shaft is generally long, and the cutter shaft will bear a large radial force (a force perpendicular to the axial direction of the cutter shaft) during the rotation of the cutter, which makes the cutter shaft easy to deviate from the axial direction. Therefore, the first bearing and the second bearing of the present scheme are arranged at intervals along the axial direction of the cutter shaft (for reference to the Y direction shown in the drawings), and support the cutter shaft at different positions in the axial direction of the cutter shaft, so as to avoid the deviation of the cutter shaft. Figure 3

[0018] Optionally, the cutter assembly further comprises a support positioning member, the support positioning member is installed in the tool seat and connected to the first bearing and the second bearing at two ends.

[0019] The support positioning member can define the positional relationship between the first bearing and the second bearing. During assembly, the first bearing and the second bearing can be positioned at the two ends of the support positioning member, so that the first bearing and the second bearing are in the correct axial spacing and relative position, improving the accuracy and efficiency of the installation of the first bearing and the second bearing. At the same time, the support positioning member can fix the relative position of the first bearing and the second bearing in the axial direction in the tool seat, so as to avoid the mutual approach or separation, misalignment and other situations of the first bearing and the second bearing in the axial direction, thereby ensuring that the cutter shaft can rotate in a stable and accurate support state, maintaining the stability of the entire cutter assembly structure, and making the food processor more stable and reliable during operation.

[0020] In a second aspect, the present application provides a food processor, comprising: a main machine comprising a steam generating device and a water pump; a water tank assembled to the main machine; and the cup assembly as claimed in any one of the preceding aspects, the cup assembly being assembled to the main machine, and the glass cup, the steam generating device, the water pump and the water tank being in communication.

[0021] ​Optionally, the glass cup is provided with a communication port, and the food processor further comprises a first conveying pipeline and a water inlet joint, the first conveying pipeline is connected with the steam generating device and the air supply joint, and the air supply joint is installed on the communication port; wherein the air supply joint is provided with an air supply channel, and the first conveying pipeline comprises a connecting section close to the air supply joint, and the extension direction of the air supply channel is different from the extension direction of the connecting section.

[0022] It is easy to understand that if the connecting section of the first conveying pipeline is consistent with the direction of the air supply channel, the food material in the glass cup can easily block the air supply channel and the connecting section, and interfere with the normal flow of steam. Therefore, the extension direction of the air supply channel and the extension direction of the connecting section are set to be different, so that the food material is difficult to reach the connecting section of the conveying pipeline, and the steam can be more smoothly input into the glass cup from the conveying pipeline through the air supply channel.

[0023] Optionally, the extension direction of the air supply channel and the extension direction of the connecting section are perpendicular, so as to further improve the stability during the steam conveying process. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 FIG. 1 is a cross-sectional view of a food processor according to an example embodiment;

[0025] Figure 2 FIG. 2 is an exploded structural schematic view of a cup assembly according to an example embodiment;

[0026] Figure 3 FIG. 3 is a schematic view of a steam generating device according to an example embodiment; Figure 1 FIG. 4 is an enlarged schematic view of A of FIG. 3;

[0027] Figure 4 FIG. 5 is an exploded structural schematic view of a knife assembly and a damping assembly according to an example embodiment;

[0028] Figure 5 FIG. 6 is an exploded structural schematic view of a cup assembly according to another example embodiment.

[0029] 10, glass cup; 11, glass bottom; 12, steam interface; 13, connecting thread; 20, damping assembly; 21, damping piece; 211, first extension; 22, damping sealing ring; 221, sealing body; 222, first sealing lip; 223, second sealing lip; 30, knife assembly; 31, knife seat; 311, threaded part; 312, shaft mounting hole; 32, knife; 33, knife shaft; 34, gasket; 35, oil seal; 36, first bearing; 37, second bearing; 38, support positioning piece; 39, nut; 40, main machine; 41, steam generating device; 42, water pump; 50, water tank; 60, conveying pipeline; 61, first conveying pipeline; 611, connecting section; 62, air supply joint; 621, air supply channel; 71, upper connector; 72, lower connector; 81, cup seat; 82, cup cover; 83, handle; 84, annular sealing piece; 90, soundproof cover. DETAILED DESCRIPTION

[0030] The cup body assembly and the food processor are described in detail below with reference to the drawings. The features in the following embodiments and implementation manners can be combined with each other without conflict.

[0031] Please refer to Figure 1 and Figure 2 , Figure 1 is a cross-sectional view of a food processor according to an example embodiment; Figure 2 is an exploded structural schematic view of a cup body assembly according to an embodiment.

