Food processing cup and food processing device

By designing a detachable blade disc assembly connected to the cup body in the food processor, and combining the cooperation of the limit assembly and the grip, the problems of inconvenient cleaning and bacterial growth of the food processor are solved, and the effect of stability and convenient cleaning is achieved.

CN116491825BActive Publication Date: 2025-10-17GUANGDONG MIDEA CONSUMER ELECTRICS MFG CO LTD
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Patent Information

Application Number
CN202210053492.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-01-18
Publication Date
2025-10-17
Estimated Expiration
2042-01-18

AI Technical Summary

Technical Problem

The blade assembly of the existing food processor is fixedly connected to the mixing cup, which makes cleaning inconvenient and easily breeds bacteria, affecting the user experience.

Method used

A food processing cup is designed, in which a knife disc assembly is detachably connected to a cup body. The detachable connection is achieved through the cooperation of a limit assembly and a grip portion, thereby ensuring stability during food preparation and facilitating cleaning.

Benefits of technology

The detachable connection design reduces the difficulty of cleaning, avoids bacterial growth, improves user experience, and ensures the stability and reliability of equipment operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

Embodiments of the present application provide a food processing cup and a food processing device, the food processing cup comprising: a cup body; a blade disc assembly, the blade disc assembly being detachably connected with the food processing cup; a limiting assembly movably arranged on the cup body, the limiting assembly comprising a first limiting part; a holding part connected with the limiting assembly, the holding part being capable of driving the limiting assembly to move relative to the cup body; a second limiting part arranged on the blade disc assembly; wherein, in the case that the holding part drives the limiting assembly to move to a first position, the first limiting part and the second limiting part are in limiting cooperation; in the case that the holding part drives the limiting assembly to move to a second position, the first limiting part and the second limiting part are separated from each other. The detachable connection between the cup body and the blade disc assembly is realized by controlling the cooperation state of the first limiting part and the second limiting part, which facilitates the cleaning of the cup body and the blade disc assembly and ensures the stability of the food processing device during operation.
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Description

TECHNICAL FIELD

[0001] Embodiments of the present application relate to the technical field of household appliances, and in particular, to a food processing cup and a food processing device. BACKGROUND

[0002] With the increasing improvement of people's living standards, many different types of food processors appear on the market. The food processor includes a soybean milk machine, a blender or a blender, and a machine for crushing and stirring food materials.

[0003] However, the blade assembly of the related art food processor is fixed to the stirring cup, that is, the blade assembly and the stirring cup cannot be disassembled, which causes the blade assembly and the stirring cup to be inconvenient to clean and not thoroughly cleaned, and bacteria are easily bred after long-term use of the food processor. SUMMARY

[0004] Embodiments of the present application aim to at least solve one of the technical problems existing in the prior art.

[0005] To this end, a first aspect of embodiments of the present application provides a food processing cup.

[0006] A second aspect of embodiments of the present application provides a food processing device.

[0007] Therefore, according to a first aspect of embodiments of the present application, a food processing cup is provided, which comprises: a cup body; a blade assembly, which is detachably connected with the food processing cup; a limiting assembly, which is movably arranged on the cup body and comprises a first limiting portion; a holding portion, which is connected with the limiting assembly and can drive the limiting assembly to move relative to the cup body; and a second limiting portion, which is arranged on the blade assembly; wherein the first limiting portion and the second limiting portion are in limiting cooperation when the holding portion drives the limiting assembly to move to a first position, and the first limiting portion and the second limiting portion are separated from each other when the holding portion drives the limiting assembly to move to a second position.

[0008] The food processing cup, the blade assembly, the limiting assembly, the holding portion and the second limiting portion provided by the embodiments of the present application, in particular, the blade assembly of the blade assembly is arranged in the interior of the cup body, and the inner surface of the blade assembly and the cup body jointly constitute an open food processing cavity, which can process food materials in the food processing cavity when the blade assembly of the blade assembly rotates at a high speed.

[0009] The blade assembly and the cup body are detachably connected, and it can be understood that the blade assembly can be mounted on the cup body and can be detached from the cup body, so as to facilitate cleaning of the cup body and the blade assembly while ensuring stability of the food processing device during operation.

[0010] The cooking machine in the related art needs to clean the stirring cup and the blade assembly of the cooking machine after the food material is processed. The stirring cup and the blade assembly are fixedly connected, which increases the cleaning difficulty, is easy to cause incomplete cleaning, and further causes bacteria breeding after long-term use of the cooking machine, affects the food safety of the user in preparing food materials, and reduces the user experience.

[0011] By detachably connecting the blade assembly and the cup body, the blade assembly is connected with the cup body when the food material is prepared. When the food material preparation is completed, the blade assembly can be detached from the cup body, and the blade assembly and the cup body are cleaned respectively. Each part of the blade assembly can be directly cleaned from each angle without obstruction, especially the food residues left in the angle and gap of the blade assembly, which reduces the cleaning difficulty, ensures the cleaning effect, avoids the problem of bacteria breeding in the food processing cup due to incomplete cleaning after long-term use, and improves the user experience of the food processing cup.

[0012] Further, the limiting assembly is movably arranged on the cup body, that is, the limiting assembly can move relative to the cup body. The limiting assembly includes a first limiting part. It can be understood that the limiting assembly can drive the first limiting part to move relative to the cup body. The holding part is connected with the limiting assembly, that is, the holding part can drive the limiting assembly to move relative to the cup body, and further drive the first limiting part to move. It can be understood that the user can drive the limiting assembly to move by operating the holding part. By providing the holding part, the user can control the installation state between the blade assembly and the cup body through the holding part, which is convenient for the user to operate and improves the user experience.

[0013] The second limiting part is arranged on the blade assembly. The limiting assembly can move relative to the cup body to make the first limiting part and the second limiting part of the limiting assembly cooperate or disengage. Thus, the detachable connection between the cup body and the blade assembly can be realized by controlling the cooperation state of the first limiting part and the second limiting part, which facilitates the cleaning of the cup body and the blade assembly and ensures the stability of the food processing equipment during operation.

[0014] Specifically, when a user operates the grip portion to cause the grip portion to move the limiting assembly to the first position, i.e., when the first limiting portion moves to the first position, the first limiting portion and the second limiting portion cooperate to limit the blade disc assembly in the axial and radial directions of the cup body. That is, the first limiting portion and the second limiting portion cooperate to securely secure the blade disc assembly to the cup body. During the food preparation process, food in the food processing chamber often needs to be cut, ground, or stirred. The food is subjected to external forces that cause the food to rotate within the food processing chamber and generate centrifugal force. In this case, the cup body, affected by the centrifugal force of the food, is susceptible to rotation relative to the blade disc assembly, resulting in a loose connection between the blade disc assembly and the cup body, or even causing the blade disc assembly to separate from the cup body, thereby causing food leakage and even posing a danger to the operator. Therefore, the first limiting portion and the second limiting portion cooperate to lock the blade disc assembly and the cup body together, thereby ensuring that the blade disc assembly remains relatively fixed to the cup body during the food preparation process. The blade disc assembly and the cup body maintain a tight connection, thereby ensuring stability and reliability during operation of the food processing device.

[0015] When the user operates the grip portion so that the grip portion drives the limit assembly to move to the second position, that is, when the first limit portion moves to the second position, the first limit portion and the second limit portion disengage, and the knife disc assembly can be separated from the cup body. In other words, when the first limit portion and the second limit portion are disengaged, the knife disc assembly can be removed from the cup body to clean the knife disc assembly and the cup body separately, reducing the difficulty of cleaning, ensuring the cleaning effect, and avoiding the problem of bacteria breeding on the cup body and the knife disc assembly after long-term use of the food processing cup due to incomplete cleaning, thereby improving the user experience of the food processing cup.

[0016] It is worth noting that the first limiting portion and the second limiting portion are arranged in a one-to-one correspondence. One of the first limiting portion and the second limiting portion is constructed as a protrusion and the other is constructed as a groove. The limiting cooperation between the first limiting portion and the second limiting portion is achieved through the cooperation between the protrusion and the groove. The specific arrangement can be made according to actual needs.

[0017] In actual applications, the number of limiting assemblies can be set according to actual needs. It can be understood that when there are multiple limiting assemblies, multiple limiting assemblies are arranged along the circumference of the cup body, and the corresponding number of second limiting parts is multiple, and multiple second limiting parts are arranged along the circumference of the knife disc assembly. Each first limiting part is locked with a second limiting part, thereby improving the locking effect between the knife disc assembly and the cup body, further ensuring the stability and reliability of the food processing equipment during operation.

[0018] It should be noted that at least part of the holding portion is exposed to the cup body, so that the user can drive the limiting assembly to move through the holding portion to make the first limiting portion and the second limiting portion cooperate or disengage, and then control the cooperation state of the first limiting portion and the second limiting portion to realize the detachable connection of the cup body and the cutter disc assembly, facilitate the cleaning of the cup body and the cutter disc assembly, and ensure the stability during the operation of the food processing equipment.

[0019] In addition, the food processing cup provided by the above technical scheme of the application also has the following additional technical features.

[0020] In a possible design, the food processing cup further comprises a limiting protrusion, which is arranged on the limiting assembly; and when the holding portion drives the limiting assembly to move to the first position, the limiting protrusion is in limiting cooperation with the cup body.

[0021] In this design, the food processing cup further comprises a limiting protrusion, which is arranged on the limiting assembly. It can be understood that when the holding portion drives the limiting assembly to move relative to the cup body, the limiting protrusion can also be driven to move relative to the cup body. Specifically, when the holding portion drives the limiting assembly to move so that the first limiting portion moves to the first position, the limiting protrusion is in limiting cooperation with the cup body, that is, when the first limiting portion and the second limiting portion are in limiting cooperation to lock the cutter disc assembly in the axial direction and the radial direction, the limiting protrusion is in limiting cooperation with the cup body, thereby limiting the movement of the limiting assembly, that is, when the limiting protrusion is in limiting cooperation with the cup body, the limiting assembly cannot rotate relative to the cup body, so that the first limiting portion and the second limiting portion remain in the locked state, ensuring the stability and reliability of the food processing equipment during operation.

[0022] It can be understood that when it is desired to detach the cutter disc assembly from the cup body, the holding portion can be operated to drive the first part of the limiting assembly to move relative to the second part of the limiting assembly. The limiting protrusion is connected to the first part of the limiting assembly, so that the limiting protrusion is disengaged from the cup body. The holding portion can drive the limiting assembly to rotate, so that the first limiting portion and the second limiting portion are disengaged. The cutter disc assembly can be detached from the cup body to clean the cutter disc assembly and the cup body separately, reduce the cleaning difficulty, ensure the cleaning effect, avoid the problem that bacteria breed in the cup body and the cutter disc assembly due to incomplete cleaning after long-term use of the food processing cup, and improve the user experience of the food processing cup.

[0023] It should be noted that the cup body is provided with a limiting gap, and the holding portion drives the limiting protrusion to move into or out of the limiting gap through the first part of the limiting assembly, so as to realize the limiting cooperation or disengagement cooperation of the limiting protrusion and the cup body. It can be understood that the width of the limiting gap is the width along the radial direction of the cup body, so that when the limiting protrusion is inserted into the limiting gap, the rotation of the limiting assembly can be limited.