[0032] The embodiment of the present application provides a food processor, which includes a main machine 40, a water tank 50, and a cup body assembly.

[0033] The main machine 40 includes a steam generating device 41 and a water pump 42. The steam generating device 41 can be a quick-heating boiler, but is not limited thereto.

[0034] The water tank 50 is assembled to the main machine 40 and is in communication with the steam generating device 41 through the water pump 42. The water pump 42 can pump water in the water tank 50 to the steam generating device 41 for heating to generate hot water or steam. The food processor can further include a controller. The controller can control the amount of water flowing to the steam generating device 41 by controlling the flow rate of the water pump 42. In the case that the flow rate of the water pump 42 is small, the steam generating device 41 can heat the water to generate steam. In the case that the flow rate of the water pump 42 is large, the steam generating device 41 can heat the water to generate hot water. Alternatively, the controller can control the power of the steam generating device 41 to control the generation of hot water or steam. In addition, the generation of hot water or steam by the steam generating device 41 is related to the flow rate of the water pump 42 and the power of the steam generating device 41. A person skilled in the art can set them as needed, and the present application does not make specific limitations thereto.

[0035] The cup assembly is assembled to the main machine 40, and the cup assembly includes the glass cup 10, the damping assembly 20, and the knife assembly 30. The glass cup 10 includes a glass bottom 11, the glass bottom 11 is provided with a knife mounting hole and a steam interface 12 penetrating along the thickness direction thereof, and the steam interface 12 is used to connect the steam generating device 41, so that the steam generated by the steam generating device 41 can enter the glass cup 10 to heat the food material.

[0036] The damping assembly 20 includes a damping piece 21, which can be of a plastic material and in a cylindrical shape, but are not limited thereto. The damping piece 21 is sleeved on the circumferential side of the glass cup 10, and the connection modes include but are not limited to screwing and clamping. Figure 2 As shown in the figure, the glass cup 10 is provided with a connecting thread 13 on the shaft side close to the bottom, and the damping piece 21 has a matching thread that is adapted to the connecting thread 13, and the damping piece 21 is threadedly connected to the glass cup 10.

[0037] The knife assembly 30 includes a knife seat 31 and a knife 32 assembled to the knife seat 31, and the material of the knife seat 31 can be but is not limited to metal such as aluminum and steel. The knife seat 31 is provided in the mounting hole and is mounted to the damping piece 21.

[0038] By adopting the above scheme, the glass cup 10 includes the glass bottom 11, and the material of the bottom of the glass cup 10 in contact with the food material is glass rather than an aluminum or steel heating disc, and the glass bottom 11 does not need to directly heat the food material, which reduces the risk of burnt bottom and is convenient for the user to clean. The steam interface 12 for connecting the steam generating device 41 is arranged on the glass bottom 11, and the steam is used to heat the food material in the glass cup 10, which is high in efficiency.

[0039] In addition, since the bottom of the glass cup 10 is the glass bottom 11, if the knife assembly 30 is directly mounted on the glass bottom 11, the knife assembly 30 will generate relatively large vibration in the running process, which will cause the risk of the glass cup 10 being broken. Therefore, the knife seat 31 of the present scheme is mounted to the damping piece 21, and the damping piece 21 acts as an intermediate piece between the glass cup 10 and the knife assembly 30 in the process of the knife 32 rotating at high speed to cut and stir the food material, so that the damping piece 21 can absorb and relieve the vibration generated by the knife assembly 30, thereby reducing the risk of the glass cup 10 being broken due to vibration.

[0040] Please refer to Figure 3 and combine Figure 2 and Figure 1 , Figure 3 is Figure 1 A enlarged schematic view of part A.

[0041] In an embodiment, the food processor further includes a conveying pipeline 60, and the glass cup 10, the steam generating device 41, the water pump 42, and the water tank 50 are communicated through the conveying pipeline 60.

[0042] Specifically, the food processor further comprises a gas supply connector 62, and the delivery pipeline 60 comprises a first delivery pipeline 61 connected to the steam generator 41 and the gas supply connector 62, and the gas supply connector 62 is installed on the steam interface 12 of the glass cup 10. The gas supply connector 62 has a gas supply channel 621 in communication with the inside of the glass cup 10, and the first delivery pipeline 61 comprises a connecting section 611 connected to the gas supply connector 62, and the extension direction of the gas supply channel 621 is different from the extension direction of the connecting section 611.