[0024] In a possible design, the limiting assembly includes a first limiting member and a second limiting member, wherein the first limiting member is movably arranged on the cup body, the first limiting portion is arranged on the side of the first limiting member facing the cutter assembly, a gap is formed between the first limiting member and the cup body, the second limiting member is arranged on the side of the first limiting member away from the cutter assembly, the limiting protrusion is arranged on the second limiting member, and the holding portion is connected with the second limiting member. Wherein, the holding portion can drive the second limiting member to move relative to the first limiting member, so as to drive the limiting protrusion to move into or out of the gap.

[0025] In this design, the limiting assembly includes a first limiting member and a second limiting member. Specifically, the first limiting member is movably arranged on the cup body, that is, the first limiting member can move relative to the cup body. The first limiting portion is arranged on the side of the first limiting member close to the cutter assembly, so that the first limiting portion can move between the first position and the second position during the movement of the first limiting member relative to the cup body.

[0026] Further, the second limiting member is arranged on the side of the first limiting member away from the cutter assembly, and the holding portion is connected with the second limiting member. It can be understood that when the holding portion is operated, the holding portion can drive the second limiting member to move relative to the first limiting member, so as to drive the limiting protrusion to move into or out of the gap formed between the first limiting member and the cup body, thereby limiting the rotation of the limiting assembly or releasing the movement limitation of the limiting assembly.

[0027] Specifically, when the user operates the grip portion so that the grip portion drives the limiting assembly to move to the first position, that is, when the first limiting portion moves to the first position, the first limiting portion and the second limiting portion cooperate to limit the blade disc assembly in the axial and radial directions of the cup body. At this time, the limiting protrusion is inserted into the gap to limit the rotation of the limiting assembly so that the blade disc assembly is securely mounted on the cup body. During the food preparation process, it is often necessary to cut, grind or stir the food in the food processing chamber. The food is subjected to external forces and rotates in the food processing chamber, generating centrifugal force. In this case, the cup body is easily affected by the centrifugal force of the food and easily rotates relative to the blade disc assembly, resulting in a loose connection between the blade disc assembly and the cup body, or even causing the blade disc assembly to detach from the cup body, thereby causing food leakage and even posing a danger to the operator. Therefore, the first limiting portion and the second limiting portion cooperate with each other to limit the position and restrict the rotation of the limiting assembly, so that the knife disc assembly and the cup body are locked with each other, so that the knife disc assembly always remains relatively fixed with the cup body during the food preparation process, and the knife disc assembly and the cup body remain tightly connected, ensuring the stability and reliability of the food processing equipment during operation.

[0028] The user operates the grip to drive the second limiting member to move relative to the first limiting member, thereby driving the limiting protrusion to move out of the gap, thereby releasing the movement restriction on the limiting assembly. The grip continues to drive the limiting assembly to rotate relative to the cup body, and when the first limiting member rotates to the second position, the first limiting member and the second limiting member disengage, and the blade disc assembly can be separated from the cup body. In other words, when the first limiting member and the second limiting member disengage, the blade disc assembly can be removed from the cup body to clean the blade disc assembly and the cup body separately, reducing the cleaning difficulty and ensuring the cleaning effect. This avoids the problem of bacteria breeding on the cup body and the blade disc assembly after long-term use of the food processing cup due to incomplete cleaning, thereby improving the user experience of the food processing cup.

[0029] It should be noted that the grip portion and the second stopper are an integrated structure. It is understood that this integrated structure has excellent mechanical properties, thereby improving the connection between the grip portion and the second stopper. This ensures that when the user operates the grip portion, the first stopper can be driven to move between the first position and the second position. The first stopper and the second stopper cooperate to achieve a detachable connection between the cup body and the blade disc assembly, facilitating cleaning of the cup body and the blade disc assembly while ensuring stability during operation of the food processing device.

[0030] In addition, the integrated structure is easy to process and produce, thereby improving the production efficiency of the food processing cup and reducing the production cost of the food processing cup and the food processing equipment having the food processing cup.

[0031] In addition, the limiting protrusion and the second limiting member can be an integral structure. It can be understood that the integral structure has good mechanical properties, thereby improving the connection effect between the limiting protrusion and the second limiting member, and ensuring the effective limiting between the limiting protrusion and the cup body. In addition, the integral structure is also convenient for processing and production, thereby improving the production efficiency of the food processing cup and reducing the production cost of the food processing cup and the food processing equipment with the food processing cup.

[0032] In a possible design, the food processing cup further comprises a first elastic member, one end of the first elastic member is connected with the first limiting member, and the other end of the first elastic member is connected with the second limiting member; wherein, when the limiting protrusion moves into the gap, the first elastic member pushes the holding portion to maintain the limiting matching state between the limiting protrusion and the cup body.

[0033] In this design, it is defined that the food processing cup further comprises a first elastic member, specifically, one end of the first elastic member is connected with the first limiting member, and the other end of the first elastic member is connected with the second limiting member. When the limiting protrusion moves into the gap, the first elastic member can push the holding portion to maintain the limiting matching state between the limiting protrusion and the cup body, that is, when the limiting protrusion moves into the gap, the first elastic member also has a certain compression amount, so that the first elastic member has a tendency to continue to push the second limiting member to move to the side where the gap is located, thereby ensuring the limiting effect between the limiting protrusion and the cup body and improving the installation stability and reliability of the cutter disc assembly and the cup body.

[0034] Specifically, during the process of operating the holding portion to drive the second limiting member to move relative to the first limiting member, and then drive the limiting protrusion to move out of the gap, the first elastic member is compressed, the first limiting member and the second limiting member are separated from each other, the holding portion can drive the first limiting member to rotate through the second limiting member, so that the first limiting portion and the second limiting portion are separated from each other, and the cutter disc assembly can be detached from the cup body. At this time, the first elastic member can be in a compressed state or a natural state, which can be set according to actual needs.

[0035] When the cutter disc assembly is installed, that is, the holding portion drives the limiting assembly to rotate, so that the first limiting portion rotates to the first position, the elastic force of the first elastic member can drive the second limiting member to move away from the first elastic member, and then the second limiting member drives the limiting protrusion to insert into the gap. At this time, at least a part of the second limiting member abuts against the first limiting member, thereby limiting the rotation of the limiting assembly.

[0036] By arranging the first elastic member, when it is necessary to cooperate the first limiting portion and the second limiting portion to lock the cutter disc assembly and the cup body, the second limiting member can be automatically reset to insert the limiting protrusion into the gap, thereby ensuring the locking state of the cutter disc assembly and the cup body.

[0037] It can be understood that when the first limiting part and the second limiting part are separated from each other, the first elastic piece is in a compressed state, and when the cutter head assembly is installed, the limiting assembly can be directly rotated by holding the holding part, and the elastic force of the first elastic piece can drive the second limiting piece to move, so that the limiting protrusion is inserted into the gap. If the first limiting part and the second limiting part are separated from each other, the first elastic piece is in a natural state, and when the cutter head assembly is installed, the holding part can be pressed first to drive the second limiting piece to compress the first elastic piece, and then the holding part drives the limiting assembly to rotate, and the first elastic piece drives the second limiting piece to move, so that the limiting protrusion is inserted into the gap. It can be set according to actual needs.

[0038] In actual application, the first elastic piece can be a spring or a spring sheet.

[0039] In a possible design, in the process that the holding part moves towards the first elastic piece, the first elastic piece deforms, the second limiting piece drives the limiting protrusion to move out of the gap, and the second limiting piece can drive the first limiting piece to rotate to the second position to release the limiting cooperation with the cup body; the holding part can drive the limiting assembly to rotate to the first position, and the second limiting piece drives the limiting protrusion to move into the gap to limit the cooperation with the cup body.

[0040] In this design, in the process that the holding part drives the limiting assembly to move from the first position to the second position, that is, when the cutter head assembly needs to be detached from the cup body, in the process that the first limiting part and the second limiting part are separated from each other, the second limiting piece is first driven by the holding part to move towards the first elastic piece, so that the first elastic piece is compressed, and the second limiting piece drives the limiting protrusion to move out of the gap. At this time, at least a part of the second limiting piece is separated from the abutment of the first limiting piece, that is, the rotation of the limiting assembly is no longer limited, and at this time, the second limiting piece is driven to rotate by the holding part, and the first limiting piece is driven to rotate relative to the cup body, so that the first limiting part and the second limiting part are separated from each other. Then the cutter head assembly can be detached from the cup body, so that the cutter head assembly and the cup body can be cleaned respectively, the cleaning difficulty is reduced, the cleaning effect is guaranteed, the problem that bacteria breed in the cup body and the cutter head assembly due to incomplete cleaning after long-term use of the food processing equipment is avoided, and the user experience of the food processing equipment is improved.

[0041] In the process that the holding part drives the limiting assembly to move from the second position to the first position, the holding part drives the limiting assembly to rotate, so that when the first limiting part rotates to the first position, the elastic force of the first elastic piece can drive the second limiting piece to move away from the first elastic piece, and then the second limiting piece drives the limiting protrusion to insert into the gap. At this time, at least a part of the second limiting piece abuts against the first limiting piece, so as to limit the rotation of the limiting assembly.

[0042] In a possible design, the limiting assembly further comprises a baffle, the baffle is connected with the first limiting member and forms a containing cavity with the first limiting member, and the first elastic member is located in the containing cavity; at least a portion of the second limiting member is capable of contacting the baffle along the radial direction of the cutter assembly.

[0043] In this design, the limiting assembly further comprises a baffle, specifically, the baffle is connected with the first limiting member, and the baffle forms a containing cavity with the first limiting member, and the first elastic member is located in the containing cavity, which can prevent the first elastic member from being exposed and corroded, and prolong the service life of the first elastic member.

[0044] Further, a portion of the second limiting member is capable of contacting the baffle along the radial direction of the cutter assembly, i.e., along the radial direction of the cup body, so that when the holding portion drives the second limiting member to rotate, the baffle can drive the first limiting member to rotate relative to the cup body, and then drive the first limiting portion to move between the first position and the second position, to achieve effective power transmission.

[0045] Specifically, the user first operates the holding portion to drive the second limiting member to move relative to the first limiting member, and then drive the limiting protrusion to move out of the gap, to release the movement restriction of the limiting assembly, and in this process, the first elastic member is compressed. The holding portion continues to drive the second limiting member to rotate, the second limiting member contacts the baffle, and then the baffle drives the first limiting member to rotate relative to the cup body, the first limiting member drives the first limiting portion to rotate to the second position, the first limiting portion is disengaged from the second limiting portion, and the cutter assembly can be separated from the cup body, so that the cutter assembly and the cup body can be disassembled for cleaning, which reduces the cleaning difficulty, ensures the cleaning effect, avoids the problem that bacteria breed in the cup body and the cutter assembly due to incomplete cleaning after long-term use, and improves the user experience of the food processing cup.

[0046] The holding portion is pushed to drive the limiting assembly to rotate relative to the cup body until the first limiting portion moves to the first position, and the first limiting portion is limited to cooperate with the second limiting portion to limit the cutter assembly in the axial direction and the radial direction of the cup body. At this time, the first elastic member drives the second limiting member to move relative to the first limiting member, so that the limiting protrusion is inserted into the gap, and then the rotation of the limiting assembly is limited, so that the cutter assembly is firmly installed on the cup body, so that the cutter assembly always remains relatively fixed with the cup body during the preparation of food materials, and the cutter assembly and the cup body remain closely connected to ensure the stability and reliability of the food processing equipment during operation.

[0047] In a possible design, the food processing cup further comprises an avoiding notch, the avoiding notch is arranged on the cup body, and the holding portion is exposed to the cup body through the avoiding notch.

[0048] In the design, the food processing cup further comprises an avoiding gap, specifically, the avoiding gap is arranged on the cup body, the holding part is exposed to the cup body through the avoiding gap, and then the user can drive the limiting assembly to move by operating the holding part to control the rotating position of the first limiting part, that is, even if the first limiting part moves between the first position and the second position, the connection state between the cutter disc assembly and the cup body is controlled. Thus, the detachable connection between the cup body and the cutter disc assembly can be realized by controlling the cooperation state of the first limiting part and the second limiting part, the cup body and the cutter disc assembly are convenient to clean, and the stability during the operation of the food processing equipment is ensured.

[0049] In actual application, in the case that the holding part drives the limiting assembly to move so that the first limiting part moves to the first position, the limiting assembly can fill the avoiding gap, so that the outer side wall of the limiting assembly and the outer side wall of the cup body form a complete side wall, and then the appearance effect of the food processing cup is improved, and the user experience is further improved.

[0050] In a possible design, the food processing cup further comprises a rotating shaft, the rotating shaft is arranged on the cup body and located at the avoiding gap, and the limiting assembly rotates around the rotating shaft. In the case that the holding part drives the limiting assembly to rotate to the first position, the limiting assembly can fill the avoiding gap.

[0051] In the design, the food processing cup further comprises a rotating shaft, specifically, the rotating shaft is arranged on the cup body, and the limiting assembly rotates around the rotating shaft, that is, the limiting assembly comprises a connecting part, the connecting part is provided with a connecting hole, and the rotating shaft is connected in rotation with the cup body through the connecting hole. Thus, under the driving of the holding part, the limiting assembly can rotate around the rotating shaft, and then the first limiting part moves between the first position and the second position. Thus, the detachable connection between the cup body and the cutter disc assembly can be realized by controlling the cooperation state of the first limiting part and the second limiting part, the cup body and the cutter disc assembly are convenient to clean, and the stability during the operation of the food processing equipment is ensured.

[0052] Further, in the case that the holding part drives the limiting assembly to move so that the first limiting part cooperates with the second limiting part, the limiting assembly can fill the avoiding gap, so that the outer side wall of the limiting assembly and the outer side wall of the cup body form a complete side wall, and then the appearance effect of the food processing cup is improved, and the user experience is further improved.

[0053] In a possible design, along the axial direction of the cutter disc assembly, the rotating axis of the rotating shaft is higher than the cooperation position of the first limiting part and the second limiting part.

[0054] In the design, the rotation axis of the rotating shaft is higher than the matching position of the first limiting part and the second limiting part in the axial direction of the cutter disc assembly, that is, the distance between the rotating shaft and the opening of the cup body is smaller than the distance between the matching position of the first limiting part and the second limiting part and the opening of the cup body. In other words, in the axial direction of the cup body, the position of the rotating shaft is higher than the matching position of the first limiting part and the second limiting part, so that the limiting assembly can support the cutter disc assembly in the axial direction of the cup body, further ensuring the installation stability between the cutter disc assembly and the cup body.

[0055] In a possible design, the food processing cup further includes a mounting groove and an elastic reset assembly, wherein the mounting groove is arranged on the cup body, the opening of the mounting groove faces the limiting assembly, the elastic reset assembly is arranged in the mounting groove, and one end of the elastic reset assembly can abut against the limiting assembly; during the process that the first limiting part is separated from the second limiting part, the limiting assembly can drive the elastic reset assembly to move in the mounting groove.

[0056] In the design, the food processing cup further includes a mounting groove and an elastic reset assembly, specifically, the mounting groove is arranged on the cup body, and the opening of the mounting groove faces the limiting assembly, the elastic reset assembly is arranged in the mounting groove, and one end of the elastic reset assembly can abut against the limiting assembly. Specifically, during the process that the holding part drives the limiting assembly to move so that the first limiting part is separated from the second limiting part, the limiting assembly can drive the elastic reset assembly to move in the mounting groove.

[0057] When the cutter disc assembly is detached from the cup body, the elastic reset assembly can drive the limiting assembly to reset, so that the second limiting part is in limiting cooperation with the first limiting part when the cutter disc assembly is installed, thereby reducing the installation difficulty of the cutter disc assembly and improving the installation efficiency.

[0058] In a possible design, the elastic reset assembly includes a second elastic member and a top rod, wherein the second elastic member is located in the mounting groove, the first end of the second elastic member is connected with the cup body, the first end of the top rod is located in the mounting groove and connected with the second end of the second elastic member, and the second end of the top rod extends out of the mounting groove and abuts against the limiting assembly.

[0059] In the design, the elastic reset assembly includes a second elastic member and a top rod, specifically, the second elastic member is located in the mounting groove, one end of the second elastic member is connected with the cup body, and the other end of the second elastic member is connected with the top rod, and one end of the top rod extends out of the mounting groove and abuts against the limiting assembly. Specifically, during the process that the holding part drives the limiting assembly to move so that the first limiting part is separated from the second limiting part, the limiting assembly can drive the top rod to move in the mounting groove, so that the second elastic member is compressed.

[0060] When the cutter head assembly is detached from the cup body, the second elastic member pushes the limiting assembly to reset through the ejector rod, so that the second limiting part is limited to cooperate with the first limiting part when the cutter head assembly is installed, thereby reducing the installation difficulty of the cutter head assembly and improving the installation efficiency.

[0061] In actual application, the second elastic member can be a spring or a spring sheet.

[0062] In a possible design, one of the first limiting part and the second limiting part is configured as a protrusion, and the other is configured as a groove.

[0063] In this design, one of the first limiting part and the second limiting part is configured as a protrusion, and the other is configured as a groove, that is, the first limiting part is a protrusion, and the second limiting part is a groove. The first limiting part is a groove, and the second limiting part is a protrusion, which can be set according to actual needs. The limiting cooperation between the first limiting part and the second limiting part is achieved through the cooperation of the protrusion and the groove.

[0064] Specifically, when the user operates the holding part to move the holding part to drive the limiting assembly to the first position, that is, the first limiting part moves to the first position, the first limiting part is limited to cooperate with the second limiting part to limit the cutter head assembly in the axial direction and the radial direction of the cup body, that is, through the limiting cooperation of the first limiting part and the second limiting part, the cutter head assembly is firmly installed on the cup body. Since the food material in the food processing cavity often needs to be cut, polished or stirred during food material preparation, the food material will rotate in the food processing cavity under the action of external force and generate centrifugal force. In this case, the cup body is easy to rotate relative to the cutter head assembly under the influence of the centrifugal force of the food material, which leads to insufficient connection between the cutter head assembly and the cup body or even causes the cutter head assembly to separate from the cup body, thereby causing food material leakage and even posing a danger to the operator. Therefore, the cutter head assembly and the cup body are locked by the mutual limiting of the first limiting part and the second limiting part, so that the cutter head assembly and the cup body remain relatively fixed during food material preparation, the cutter head assembly and the cup body remain tightly connected, and the stability and reliability of the food processing equipment during operation are ensured.

[0065] When the user operates the holding part to move the holding part to drive the limiting assembly to the second position, that is, the first limiting part moves to the second position, the first limiting part is disengaged from the second limiting part, and the cutter head assembly can be separated from the cup body, that is, when the first limiting part and the second limiting part are disengaged, the cutter head assembly can be detached from the cup body to clean the cutter head assembly and the cup body separately, thereby reducing the cleaning difficulty, ensuring the cleaning effect, avoiding the problem that bacteria breed in the cup body and the cutter head assembly due to incomplete cleaning after long-term use of the food processing cup, and improving the user's experience of using the food processing cup.

[0066] In a possible design, the cutter disc assembly includes a bottom disc, a bottom shell and a first sealing member, wherein the bottom shell is arranged on a side of the bottom disc away from the cup body and connected to the bottom disc, the second limiting part is arranged on the bottom shell, and the first sealing member is arranged between the bottom disc and the bottom shell to seal the gap between the bottom disc and the bottom shell.

[0067] In this design, the cutter disc assembly includes a bottom disc, a bottom shell and a first sealing member, specifically, the bottom shell is connected to the bottom disc. It can be understood that a containing cavity can be formed between the bottom disc and the bottom shell, which can be used to place other components of the cutter disc assembly, providing installation space for the installation of other components of the cutter disc assembly.

[0068] In actual application, the bottom disc can be a heating disc. It can be understood that the bottom disc is arranged close to the cup body compared with the bottom shell, and the bottom disc and the inner wall of the cup body form a food processing cavity, so that the bottom disc can heat the food materials while the cutter assembly of the cutter disc assembly stirs the food materials in the cup body at high speed, simplifying the preparation steps of the food materials and improving the taste after preparation.

[0069] Further, the cutter disc assembly further includes a first sealing member, specifically, the first sealing member is arranged between the bottom disc and the bottom shell, and the gap between the bottom disc and the bottom shell is sealed by the first sealing member, so that the liquid in the cup body can be prevented from seeping between the bottom disc and the bottom shell. It can be understood that if the bottom disc is a heating disc, a heating element for heating the heating disc is also arranged in the containing cavity between the bottom disc and the bottom shell. The liquid seeping between the bottom disc and the bottom shell can easily cause the heating element to short circuit and reduce the service life of the heating element. By arranging the first sealing member, the service life of the circuit element in the food processing cup can be prolonged while preventing the liquid from seeping between the bottom disc and the bottom shell.

[0070] The second limiting part is arranged on the bottom shell. Since the bottom disc and the bottom shell are connected, the cutter disc assembly can be firmly installed on the cup body when the first limiting part and the second limiting part are limited and matched.

[0071] In actual application, the first sealing member can be a silica gel sealing member.

[0072] In a possible design, the cutter disc assembly further includes a mounting hole, a through hole and a first fastener, wherein the mounting hole is arranged on the bottom disc, the through hole is arranged on the bottom shell, and the first fastener passes through the through hole and the mounting hole to fixedly connect the bottom disc and the bottom shell.

[0073] In this design, the cutter disc assembly further includes a mounting hole, a through hole and a first fastener, specifically, the mounting hole is arranged on the bottom disc, and the through hole is arranged on the bottom shell. It can be understood that the mounting hole and the through hole are arranged one by one. The first fastener is connected to the bottom disc and the bottom shell by passing through the through hole and the mounting hole, so as to realize the fixed installation of the bottom disc and the bottom shell, ensure the connection effect between the bottom disc and the bottom shell, and the structure is simple and convenient to operate.

[0074] In actual application, the mounting hole can be provided with an internal thread, and the first fastener can be a screw matched with the internal thread of the mounting hole. The screw is screwed into the mounting hole through the through hole and is tightened, so that the bottom plate is fixedly installed on the bottom shell. The specific installation can be set according to actual needs.

[0075] It should be noted that the number of mounting holes and through holes is one-to-one, thereby improving the connection effect between the bottom plate and the bottom shell, and further improving the stability and reliability of the food processing equipment during operation.

[0076] In a possible design, the blade disc assembly further includes a first mounting member, a blade assembly, a blade shaft, and a second sealing member. The first mounting member is arranged on the bottom plate and extends towards the bottom shell. The first mounting member is configured as a structure with a cavity. The blade assembly is located on the side of the bottom plate away from the bottom shell. The blade shaft is connected to the blade assembly through the bottom plate and is arranged in the cavity. The second sealing member is arranged between the first mounting member and the bottom shell to seal the gap between the first mounting member and the bottom shell.