[0043] It is easy to understand that if the connecting section 611 of the first delivery pipeline 61 is consistent with the direction of the gas supply channel 621, the food material in the glass cup 10 can easily block the gas supply channel 621 and the connecting section 611, and interfere with the normal flow of steam. Therefore, the extension direction of the gas supply channel 621 is different from the extension direction of the connecting section 611, so that the food material is difficult to reach the connecting section 611 of the delivery pipeline 60, and the steam can be more smoothly input into the glass cup 10 from the delivery pipeline 60 through the gas supply channel 621.

[0044] Further, the extension direction of the gas supply channel 621 is perpendicular to the extension direction of the connecting section 611, so as to further improve the stability during steam delivery. As shown in the embodiment, the extension direction of the gas supply channel 621 is horizontal, and steam and the like can flow out from the side of the gas supply connector 62, and the extension direction of the connecting section 611 is vertical, but is not limited thereto. Figure 3

[0045] In an embodiment, the damping assembly 20 further comprises a buffer, which has elasticity and can be but is not limited to a silica gel material. The buffer is clamped between the damping member 21 and the glass cup 10, forming a multi-layer damping and buffering structure. Vibration is first transmitted from the knife assembly 30 to the damping member 21, and after preliminary buffering by the damping member 21, the vibration is secondarily buffered by the elastic deformation of the buffer, and then transmitted to the glass cup 10. In this way, the vibration is gradually reduced, so that the vibration acting on the glass cup 10 is controlled within a smaller range, further reducing the risk of the glass cup 10 being broken due to vibration.

[0046] Further, the buffer comprises a damping sealing ring 22, the damping sealing ring 22 is arranged in the knife mounting hole of the glass cup 10, the damping member 21 comprises a first extension part 211 extending into the knife mounting hole, the damping sealing ring 22 is clamped between the first extension part 211 and the glass cup 10, and the first extension part 211 is clamped between the damping sealing ring 22 and the knife seat 31.

[0047] ​With this configuration, on the one hand, the interlocking structure of the vibration-damping sealing ring 22 and the first extension 211 creates a tighter and more stable connection between the knife holder 31, the vibration damping member 21, and the glass 10, preventing the knife holder 31 from loosening or shifting. On the other hand, the vibration-damping sealing ring 22, while providing vibration damping, also acts as a seal, preventing moisture or food residue from seeping into the knife mounting hole.

[0048] like Figure 3 In the illustrated embodiment, the vibration-damping sealing ring 22 includes a connected sealing body 221, a first sealing lip 222, and a second sealing lip 223; wherein, the sealing body 221 is located within the knife mounting hole and is clamped between the glass bottom 11 and the first extension 211; the first sealing lip 222 is located within the glass cup 10 and extends horizontally ( Figure 3 As shown in X), it extends and is clamped between the glass bottom 11 and the knife holder 31; the second sealing lip 223 is located outside the glass cup 10, extends horizontally, and is clamped between the glass bottom 11 and the damping member 21.

[0049] In terms of sealing, the first sealing lip 222 seals the gap between the glass bottom 11 and the knife holder 31 inside the glass cup 10, preventing food residue, juice, etc. from entering the knife mounting hole. The second sealing lip 223 seals the gap between the vibration damping member 21 and the glass bottom 11 outside the glass cup 10, preventing external dust and other contaminants from entering the knife mounting hole and the inside of the glass cup 10. Therefore, the sealing body 221, the first sealing lip 222, and the second sealing lip 223 can work together to achieve multi-directional sealing.

[0050] In terms of vibration reduction, the sealing body 221 is held in the knife mounting hole by the glass bottom 11 and the first extension 211, the first sealing lip 222 is held in the glass cup 10 by the glass bottom 11 and the knife holder 31, and the second sealing lip 223 is held in the glass cup 10 by the glass bottom 11 and the vibration damping member 21. This multi-part clamping structure enables the vibration damping sealing ring 22 to absorb and buffer vibrations from multiple angles and multiple levels when facing the vibrations generated by the operation of the knife assembly 30.

[0051] In one embodiment, the top end of the first extension 211 also abuts against the tool holder 31. Thus, the first extension 211 can provide support for the tool holder 31, improving the installation stability of the tool holder 31.

[0052] In one embodiment, the tool holder 31 and the vibration damper 21 are detachably connected. This allows the user to clean the tool holder 31 and the vibration damper 21 separately, improving the convenience and thoroughness of cleaning. Furthermore, the tool holder 31 and the vibration damper 21 can be replaced and repaired individually, reducing the user's maintenance costs.