[0077] In this design, the blade disc assembly further includes a first mounting member, a blade assembly, a blade shaft, and a second sealing member. Specifically, the first mounting member is arranged on the bottom plate and extends towards the bottom shell. The first mounting member is provided with a cavity. A portion of the blade shaft is located in the cavity, and another portion of the blade shaft extends out of the cavity towards the side where the cup body is located. The blade assembly is connected to the portion of the blade shaft extending out of the cavity. It can be understood that the blade shaft can rotate at high speed under the drive of the driving member of the food processing cup. The high-speed rotation of the blade shaft can drive the blade assembly to rotate at high speed in the cup body to process the food materials in the cup body.

[0078] In actual application, a bearing is further arranged in the cavity and is sleeved on the outer side of the blade shaft to support the blade shaft and ensure normal rotation of the blade shaft, and also to prolong the service life of the blade shaft. The number of bearings can also be set according to actual needs.

[0079] Further, the blade disc assembly further includes a second sealing member located between the first mounting member and the bottom plate. The second sealing member can seal the gap between the first mounting member and the bottom shell, thereby further preventing liquid in the cup body from seeping between the bottom plate and the bottom shell. It can be understood that if the bottom plate is a heating plate, a heating member for heating the heating plate is further arranged in the accommodation cavity between the bottom plate and the bottom shell. Seepage of liquid between the bottom plate and the bottom shell can easily cause the heating member to short circuit and reduce the service life of the heating member. By arranging the second sealing member, the liquid can be prevented from seeping between the bottom plate and the bottom shell, and the service life of the circuit element in the food processing cup can be prolonged.

[0080] In a possible design, the blade disc assembly further includes a transmission member arranged at one end of the blade shaft extending out of the bottom shell.

[0081] In this design, the blade disc assembly is defined as also including a transmission member. Specifically, the transmission member is disposed at the end of the blade shaft extending from the bottom shell. In other words, the first end of the blade shaft is connected to the blade assembly, and the second end of the blade shaft is connected to the transmission member. It is understood that the transmission member can drive the blade shaft to rotate at high speed, and the high-speed rotation of the blade shaft can drive the blade assembly to rotate at high speed within the cup body to process the food in the cup body.

[0082] In addition, one end of the cutter shaft connected to the transmission member extends out of the bottom shell, which facilitates the connection between the transmission member and the driving member to achieve high-speed driving of the cutter shaft.

[0083] In practical applications, a driving member can be disposed on the base of the food processing device. When the food processing cup is mounted on the base of the food processing device, the driving member can be connected to the transmission member, so that the driving member, driven by the driving member, can drive the knife assembly to rotate at high speed within the cup body via the knife shaft. When the food processing cup is removed from the base of the food processing device, the transmission member and the driving member are disconnected. Specific configurations can be made based on actual needs.

[0084] It should be noted that the transmission member may include a variety of transmission modes, such as gear transmission, shaft transmission, etc. The specific configuration can be made according to actual needs.

[0085] In one possible design, the cutter disc assembly further includes a mounting port, a coupler and a second fastener, wherein the mounting port is provided on the bottom shell, the coupler is provided on the bottom shell through the mounting port, and the second fastener is used to fix the coupler to the bottom shell.

[0086] In this design, it is defined that the blade disc assembly also includes a mounting port, a coupler and a second fastener. Specifically, a mounting port is provided on the bottom shell, and the chassis is connected to the external circuit through the coupler and obtains electrical energy so that the chassis has a heating function, that is, the chassis is a heating plate. It can be understood that the chassis is arranged closer to the cup body than the bottom shell, and the chassis and the inner wall of the cup body form a food processing cavity, so that while the knife assembly of the blade disc assembly beats the food in the cup body at high speed, the chassis can also heat the food, simplifying the steps of food preparation and improving the taste of the prepared food.

[0087] Furthermore, the coupler passes through the mounting opening, and the second fastener fixes the coupler to the bottom shell. That is, the coupler is arranged on the side of the bottom shell facing away from the cup body, that is, the coupler is arranged at the bottom of the food processing cup, so that the coupler can be easily connected to the external circuit while the bottom plate heats the food.

[0088] In a possible design, the cutter disc assembly further includes a fixing portion and a third sealing member, where the fixing portion is arranged in the bottom shell; the fixing portion is provided with a fixing groove, at least part of the coupler is arranged in the fixing groove, and the second fastener is connected between the coupler and the fixing portion to fix the coupler to the bottom shell; and the third sealing member is used to seal the gap between the fixing portion and the coupler.

[0089] In this design, the cutter disc assembly further includes a fixing portion and a third sealing member, where the fixing portion is arranged in the bottom shell; the fixing portion is provided with a fixing groove, at least part of the coupler is arranged in the fixing groove, and the second fastener is connected between the coupler and the fixing portion to fix the coupler to the bottom shell; and the third sealing member is used to seal the gap between the fixing portion and the coupler.

[0090] Further, the third sealing member is arranged between the fixing portion and the coupler to seal the gap between the fixing portion and the coupler, thereby ensuring normal operation of the cutter disc assembly and improving the stability and reliability of the food processing cup during operation.

[0091] In actual application, the third sealing member is a silica gel sealing member.

[0092] In a possible design, the cup body includes a cup base, a cup body, and a fourth sealing member, where the limiting assembly is arranged on the cup base, the cup body is connected to the cup base, and the fourth sealing member is arranged on the cup base; the fourth sealing member is used to seal the gap between the cutter disc assembly and the cup body and to seal the gap between the bottom opening end of the cup body and the cup base.

[0093] In this design, the cup body includes a cup base, a cup body, and a fourth sealing member, where the cup base is provided with a limiting assembly; therefore, the cooperation position of the cutter disc assembly and the cup body is on the cup base, and the cup base can be limited or released by the first limiting portion of the limiting assembly and the second limiting portion on the cutter disc assembly, so that the cutter disc assembly is installed on the cup body or disassembled from the cup body.

[0094] The cup body and the cup base are connected by threads or buckles, that is, the cup body and the cup base are detachably connected, so that the cup base and the cup body can be easily disassembled and cleaned, further reducing the cleaning difficulty of the food processing cup and improving the cleaning effect of the food processing cup.

[0095] Further, the cup seat is further provided with a fourth sealing element, specifically, the fourth sealing element can seal the gap between the cutter disc assembly and the cup body, and the gap between the cup seat and the cup body. Thus, the liquid in the cup body can be further prevented from entering the cutter disc assembly or leaking out of the cup body through the gap between the cutter disc assembly and the cup body, and the gap between the cup seat and the cup body, further improving the user experience.

[0096] In a possible design, the food processing cup further comprises a support portion protruding from the inner side wall of the cup seat, and the fourth sealing element is sleeved on the support portion; a first side wall of the support portion can support the bottom opening end of the cup body, and a second side wall of the support portion can limit the bottom disc.

[0097] In this design, it is specified that the food processing cup further comprises a support portion, specifically, the support portion protrudes from the inner side wall of the cup seat, that is, the support portion protrudes from the inner side wall of the cup seat in the direction of the interior of the cup seat. By providing the support portion, the cup body can be supported while the bottom disc is limited, ensuring the stability and reliability of the operation of the food processing equipment.

[0098] Specifically, since the cup seat is connected with the cutter disc assembly, and the cup body is connected with the cup seat, there can be a certain gap between the cup body and the cutter disc assembly. By providing the fourth sealing element, the connection between the three can be ensured to be sealed. A protruding support portion is provided on the inner side wall of the cup seat, and the fourth sealing element is sleeved on the support portion. The first side wall of the support portion close to the cup body abuts against the bottom opening end of the cup body through the fourth sealing element, thereby supporting the cup body and ensuring the installation stability and reliability of the cup body during the processing of food materials by the food processing equipment.

[0099] The second side wall of the support portion close to the bottom disc abuts against the bottom disc through the fourth sealing element, thereby limiting the bottom disc in the radial direction of the cup body, further improving the installation stability of the cutter disc assembly, thereby ensuring the stability and reliability of the operation of the food processing equipment and improving the user experience of the food processing equipment.

[0100] In actual application, the support portion and the cup seat can be an integral structure. It can be understood that the integral structure has good mechanical properties, so as to improve the connection strength between the support portion and the cup seat, ensure the supporting effect of the support portion on the cup body and the limiting effect of the support portion on the bottom disc. In addition, the integral structure is convenient for processing and production, so as to reduce the processing difficulty of the cup body, improve the production efficiency of the cup body, thereby reducing the production cost of the cup body and the food processing cup, and further reducing the production cost of the food processing equipment.

[0101] In addition, the cup body tends to extend too far into the cup seat during the connection process with the cup seat, affecting the connection between the knife disc assembly and the cup seat, and thus affecting the use of the food processing cup. The first side wall of the support portion can limit the cup body during the installation process of the cup body while supporting the cup body, thereby preventing the cup body from touching the knife disc assembly or affecting the operation of the knife disc assembly.

[0102] According to a second aspect of the present invention, a food processing device is provided, comprising a food processing cup as provided by any of the above technical solutions, thereby having all the beneficial technical effects of the food processing cup, which will not be described in detail here.

[0103] Furthermore, the food processing equipment includes a soy milk maker or a wall breaking machine, etc.

[0104] Additional aspects and advantages of the present invention will be set forth in part in the following description and, in part, will be obvious from the following description, or may be learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0105] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the following description of the embodiments with reference to the accompanying drawings, in which:

[0106] Figure 1 shows one of the structural schematic diagrams of a food processing cup according to one embodiment of the present invention;

[0107] Figure 2 A second structural schematic diagram of a food processing cup according to an embodiment of the present invention is shown;

[0108] Figure 3 FIG1 shows one of the partial structural schematic diagrams of a food processing cup according to one embodiment of the present invention;

[0109] Figure 4 FIG2 shows a second partial structural schematic diagram of a food processing cup according to an embodiment of the present invention;

[0110] Figure 5 It shows one of the structural schematic diagrams of the cutter head assembly according to one embodiment of the present invention;

[0111] Figure 6 A second structural schematic diagram of a cutter head assembly according to an embodiment of the present invention is shown;

[0112] Figure 7 A third structural diagram of a food processing cup according to an embodiment of the present invention is shown;

[0113] Figure 8 A fourth structural diagram of a food processing cup according to an embodiment of the present invention is shown;

[0114] Figure 9 Fig. 5 shows a structural schematic diagram of a food processing cup according to an embodiment of the present application;

[0115] Figure 10 Fig. 6 shows a structural schematic diagram of a food processing cup according to an embodiment of the present application;

[0116] Figure 11 Fig. 7 shows a structural schematic diagram of a food processing cup according to an embodiment of the present application;

[0117] Figure 12 Fig. 8 shows a structural schematic diagram of a food processing cup according to an embodiment of the present application;

[0118] Figure 13 Fig. 9 shows a structural schematic diagram of a food processing cup according to an embodiment of the present application;

[0119] Figure 14 Fig. 3 shows a partial structural schematic diagram of a food processing cup according to an embodiment of the present application;

[0120] Figure 15 Fig. 10 shows a structural schematic diagram of a food processing cup according to an embodiment of the present application;

[0121] Figure 16 Fig. 3 shows a partial structural schematic diagram of a food processing cup according to an embodiment of the present application;

[0122] wherein, Figures 1 to 16 The correspondence between the reference signs and the component names in the accompanying drawings is as follows:

[0123] 100 food processing cup, 110 cup body, 111 cup seat, 112 cup body, 113 fourth sealing element, 120 blade disc assembly, 121 bottom disc, 122 bottom shell, 123 first sealing element, 124 through hole, 125 first fastener, 126 first mounting element, 127 blade assembly, 128 blade shaft, 129 second sealing element, 131 coupling, 132 fixed part, 133 third sealing element, 140 limiting assembly, 141 first limiting part, 142 first limiting element, 143 second limiting element, 144 baffle, 150 gripping part, 160 second limiting part, 170 limiting protrusion, 180 first elastic element, 190 avoidance notch, 210 rotating shaft, 220 second elastic element, 230 top rod, 240 mounting groove. DETAILED DESCRIPTION

[0124] In order to enable a clearer understanding of the above-mentioned purposes, features and advantages of the present application, the present application will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.

[0125] In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present application. However, it will be apparent to one skilled in the art that the present application can be practiced without the specific details set forth in this description. In other instances, well-known methods have not been described in detail in order not to unnecessarily obscure aspects of the present application.

[0126] Some embodiments of the food processing cup 100 and the food processing apparatus according to the present application will be described below with reference to the accompanying drawings. Figures 1 to 16

[0127] Embodiment One:

[0128] As shown in Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 7 , Figure 8 , Figure 9 , Figure 10 , Figure 11 , Figure 12 , Figure 13 , Figure 14 and Figure 15 , the embodiment of the first aspect of the present application provides a food processing cup 100, the food processing cup 100 comprising a cup body 110, a blade disc assembly 120, a limiting assembly 140, a holding part 150 and a second limiting part 160, the blade disc assembly 120 being detachably connected with the food processing cup 100, the limiting assembly 140 being movably arranged on the cup body 110, the limiting assembly 140 comprising a first limiting part 141, the holding part 150 being connected with the limiting assembly 140, the holding part 150 being capable of driving the limiting assembly 140 to move relative to the cup body 110, the second limiting part 160 being arranged on the blade disc assembly 120; wherein, in the case that the holding part 150 drives the limiting assembly 140 to move to a first position, the first limiting part 141 and the second limiting part 160 are in limiting cooperation; in the case that the holding part 150 drives the limiting assembly 140 to move to a second position, the first limiting part 141 and the second limiting part 160 are separated from each other.

[0129] The food processing cup 100, the blade disc assembly 120, the limiting assembly 140, the holding part 150 and the second limiting part 160 provided by the embodiment of the present application, in particular, the blade assembly 127 of the blade disc assembly 120 is arranged inside the cup body 110, the inner surface of the blade disc assembly 120 and the cup body 110 together constitute an open food processing cavity, when the blade assembly 127 of the blade disc assembly 120 rotates at a high speed, the food processing cavity can process food materials.

[0130] ​The cutter head assembly 120 is detachably connected with the cup body 110. It can be understood that the cutter head assembly 120 can be mounted to the cup body 110 and can also be detached from the cup body 110, so that the stability during the operation of the food processing device can be ensured while facilitating the cleaning of the cup body 110 and the cutter head assembly 120.

[0131] In the related art, after the food processing machine finishes processing the food materials, the stirring cup and the cutter head assembly 120 of the food processing machine need to be cleaned. Since the stirring cup and the cutter head assembly 120 are fixedly connected, the cleaning difficulty is increased, which can easily lead to incomplete cleaning, and further lead to the breeding of bacteria after long-term use of the food processing machine, affecting the food safety of the prepared food materials for the user and reducing the user experience.

[0132] By detachably connecting the cutter head assembly 120 with the cup body 110, the cutter head assembly 120 is connected with the cup body 110 during the preparation of food materials. When the food material preparation is completed, the cutter head assembly 120 can be detached from the cup body 110, and the cutter head assembly 120 and the cup body 110 can be cleaned respectively. Each part of the cutter head assembly 120, especially the food residues left in the angle and gap of the cutter head assembly 120, can be directly cleaned from each angle without obstruction. The cleaning difficulty is reduced, the cleaning effect is guaranteed, the problem of breeding bacteria in the cup body 110 and the cutter head assembly 120 due to incomplete cleaning after long-term use of the food processing cup 100 is avoided, and the user experience of the food processing cup 100 is improved.

[0133] Further, the limiting assembly 140 is movably arranged on the cup body 110, that is, the limiting assembly 140 can move relative to the cup body 110. The limiting assembly 140 includes a first limiting part 141. It can be understood that the limiting assembly 140 can drive the first limiting part 141 to move relative to the cup body 110. The holding part 150 is connected with the limiting assembly 140, that is, the holding part 150 can drive the limiting assembly 140 to move relative to the cup body 110, and further drive the first limiting part 141 to move. It can be understood that the user can drive the limiting assembly 140 to move by operating the holding part 150. By providing the holding part 150, the user can control the mounting state between the cutter head assembly 120 and the cup body 110 through the holding part 150, which is convenient for the user to operate and improves the user experience.

[0134] The second limiting part 160 is arranged on the cutter head assembly 120. The limiting assembly 140 can move relative to the cup body 110 to make the first limiting part 141 and the second limiting part 160 of the limiting assembly 140 cooperate or disengage. Thus, the detachable connection between the cup body 110 and the cutter head assembly 120 can be realized by controlling the cooperation state of the first limiting part 141 and the second limiting part 160, which facilitates the cleaning of the cup body 110 and the cutter head assembly 120 while ensuring the stability during the operation of the food processing device.

[0135] Specifically, when the user operates the holding portion 150 to move the limiting assembly 140 to the first position, i.e., the first limiting portion 141 moves to the first position, the first limiting portion 141 and the second limiting portion 160 are limited to cooperate to limit the cutter disc assembly 120 in the axial direction and the radial direction of the cup body 110, that is, through the limiting cooperation of the first limiting portion 141 and the second limiting portion 160, the cutter disc assembly 120 is firmly installed on the cup body 110. Since the food material in the food processing cavity often needs to be cut, polished or stirred during the preparation of the food material, the food material will rotate in the food processing cavity under the action of external force and generate centrifugal force. In this case, the cup body 110 is easy to rotate relative to the cutter disc assembly 120 under the influence of the centrifugal force of the food material, which causes the connection between the cutter disc assembly 120 and the cup body 110 to be not tight enough or even causes the cutter disc assembly 120 to be separated from the cup body 110, thereby causing the food material to leak, and even causing danger to the operator. Therefore, through the limiting cooperation of the first limiting portion 141 and the second limiting portion 160, the cutter disc assembly 120 and the cup body 110 are locked with each other, so that the cutter disc assembly 120 always remains relatively fixed with the cup body 110 during the preparation of the food material, and the cutter disc assembly 120 and the cup body 110 are tightly connected, thereby ensuring the stability and reliability of the food processing equipment during operation.

[0136] When the user operates the holding portion 150 to move the limiting assembly 140 to the second position, i.e., the first limiting portion 141 moves to the second position, the first limiting portion 141 and the second limiting portion 160 are disengaged, and the cutter disc assembly 120 can be separated from the cup body 110, that is, when the first limiting portion 141 and the second limiting portion 160 are disengaged, the cutter disc assembly 120 can be detached from the cup body 110, so that the cutter disc assembly 120 and the cup body 110 can be cleaned respectively, thereby reducing the cleaning difficulty, ensuring the cleaning effect, avoiding the problem that bacteria breed in the cup body 110 and the cutter disc assembly 120 due to incomplete cleaning after long-term use of the food processing cup 100, and improving the user's experience of using the food processing cup 100.

[0137] It is worth noting that the first limiting portion 141 and the second limiting portion 160 are one-to-one corresponding, one of the first limiting portion 141 and the second limiting portion 160 is configured as a protrusion, and the other is configured as a groove. The limiting cooperation between the first limiting portion 141 and the second limiting portion 160 is achieved through the cooperation of the protrusion and the groove. The specific configuration can be set according to actual needs.

[0138] In practical applications, the number of the limiting assembly 140 can be set according to actual needs. It can be understood that when the number of the limiting assembly 140 is multiple, the multiple limiting assemblies 140 are arranged along the circumference of the cup body 110, and the number of the corresponding second limiting portions 160 is multiple, the multiple second limiting portions 160 are arranged along the circumference of the cutter disc assembly 120, each first limiting portion 141 is matched and locked with one second limiting portion 160, and thus the locking effect between the cutter disc assembly 120 and the cup body 110 can be improved, and the stability and reliability of the food processing equipment during operation can be further ensured.

[0139] It should be noted that at least a part of the holding portion 150 is exposed to the cup body 110, so that the user can drive the limiting assembly 140 to move through the holding portion 150, so that the first limiting portion 141 and the second limiting portion 160 are matched or separated, and then the detachable connection between the cup body 110 and the cutter disc assembly 120 is realized by controlling the matching state of the first limiting portion 141 and the second limiting portion 160, so that the cup body 110 and the cutter disc assembly 120 can be cleaned, and the stability of the food processing equipment during operation can be ensured.

[0140] Embodiment two:

[0141] As shown in Figure 1 , Figure 2 , Figure 3 and Figure 4 , on the basis of the above embodiment, further, the food processing cup 100 further comprises a limiting protrusion 170, the limiting protrusion 170 is arranged on the limiting assembly 140; wherein, in the case that the holding portion 150 drives the limiting assembly 140 to move to the first position, the limiting protrusion 170 is matched and limited with the cup body 110.

[0142] In this embodiment, it is limited that the food processing cup 100 further comprises a limiting protrusion 170, specifically, the limiting protrusion 170 is arranged on the limiting assembly 140, it can be understood that when the holding portion 150 drives the limiting assembly 140 to move relative to the cup body 110, the limiting protrusion 170 can be driven to move relative to the cup body 110. Specifically, in the case that the holding portion 150 drives the limiting assembly 140 to move, so that the first limiting portion 141 moves to the first position, the limiting protrusion 170 is matched and limited with the cup body 110, that is, when the first limiting portion 141 and the second limiting portion 160 are matched and limited, so that the cup body 110 locks the cutter disc assembly 120 in the axial direction and the radial direction, the limiting protrusion 170 is matched and limited with the cup body 110, so as to limit the movement of the limiting assembly 140, that is, when the limiting protrusion 170 is matched and limited with the cup body 110, the limiting assembly 140 cannot rotate relative to the cup body 110, so that the first limiting portion 141 and the second limiting portion 160 remain in the locked state, and the stability and reliability of the food processing equipment during operation can be ensured.

[0143] It can be understood that when it is desired to detach the blade disc assembly 120 from the cup body 110, the holding portion 150 can be operated to drive the first part of the limiting assembly 140 to move relative to the second part of the limiting assembly 140, the limiting protrusion 170 is connected to the first part of the limiting assembly 140, so that the limiting protrusion 170 is disengaged from the cup body 110, the holding portion 150 can drive the limiting assembly 140 to rotate, and then the first limiting portion 141 is disengaged from the second limiting portion 160, so that the blade disc assembly 120 can be detached from the cup body 110, to clean the blade disc assembly 120 and the cup body 110 respectively, reduce the cleaning difficulty, ensure the cleaning effect, avoid the problem that the cup body 110 and the blade disc assembly 120 breed bacteria due to incomplete cleaning after long-term use of the food processing cup 100, and improve the user's experience of using the food processing cup 100.

[0144] It should be noted that the cup body 110 is provided with a limiting gap, and the holding portion 150 drives the limiting protrusion 170 to move into or out of the limiting gap through the first part of the limiting assembly 140, to realize the limiting cooperation or disengagement of the limiting protrusion 170 and the cup body 110. It can be understood that the width of the limiting gap is the width along the radial direction of the cup body 110, so that the rotation of the limiting assembly 140 can be limited when the limiting protrusion 170 is inserted into the limiting gap.