[0053] Further, the cup assembly further comprises a nut 39, the damping member 21 has a through hole opposite to the cutter mounting hole, the cutter holder 31 has a threaded portion 311 penetrating through the through hole, the nut 39 is sleeved on the outer periphery of the threaded portion 311 and presses against the bottom of the damping member 21, so as to fixedly connect the cutter holder 31 and the damping member 21.

[0054] By sleeving the nut 39 on the outer periphery of the threaded portion 311 of the cutter holder 31 and pressing against the bottom of the damping member 21, stable and sufficient axial fixing force can be generated to tightly fix the cutter holder 31 on the damping member 21. During the operation of the food processor, especially during the process of high-speed rotation of the cutter assembly 30 for cutting and stirring food materials, the cutter holder 31 will bear various external forces such as large centrifugal force and reaction force of the food materials, and this fixing mode of the nut 39 can effectively prevent the cutter holder 31 from loosening, shifting or even falling off relative to the damping member 21, so as to ensure that the connection between the cutter holder 31 and the damping member 21 is always stable, and further to ensure the reliability of the entire cup assembly structure and maintain the stable and safe operation of the food processor.

[0055] Further, the nut 39 also abuts against the bottom of the first extension portion 211. The first extension portion 211 can limit the nut 39 and prevent the nut 39 from being excessively tightened and pressed against the glass cup 10 to cause the glass cup 10 to break and deform.

[0056] Reference Figure 4 And Figure 5 In an embodiment, the cutter assembly 30 further comprises a gasket 34, an oil seal 35, a first bearing 36 and a second bearing 37.

[0057] The outer surface of the gasket 34 has a Teflon coating and is clamped between the cutter 32 and the cutter holder 31. The Teflon coating has a low friction coefficient, which can reduce the friction between the cutter 32 and the cutter holder 31 when the cutter 32 rotates.

[0058] The oil seal 35 is arranged in the cutter holder 31 and located at the end of the cutter holder 31 close to the cutter 32, clamped between the inner wall of the cutter holder 31 and the cutter shaft 33, for sealing the gap between the cutter holder 31 and the cutter shaft 33 and preventing foreign matters from entering the cutter holder 31.

[0059] The cutter assembly 30 further comprises a cutter shaft 33, the cutter 32 is fixed to the outer periphery of the cutter shaft 33, the cutter seat 31 has a shaft mounting hole 312, the cutter shaft 33 is arranged in the shaft mounting hole 312, the first bearing 36 and the second bearing 37 are both arranged between the outer wall of the cutter shaft 33 and the inner wall of the cutter seat 31, and the first bearing 36 and the second bearing 37 are arranged at intervals along the axial direction of the cutter shaft 33. It is easy to understand that the axial length of the cutter shaft 33 is generally long, and the cutter shaft 33 will bear a large radial force (a force perpendicular to the axial direction of the cutter shaft 33) during the rotation of the cutter 32, which makes the cutter shaft 33 easy to deviate from the axial direction. Therefore, the first bearing 36 and the second bearing 37 of the present scheme are arranged at intervals along the axial direction of the cutter shaft 33, and the cutter shaft 33 is supported at different positions in the axial direction of the cutter shaft 33 respectively, so as to avoid the deviation of the cutter shaft 33.

[0060] Further, the cutter assembly 30 further comprises a support positioning member 38, which can be sleeve-shaped and inserted into the cutter seat 31, and the material can be metal, but all are not limited to this. The support positioning member 38 is installed in the cutter seat 31, and the two ends are connected with the first bearing 36 and the second bearing 37 respectively.

[0061] The support positioning member 38 defines the positional relationship between the first bearing 36 and the second bearing 37. During assembly, the first bearing 36 and the second bearing 37 can be positioned at the two ends of the support positioning member 38 respectively, so that the first bearing 36 and the second bearing 37 are in the correct axial spacing and relative position, improving the accuracy and efficiency of the first bearing 36 and the second bearing 37 during installation. At the same time, the support positioning member 38 can fix the relative position of the first bearing 36 and the second bearing 37 in the axial direction in the cutter seat 31, avoid the first bearing 36 and the second bearing 37 from moving closer to or away from each other in the axial direction, mispositioning and other situations, and further ensure that the cutter shaft 33 can rotate in a stable and accurate support state, maintain the stability of the structure of the entire cutter assembly 30, and make the food processor more stable and reliable during operation.

[0062] In one embodiment, the cup assembly further comprises an upper connector 71 and a lower connector 72, the main machine 40 comprises a motor, the cutter shaft 33 is arranged in the cutter seat 31 and fixedly connected to the upper connector 71, the upper connector 71 is installed on the lower connector 72, and the lower connector 72 is connected to the motor.