[0145] Embodiment three:

[0146] As shown in Figure 1 , Figure 2 , Figure 3 and Figure 4 , on the basis of any of the above embodiments, further, the limiting assembly 140 includes a first limiting member 142 and a second limiting member 143, wherein the first limiting member 142 is movably arranged on the cup body 110, the first limiting portion 141 is arranged on the side of the first limiting member 142 facing the blade disc assembly 120, a gap is formed between the first limiting member 142 and the cup body 110, the second limiting member 143 is arranged on the side of the first limiting member 142 away from the blade disc assembly 120, the limiting protrusion 170 is arranged on the second limiting member 143, and the holding portion 150 is connected to the second limiting member 143, wherein the holding portion 150 can drive the second limiting member 143 to move relative to the first limiting member 142, to drive the limiting protrusion 170 to move into or out of the gap.

[0147] In this embodiment, the limiting assembly 140 is defined to include a first limiting member 142 and a second limiting member 143. Specifically, the first limiting member 142 is movably arranged on the cup body 110, that is, the first limiting member 142 is movable relative to the cup body 110. The first limiting portion 141 is arranged on the side of the first limiting member 142 close to the cutter disc assembly 120, so that the first limiting portion 141 is movable between the first position and the second position during the movement of the first limiting member 142 relative to the cup body 110.

[0148] Further, the second limiting member 143 is arranged on the side of the first limiting member 142 away from the cutter disc assembly 120, and the gripping portion 150 is connected to the second limiting member 143. It can be understood that, during the operation of the gripping portion 150, the gripping portion 150 can drive the second limiting member 143 to move relative to the first limiting member 142, so as to drive the limiting protrusion 170 to move into or out of the gap formed between the first limiting member 142 and the cup body 110, thereby limiting the rotation of the limiting assembly 140 or releasing the movement limitation of the limiting assembly 140.

[0149] Specifically, when the user operates the gripping portion 150 to drive the limiting assembly 140 to rotate to the first position, that is, the first limiting portion 141 moves to the first position, the first limiting portion 141 and the second limiting portion 160 are limited to cooperate, so as to limit the cutter disc assembly 120 in the axial direction and the radial direction of the cup body 110. At this time, the limiting protrusion 170 is inserted into the gap to limit the rotation of the limiting assembly 140, so that the cutter disc assembly 120 is firmly mounted on the cup body 110. Since the food material in the food processing cavity often needs to be cut, polished or stirred during the preparation of the food material, the food material will rotate in the food processing cavity under the action of external force and generate centrifugal force. In this case, the cup body 110 is easy to rotate relative to the cutter disc assembly 120 under the influence of the centrifugal force of the food material, which leads to the insufficient connection between the cutter disc assembly 120 and the cup body 110 or even causes the cutter disc assembly 120 to be separated from the cup body 110, thereby causing the food material to leak, and even causing danger to the operator. Therefore, by limiting the first limiting portion 141 and the second limiting portion 160 to cooperate with each other and limiting the rotation of the limiting assembly 140, the cutter disc assembly 120 and the cup body 110 are locked with each other, so that the cutter disc assembly 120 always remains relatively fixed with the cup body 110 during the preparation of the food material, and the cutter disc assembly 120 and the cup body 110 are tightly connected, thereby ensuring the stability and reliability of the food processing equipment during operation.

[0150] The user operates the holding portion 150 to drive the second limiting piece 143 to move relative to the first limiting piece 142, thereby driving the limiting protrusion 170 to move out of the gap and release the movement restriction of the limiting assembly 140. When the holding portion 150 continues to drive the limiting assembly 140 to rotate relative to the cup body 110 and the first limiting portion 141 is rotated to the second position, the first limiting portion 141 is disengaged from the second limiting portion 160, and the cutter disc assembly 120 can be separated from the cup body 110, that is, when the first limiting portion 141 is disengaged from the second limiting portion 160, the cutter disc assembly 120 can be detached from the cup body 110, so as to clean the cutter disc assembly 120 and the cup body 110 respectively, reduce the cleaning difficulty, ensure the cleaning effect, avoid the problem that bacteria breed in the cup body 110 and the cutter disc assembly 120 due to incomplete cleaning after long-term use of the food processing cup 100, and improve the user experience of the food processing cup 100.

[0151] It should be noted that the holding portion 150 and the second limiting piece 143 are in an integrated structure, and it can be understood that the integrated structure has good mechanical properties, so as to improve the connection effect between the holding portion 150 and the second limiting piece 143. When the user operates the holding portion 150, the first limiting portion 141 can be driven to move between the first position and the second position, and the detachable connection between the cup body 110 and the cutter disc assembly 120 is realized through the cooperation state of the first limiting portion 141 and the second limiting portion 160, so as to facilitate the cleaning of the cup body 110 and the cutter disc assembly 120 and ensure the stability of the food processing equipment during operation.

[0152] In addition, the integrated structure is also convenient for processing and production, so as to improve the production efficiency of the food processing cup 100 and reduce the production cost of the food processing cup 100 and the food processing equipment with the food processing cup 100.

[0153] In addition, the limiting protrusion 170 and the second limiting piece 143 can be in an integrated structure, and it can be understood that the integrated structure has good mechanical properties, so as to improve the connection effect between the limiting protrusion 170 and the second limiting piece 143 and ensure the effective limiting between the limiting protrusion 170 and the cup body 110. In addition, the integrated structure is also convenient for processing and production, so as to improve the production efficiency of the food processing cup 100 and reduce the production cost of the food processing cup 100 and the food processing equipment with the food processing cup 100.

[0154] As Figure 1 , Figure 2 and Figure 4Further, based on the above embodiment, the food processing cup 100 further comprises a first elastic member 180, one end of the first elastic member 180 is connected with the first limiting member 142, and the other end of the first elastic member 180 is connected with the second limiting member 143; wherein, when the limiting protrusion 170 moves into the gap, the first elastic member 180 pushes the holding portion 150 to maintain the limiting cooperation state between the limiting protrusion 170 and the cup body 110.

[0155] In this embodiment, the food processing cup 100 further comprises a first elastic member 180, specifically, one end of the first elastic member 180 is connected with the first limiting member 142, and the other end of the first elastic member 180 is connected with the second limiting member 143. When the limiting protrusion 170 moves into the gap, the first elastic member 180 can push the holding portion 150 to maintain the limiting cooperation state between the limiting protrusion 170 and the cup body 110, that is, when the limiting protrusion 170 moves into the gap, the first elastic member 180 also has a certain compression amount, so that the first elastic member 180 has a tendency to continue to push the second limiting member 143 to the side where the gap is located, thereby ensuring the limiting effect between the limiting protrusion 170 and the cup body 110, and improving the installation stability and reliability of the cutter disc assembly 120 and the cup body 110.

[0156] Specifically, when the holding portion 150 is operated to drive the second limiting member 143 to move relative to the first limiting member 142, and then drive the limiting protrusion 170 to move out of the gap, the first elastic member 180 is compressed, the first limiting member 142 and the second limiting member 143 are separated from each other, the holding portion 150 can drive the first limiting member 142 to rotate through the second limiting member 143, so that the first limiting portion 141 and the second limiting portion 160 are separated from each other, and the cutter disc assembly 120 can be detached from the cup body 110. At this time, the first elastic member 180 can be in a compressed state or in a natural state, which can be set according to actual needs.

[0157] When the cutter disc assembly 120 is installed, that is, when the holding portion 150 drives the limiting assembly 140 to rotate so that the first limiting portion 141 rotates to the first position, the elastic force of the first elastic member 180 can drive the second limiting member 143 to move away from the first elastic member 180, and then the second limiting member 143 drives the limiting protrusion 170 to insert into the gap. At this time, at least a part of the second limiting member 143 abuts against the first limiting member 142, thereby limiting the rotation of the limiting assembly 140.

[0158] By setting the first elastic member 180, when the first limiting part 141 and the second limiting part 160 need to be matched to lock the cutter assembly 120 and the cup body 110, the second limiting member 143 can be automatically reset to insert the limiting protrusion 170 into the gap, thereby ensuring the locking state of the cutter assembly 120 and the cup body 110.

[0159] It can be understood that when the first limiting part 141 and the second limiting part 160 are separated from each other, the first elastic member 180 is in a compressed state, and when the cutter assembly 120 is installed, the limiting assembly 140 can be directly rotated by the holding part 150, and the elastic force of the first elastic member 180 can drive the second limiting member 143 to move to insert the limiting protrusion 170 into the gap. When the first limiting part 141 and the second limiting part 160 are separated from each other, the first elastic member 180 is in a natural state, and when the cutter assembly 120 is installed, the holding part 150 can be pressed first to drive the second limiting member 143 to compress the first elastic member 180, and then the limiting assembly 140 is rotated by the holding part 150, the first elastic member 180 drives the second limiting member 143 to move to insert the limiting protrusion 170 into the gap. It can be set according to actual needs.

[0160] In actual application, the first elastic member 180 can be a spring or a spring sheet.

[0161] In a specific embodiment, further, in the process that the holding part 150 moves to the first elastic member 180 under force, the first elastic member 180 deforms, the second limiting member 143 drives the limiting protrusion 170 to move out of the gap, and the second limiting member 143 can drive the first limiting member 142 to rotate to the second position to release the limiting cooperation with the cup body 110; the holding part 150 can drive the limiting assembly 140 to rotate to the first position, and the second limiting member 143 drives the limiting protrusion 170 to move into the gap to limit the cooperation with the cup body 110.

[0162] In the embodiment, in the process that the holding portion 150 drives the limiting assembly 140 to move from the first position to the second position, that is, when the cutter disc assembly 120 needs to be detached from the cup body 110, in the process that the first limiting portion 141 and the second limiting portion 160 are separated from each other, the second limiting member 143 is first driven by the holding portion 150 to move towards the first elastic member 180 to compress the first elastic member 180, and the limiting protrusion 170 is driven by the second limiting member 143 to move out of the gap. At this time, at least a part of the second limiting member 143 is separated from the abutment of the first limiting member 142, that is, the rotation of the limiting assembly 140 is no longer limited. At this time, the second limiting member 143 is further driven by the holding portion 150 to rotate, and the first limiting member 142 is driven by the second limiting member 143 to rotate relative to the cup body 110, so as to separate the first limiting portion 141 and the second limiting portion 160 from each other. Then, the cutter disc assembly 120 can be detached from the cup body 110, so as to clean the cutter disc assembly 120 and the cup body 110 respectively, reduce the cleaning difficulty, ensure the cleaning effect, avoid the problem that the cup body 110 and the cutter disc assembly 120 breed bacteria due to incomplete cleaning after long-term use of the food processing cup 100, and improve the user experience of the food processing cup 100.

[0163] In the process that the holding portion 150 drives the limiting assembly 140 to move from the second position to the first position, the holding portion 150 drives the limiting assembly 140 to rotate, so that when the first limiting portion 141 rotates to the first position, the elastic force of the first elastic member 180 can drive the second limiting member 143 to move away from the first elastic member 180, and then the second limiting member 143 drives the limiting protrusion 170 to insert into the gap. At this time, at least a part of the second limiting member 143 abuts against the first limiting member 142, so as to limit the rotation of the limiting assembly 140.

[0164] As shown in Figure 1 , Figure 2 , Figure 3 and Figure 4 , on the basis of the above embodiment, further, the limiting assembly 140 further comprises a baffle 144, the baffle 144 is connected with the first limiting member 142 and forms a containing cavity with the first limiting member 142, and the first elastic member 180 is located in the containing cavity; wherein, along the radial direction of the cutter disc assembly 120, at least a part of the second limiting member 143 can contact the baffle 144.

[0165] In the embodiment, the limiting assembly 140 further comprises the baffle 144, specifically, the baffle 144 is connected with the first limiting member 142, and the baffle 144 and the first limiting member 142 form the containing cavity, and the first elastic member 180 is located in the containing cavity, so as to prevent the first elastic member 180 from being exposed and corroded, and prolong the service life of the first elastic member 180.

[0166] Further, a part of the second limiting member 143 can be in contact with the baffle plate 144 along the radial direction of the cutter assembly 120, i.e., the radial direction of the cup body 110, so that when the holding portion 150 drives the second limiting member 143 to rotate, the first limiting member 142 can be driven to rotate relative to the cup body 110 through the baffle plate 144, and then the first limiting portion 141 is driven to move between the first position and the second position, so as to realize effective power transmission.

[0167] Specifically, the user first operates the holding portion 150 to drive the second limiting member 143 to move relative to the first limiting member 142, and then drive the limiting protrusion 170 to move out of the gap, thereby releasing the movement restriction of the limiting assembly 140, and in this process, the first elastic member 180 is compressed. The holding portion 150 continues to drive the second limiting member 143 to rotate, and the second limiting member 143 is in contact with the baffle plate 144, and then the first limiting member 142 is driven to rotate relative to the cup body 110 through the baffle plate 144, and the first limiting member 142 drives the first limiting portion 141 to rotate to the second position, and the first limiting portion 141 is disengaged from the second limiting portion 160, so that the cutter assembly 120 can be separated from the cup body 110, and the cutter assembly 120 can be detached from the cup body 110, so as to clean the cutter assembly 120 and the cup body 110 respectively, reduce the cleaning difficulty, ensure the cleaning effect, avoid the problem that the cup body 110 and the cutter assembly 120 breed bacteria due to incomplete cleaning after long-term use of the food processing cup 100, and improve the user's experience of using the food processing cup 100.

[0168] The holding portion 150 is pushed to drive the limiting assembly 140 to rotate relative to the cup body 110 until the first limiting portion 141 moves to the first position, and the first limiting portion 141 is in limiting cooperation with the second limiting portion 160 to limit the cutter assembly 120 in the axial direction and the radial direction of the cup body 110. At this time, the first elastic member 180 drives the second limiting member 143 to move relative to the first limiting member 142, so that the limiting protrusion 170 is inserted into the gap, and then the rotation of the limiting assembly 140 is limited, so that the cutter assembly 120 is firmly installed on the cup body 110, so that the cutter assembly 120 always remains relatively fixed with the cup body 110 during the preparation of food materials, and the cutter assembly 120 and the cup body 110 are closely connected to ensure the stability and reliability of the food processing equipment during operation.

[0169] Embodiment Four:

[0170] As Figure 8 , Figure 9 , Figure 10 , Figure 11 , Figure 12 and Figure 13As shown, on the basis of any of the above embodiments, further, the food processing cup 100 further comprises an avoiding gap 190, the avoiding gap 190 is arranged on the cup body 110, and the holding part 150 is exposed to the cup body 110 through the avoiding gap 190.

[0171] In this embodiment, it is defined that the food processing cup 100 further comprises an avoiding gap 190, specifically, the cup body 110 is provided with the avoiding gap 190, and the holding part 150 is exposed to the cup body 110 through the avoiding gap 190, thereby the user can conveniently drive the limiting assembly 140 to move by operating the holding part 150 to control the rotating position of the first limiting part 141, that is, even if the first limiting part 141 moves between the first position and the second position, the connection state between the blade disc assembly 120 and the cup body 110 can be controlled. Therefore, the detachable connection between the cup body 110 and the blade disc assembly 120 can be realized by controlling the cooperation state of the first limiting part 141 and the second limiting part 160, which is convenient for cleaning the cup body 110 and the blade disc assembly 120, and ensures the stability of the food processing equipment during operation.

[0172] In actual application, in the case that the holding part 150 drives the limiting assembly 140 to move, so that the first limiting part 141 moves to the first position, the limiting assembly 140 can fill the avoiding gap 190, so that the outer side wall of the limiting assembly 140 and the outer side wall of the cup body 110 form a complete side wall, thereby improving the appearance effect of the food processing cup 100, and further improving the user's experience.

[0173] As shown in Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 10 , Figure 11 and Figure 12 , in one specific embodiment, further, the food processing cup 100 further comprises a rotating shaft 210, the rotating shaft 210 is arranged on the cup body 110 and located at the avoiding gap 190, and the limiting assembly 140 rotates around the rotating shaft 210, wherein, in the case that the holding part 150 drives the limiting assembly 140 to rotate to the first position, the limiting assembly 140 can fill the avoiding gap 190.

[0174] In this embodiment, the food processing cup 100 further comprises a rotating shaft 210, specifically, the rotating shaft 210 is arranged on the cup body 110, and the limiting assembly 140 rotates around the rotating shaft 210, that is, the limiting assembly 140 comprises a connecting portion, the connecting portion is provided with a connecting hole, and the rotating shaft 210 penetrates through the connecting hole and is rotationally connected with the cup body 110, so that the limiting assembly 140 can rotate around the rotating shaft 210 under the driving of the holding portion 150, and the first limiting portion 141 moves between the first position and the second position. Therefore, the detachable connection between the cup body 110 and the blade disc assembly 120 can be realized by controlling the cooperation state of the first limiting portion 141 and the second limiting portion 160, which facilitates the cleaning of the cup body 110 and the blade disc assembly 120 and ensures the stability of the food processing equipment during operation.

[0175] Further, in the case that the holding portion 150 drives the limiting assembly 140 to move so that the first limiting portion 141 cooperates with the second limiting portion 160, the limiting assembly 140 can fill the avoiding gap 190, so that the outer side wall of the limiting assembly 140 and the outer side wall of the cup body 110 form a complete side wall, thereby improving the appearance effect of the food processing cup 100 and further improving the user experience.

[0176] In another specific embodiment, further, along the axial direction of the blade disc assembly 120, the rotating axis of the rotating shaft 210 is higher than the cooperation position of the first limiting portion 141 and the second limiting portion 160.

[0177] In this embodiment, along the axial direction of the blade disc assembly 120, the rotating axis of the rotating shaft 210 is higher than the cooperation position of the first limiting portion 141 and the second limiting portion 160, that is, the distance between the rotating shaft 210 and the opening of the cup body 110 is less than the distance between the cooperation position of the first limiting portion 141 and the second limiting portion 160 and the opening of the cup body 110. That is, along the axial direction of the cup body 110, the position of the rotating shaft 210 is higher than the cooperation position of the first limiting portion 141 and the second limiting portion 160, so that the limiting assembly 140 can support the blade disc assembly 120 in the axial direction of the cup body 110, and further ensure the installation stability between the blade disc assembly 120 and the cup body 110.

[0178] Embodiment five:

[0179] As Figure 12 and Figure 13As shown, on the basis of any of the above embodiments, the food processing cup 100 further includes a mounting groove 240 and an elastic reset component, wherein the mounting groove 240 is arranged on the cup body 110, the notch of the mounting groove 240 is arranged toward the limiting component 140, the elastic reset component is arranged in the mounting groove 240, and one end of the elastic reset component can abut against the limiting component 140; in the process of separation of the first limiting portion 141 and the second limiting portion 160, the limiting component 140 pushes the elastic reset component to move in the mounting groove 240.

[0180] In this embodiment, the food processing cup 100 further includes a mounting groove 240 and an elastic reset assembly. Specifically, the mounting groove 240 is provided on the cup body 110, with the notch of the mounting groove 240 facing the limiting assembly 140. The elastic reset assembly is provided within the mounting groove 240, with one end capable of abutting against the limiting assembly 140. Specifically, when the grip 150 drives the limiting assembly 140 to move, thereby separating the first limiting portion 141 from the second limiting portion 160, the limiting assembly 140 can push the elastic reset assembly to move within the mounting groove 240.

[0181] When the cutter disc assembly 120 is removed from the cup body 110, the elastic reset assembly can push the limit assembly 140 to reset, so that when the cutter disc assembly 120 is installed, the second limit portion 160 and the first limit portion 141 are limited and cooperated, reducing the installation difficulty of the cutter disc assembly 120 and improving the installation efficiency.

[0182] like Figure 12 and Figure 13 As shown, on the basis of any of the above embodiments, further, the elastic reset assembly includes a second elastic member 220 and a push rod 230, wherein the second elastic member 220 is located in the mounting groove 240, the first end of the second elastic member 220 is connected to the cup body 110, the first end of the push rod 230 is located in the mounting groove 240 and is connected to the second end of the second elastic member 220, and the second end of the push rod 230 extends out of the mounting groove 240 and abuts against the limiting assembly 140.

[0183] In this embodiment, the elastic reset assembly is defined to include a second elastic member 220 and a push rod 230. Specifically, the second elastic member 220 is located in the mounting groove 240, and one end of the second elastic member 220 is connected to the cup body 110, and the other end of the second elastic member 220 is connected to the push rod 230. One end of the push rod 230 extends out of the mounting groove 240 and abuts against the limiting assembly 140. Specifically, when the grip portion 150 drives the limiting assembly 140 to move so that the first limiting portion 141 and the second limiting portion 160 are separated, the limiting assembly 140 can push the push rod 230 to move in the mounting groove 240, so that the second elastic member 220 is compressed.

[0184] When the cutter head assembly 120 is detached from the cup body 110, the second elastic member 220 pushes the limiting assembly 140 back through the push rod 230, so that the second limiting portion 160 is limited and matched with the first limiting portion 141 when the cutter head assembly 120 is installed, thereby reducing the installation difficulty of the cutter head assembly 120 and improving the installation efficiency.

[0185] In actual application, the second elastic member 220 can be a spring or a spring sheet.

[0186] In a specific embodiment, further, one of the first limiting portion 141 and the second limiting portion 160 is configured as a protrusion, and the other is configured as a groove.

[0187] In this embodiment, one of the first limiting portion 141 and the second limiting portion 160 is configured as a protrusion, and the other is configured as a groove, that is, the first limiting portion 141 is a protrusion, and the second limiting portion 160 is a groove. The first limiting portion 141 is a groove, and the second limiting portion 160 is a protrusion, which can be set according to actual needs. The limiting cooperation between the first limiting portion 141 and the second limiting portion 160 is achieved through the cooperation of the protrusion and the groove.

[0188] Specifically, when the user operates the holding portion 150 to move the holding portion 150 to drive the limiting assembly 140 to the first position, that is, the first limiting portion 141 moves to the first position, the first limiting portion 141 and the second limiting portion 160 are limited and matched to limit the cutter head assembly 120 in the axial direction and the radial direction of the cup body 110, that is, through the limiting cooperation of the first limiting portion 141 and the second limiting portion 160, the cutter head assembly 120 is firmly installed on the cup body 110. Since the food material in the food processing cavity often needs to be cut, polished or stirred during the preparation of the food material, the food material will rotate in the food processing cavity under the action of external force and generate centrifugal force. In this case, the cup body 110 is easy to rotate relative to the cutter head assembly 120 under the influence of the centrifugal force of the food material, which leads to the insufficient connection between the cutter head assembly 120 and the cup body 110, or even causes the cutter head assembly 120 to separate from the cup body 110, thereby causing the food material to leak, and even causing danger to the operator. Therefore, through the mutual limiting cooperation of the first limiting portion 141 and the second limiting portion 160, the cutter head assembly 120 and the cup body 110 are locked, so that the cutter head assembly 120 and the cup body 110 are relatively fixed during the preparation of the food material, the cutter head assembly 120 and the cup body 110 are tightly connected, and the stability and reliability of the food processing equipment during operation are ensured.