[0063] The food processor further comprises a cup seat 81, a cup cover 82, a handle 83 and a soundproof cover 90. The cup seat 81 is installed on the main machine 40, and is used to accommodate components such as the damping member 21, the upper connector 71 and the lower connector 72. The cup cover 82 covers the opening of the glass cup 10 and is used to close the glass cup 10. The handle 83 is fixed to the outer peripheral wall of the glass cup 10, which is convenient for users to take and place. The soundproof cover 90 is installed on the main machine 40 and covers the outer periphery of the glass cup 10.

[0064] The above only is the preferred embodiment of the present application, and is not used to limit the present application, any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application should be included in the protection scope of the present application.

Claims

1. A cup body assembly, characterized in that, include: A glass cup (10) includes a glass bottom (11) with a knife mounting hole and a steam inlet (12) for connecting to a steam generator (41) of a food processor; The vibration damping assembly (20) includes a vibration damping element (21), which is fitted around the periphery of the glass (10); and The tool assembly (30) includes a tool holder (31) and a tool (32) assembled on the tool holder (31), the tool holder (31) passing through the mounting hole and mounted on the vibration damper (21).

2. The cup assembly according to claim 1, characterized in that, The vibration damping assembly (20) also includes a buffer sandwiched between the vibration damping component (21) and the glass (10).

3. The cup assembly according to claim 2, characterized in that, The buffer includes a vibration-damping sealing ring (22) disposed in the knife mounting hole. The vibration damping member (21) includes a first extension (211) extending into the knife mounting hole. The vibration-damping sealing ring (22) is sandwiched between the first extension (211) and the glass (10). The first extension (211) is sandwiched between the vibration-damping sealing ring (22) and the knife holder (31).

4. The cup assembly according to claim 3, characterized in that, The vibration damping sealing ring (22) includes a connected sealing body (221), a first sealing lip (222), and a second sealing lip (223); The sealing body (221) is located inside the knife mounting hole, extends vertically, and is clamped between the first extension (211) and the glass (10); The first sealing lip (222) is located inside the glass cup (10), extends horizontally, and is held between the glass cup (10) and the knife holder (31); The second sealing lip (223) is located outside the glass cup (10), extends horizontally, and is sandwiched between the damping member (21) and the glass cup (10).

5. The cup assembly according to claim 3, characterized in that, The top end of the first extension (211) abuts against the knife holder (31).

6. The cup assembly according to claim 1, characterized in that, The blade holder (31) is detachably connected to the vibration damper (21).

7. The cup assembly according to claim 6, characterized in that, The cup assembly also includes a nut (39), the damper (21) has a through hole facing the knife mounting hole, the knife holder (31) has a threaded portion (311) that passes through the through hole, and the nut (39) is fitted onto the outer periphery of the threaded portion (311) and presses against the bottom of the damper (21) to fix the knife holder (31) and the damper (21).

8. The cup assembly according to claim 1, characterized in that, The tool assembly (30) further includes a tool shaft (33), a first bearing (36) and a second bearing (37). The tool holder (31) has a shaft mounting hole (312). The tool shaft (33) passes through the shaft mounting hole (312). The first bearing (36) and the second bearing (37) are both disposed between the outer wall of the tool shaft (33) and the inner wall of the tool holder (31). The first bearing (36) and the second bearing (37) are arranged at intervals along the axial direction of the tool shaft (33).

9. The cup assembly according to claim 8, characterized in that, The blade assembly (30) further includes a support positioning member (38), which is installed inside the blade holder (31) and has its two ends connected to the first bearing (36) and the second bearing (37) respectively.

10. A food processor, characterized in that, include: The main unit (40) includes a steam generator (41) and a water pump (42); A water tank (50) is assembled on the main unit (40); and The cup assembly as described in any one of claims 1 to 9, wherein the cup assembly is assembled to the host (40), and the glass (10), the steam generator (41), the water pump (42) and the water tank (50) are in communication.

11. The food processor according to claim 10, characterized in that, The food processor also includes a first delivery pipe (60) and a gas supply connector (62), the first delivery pipe (60) connecting the steam generator (41) and the gas supply connector (62), and the gas supply connector (62) being installed on the steam interface (12); The gas supply connector (62) has a gas supply channel (621), and the first delivery pipe (60) includes a connecting section (611) near the gas supply connector (62). The extension direction of the gas supply channel (621) is different from the extension direction of the connecting section (611).

12. The food processor according to claim 11, characterized in that, The extension direction of the gas supply channel (621) is perpendicular to the extension direction of the connecting section (611).