[0189] When the user operates the holding part 150 to move the holding part 150 to drive the limiting assembly 140 to the second position, that is, the first limiting part 141 moves to the second position, the first limiting part 141 is disengaged from the second limiting part 160, and the blade disc assembly 120 can be separated from the cup body 110, that is, when the first limiting part 141 is disengaged from the second limiting part 160, the blade disc assembly 120 can be detached from the cup body 110, so as to clean the blade disc assembly 120 and the cup body 110 respectively, reduce the cleaning difficulty, ensure the cleaning effect, avoid the problem that the cup body 110 and the blade disc assembly 120 breed bacteria due to incomplete cleaning after long-term use of the food processing cup 100, and improve the user's experience of using the food processing cup 100.

[0190] Embodiment six:

[0191] As Figure 1 , Figure 2 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 10 , Figure 11 , Figure 12 , Figure 13 , Figure 15 and Figure 16 indicate, on the basis of any of the above embodiments, further, the blade disc assembly 120 includes a bottom disc 121, a bottom shell 122 and a first sealing piece 123, wherein the bottom shell 122 is arranged on the side of the bottom disc 121 away from the cup body 110 and connected with the bottom disc 121, the second limiting part 160 is arranged on the bottom shell 122, and the first sealing piece 123 is arranged between the bottom disc 121 and the bottom shell 122 to seal the gap between the bottom disc 121 and the bottom shell 122.

[0192] In this embodiment, the blade disc assembly 120 is defined to include the bottom disc 121, the bottom shell 122 and the first sealing piece 123, specifically, the bottom shell 122 is connected with the bottom disc 121, and it can be understood that a containing cavity can be formed between the bottom disc 121 and the bottom shell 122, which can be used to place other components of the blade disc assembly 120, and provides mounting space for the installation of other components of the blade disc assembly 120.

[0193] In actual application, the bottom disc 121 can be a heating disc, and it can be understood that the bottom disc 121 is arranged closer to the cup body 110 than the bottom shell 122, and the bottom disc 121 and the inner wall of the cup body 110 form a food processing cavity, so that the bottom disc 121 can heat the food material while the blade assembly 127 of the blade disc assembly 120 stirs the food material in the cup body 110 at high speed, simplifying the steps of food material preparation and improving the taste after food material preparation.

[0194] Further, the cutter disc assembly 120 further comprises a first sealing member 123, and the first sealing member 123 is arranged between the bottom disc 121 and the bottom shell 122, and the gap between the bottom disc 121 and the bottom shell 122 is sealed by the first sealing member 123, so that the liquid in the cup body 110 can be prevented from penetrating between the bottom disc 121 and the bottom shell 122. It can be understood that if the bottom disc 121 is a heating disc, a heating member for heating the heating disc is also arranged in the accommodation cavity between the bottom disc 121 and the bottom shell 122, and the liquid penetrating between the bottom disc 121 and the bottom shell 122 is easy to cause the heating member to short circuit and reduce the service life of the heating member. By arranging the first sealing member 123, the liquid can be prevented from penetrating between the bottom disc 121 and the bottom shell 122, and the service life of the circuit element in the food processing cup 100 can be prolonged.

[0195] The second limiting portion 160 is arranged on the bottom shell 122, and since the bottom disc 121 and the bottom shell 122 are connected, the cutter disc assembly 120 can be firmly installed on the cup body 110 when the first limiting portion 141 and the second limiting portion 160 are limited and matched.

[0196] In actual application, the first sealing member 123 can be a silica gel sealing member.

[0197] As shown in Figure 5 , Figure 6 , Figure 7 , Figure 8 and Figure 16 , on the basis of the above embodiment, further, the cutter disc assembly 120 further comprises a mounting hole, a through hole 124 and a first fastener 125, wherein the mounting hole is arranged on the bottom disc 121, the through hole 124 is arranged on the bottom shell 122, and the first fastener 125 is arranged to pass through the through hole 124 and the mounting hole to fixedly connect the bottom disc 121 and the bottom shell 122.

[0198] In this embodiment, the cutter disc assembly 120 further comprises a mounting hole, a through hole 124 and a first fastener 125, specifically, the mounting hole is arranged on the bottom disc 121, and the through hole 124 is arranged on the bottom shell 122, and it can be understood that the mounting hole and the through hole 124 are arranged one by one. The first fastener 125 is arranged to pass through the through hole 124 and the mounting hole to connect the bottom disc 121 and the bottom shell 122, so as to realize the fixed installation of the bottom disc 121 and the bottom shell 122, ensure the connection effect between the bottom disc 121 and the bottom shell 122, and the structure is simple and convenient to operate.

[0199] In actual application, the mounting hole can be provided with an internal thread, and the first fastener 125 can be a screw matched with the internal thread of the mounting hole, the screw is screwed into the mounting hole through the through hole 124 and is tightened, and the bottom disc 121 can be fixedly installed on the bottom shell 122. It can be arranged according to actual needs.

[0200] It should be noted that the mounting hole and the through hole 124 are one-to-one corresponding multiple, so as to improve the connection effect between the bottom plate 121 and the bottom shell 122, and further improve the stability and reliability of the food processing equipment during operation.

[0201] As Figure 1 , Figure 2 , Figure 5 , Figure 6 , Figure 10 , Figure 11 , Figure 12 , Figure 13 , Figure 15 and Figure 16 , on the basis of the above embodiment, further, the cutter disc assembly 120 further comprises a first mounting member 126, a cutter assembly 127, a cutter shaft 128 and a second sealing member 129, wherein the first mounting member 126 is arranged on the bottom plate 121 and extends towards the bottom shell 122, the first mounting member 126 is configured to have a cavity structure, the cutter assembly 127 is located on the side of the bottom plate 121 away from the bottom shell 122, the cutter shaft 128 is connected with the cutter assembly 127 through the bottom plate 121, the cutter shaft 128 is arranged in the cavity, and the second sealing member 129 is arranged between the first mounting member 126 and the bottom shell 122 to seal the gap between the first mounting member 126 and the bottom shell 122.

[0202] In this embodiment, the cutter disc assembly 120 further comprises a first mounting member 126, a cutter assembly 127, a cutter shaft 128 and a second sealing member 129. Specifically, the first mounting member 126 is arranged on the bottom plate 121, and the first mounting member 126 extends towards the bottom shell 122. The first mounting member 126 is provided with a cavity, a part of the cutter shaft 128 is located in the cavity, another part of the cutter shaft 128 protrudes out of the cavity towards the side where the cup body 110 is located, and the cutter assembly 127 is connected with the part of the cutter shaft 128 protruding out of the cavity. It can be understood that the cutter shaft 128 can rotate at high speed under the drive of the driving member of the food processing cup 100, and the high-speed rotation of the cutter shaft 128 can drive the cutter assembly 127 to rotate at high speed in the cup body 110 to process the food materials in the cup body 110.

[0203] In actual application, a bearing is further arranged in the cavity, and the bearing is sleeved on the outer side of the cutter shaft 128 to support the cutter shaft 128 and ensure that the cutter shaft 128 can rotate normally, and also can prolong the service life of the cutter shaft 128. The number of bearings can also be set according to actual needs.

[0204] Further, the cutter disc assembly 120 further comprises a second sealing member 129, which is arranged between the first mounting member 126 and the bottom disc 121. The second sealing member 129 can seal the gap between the first mounting member 126 and the bottom shell 122, so as to further prevent the liquid in the cup body 110 from penetrating between the bottom disc 121 and the bottom shell 122. It can be understood that if the bottom disc 121 is a heating disc, a heating member for heating the heating disc is arranged in the accommodating cavity between the bottom disc 121 and the bottom shell 122. If the liquid penetrates between the bottom disc 121 and the bottom shell 122, the heating member is likely to be short-circuited, thereby reducing the service life of the heating member. By arranging the second sealing member 129, the liquid can be prevented from penetrating between the bottom disc 121 and the bottom shell 122, and the service life of the circuit element in the food processing cup 100 can be prolonged.

[0205] On the basis of the above embodiment, further, the cutter disc assembly 120 further comprises a transmission member, which is arranged at one end of the cutter shaft 128 extending out of the bottom shell 122.

[0206] In this embodiment, it is defined that the cutter disc assembly 120 further comprises a transmission member, specifically, the transmission member is arranged at one end of the cutter shaft 128 extending out of the bottom shell 122, that is, the first end of the cutter shaft 128 is connected with the cutter assembly 127, and the second end of the cutter shaft 128 is connected with the transmission member. It can be understood that the transmission member can drive the cutter shaft 128 to rotate at high speed, and the cutter shaft 128 rotating at high speed can drive the cutter assembly 127 to rotate at high speed in the cup body 110, so as to process the food material in the cup body 110.

[0207] In addition, the end of the cutter shaft 128 connected with the transmission member extends out of the bottom shell 122, so that the transmission member can be connected with a driving member to realize high-speed driving of the cutter shaft 128.

[0208] In actual application, the driving member can be arranged on the base of the food processing device. When the food processing cup 100 is installed on the base of the food processing device, the driving member can be connected with the transmission member, so that the transmission member can drive the cutter assembly 127 to rotate at high speed in the cup body 110 under the driving of the driving member. When the food processing cup 100 is removed from the base of the food processing device, the transmission member is disconnected from the driving member. Specifically, the arrangement can be made according to actual needs.

[0209] It should be noted that the transmission member can include various transmission modes, such as gear transmission, shaft transmission, etc. The arrangement can be made according to actual needs.

[0210] As Figure 5As shown, on the basis of the above embodiment, further, the cutter disc assembly 120 further comprises a mounting hole, a coupler 131 and a second fastener, wherein the mounting hole is provided on the bottom shell 122, the coupler 131 is arranged on the bottom shell 122 through the mounting hole, and the second fastener is used to fix the coupler 131 to the bottom shell 122.

[0211] In this embodiment, the cutter disc assembly 120 further comprises a mounting hole, a coupler 131 and a second fastener, specifically, the bottom shell 122 is provided with the mounting hole, the bottom disc 121 is connected with an external circuit through the coupler 131 and obtains electric energy, so that the bottom disc 121 has a heating function, that is, the bottom disc 121 is a heating disc, and it can be understood that the bottom disc 121 is arranged close to the cup body 110 compared with the bottom shell 122, and the bottom disc 121 forms a food processing cavity with the inner wall of the cup body 110, so that the bottom disc 121 can heat the food material while the cutter assembly 127 of the cutter disc assembly 120 stirs the food material in the cup body 110 at high speed, thereby simplifying the steps of food material preparation and improving the taste after food material preparation.

[0212] Further, the coupler 131 passes through the mounting hole, and the second fastener fixes the coupler 131 on the bottom shell 122, that is, the coupler 131 is arranged on the side of the bottom shell 122 away from the cup body 110, that is, the coupler 131 is arranged at the bottom of the food processing cup 100, so that the coupler 131 can be connected to the external circuit while the bottom disc 121 heats the food material.

[0213] As shown, Figure 5 on the basis of the above embodiment, further, the cutter disc assembly 120 further comprises a fixing portion 132 and a third sealing member 133, wherein the fixing portion 132 is arranged in the bottom shell 122; the fixing portion 132 is formed with a fixing groove, at least part of the coupler 131 is arranged in the fixing groove, the second fastener passes through the fixing portion 132 and is connected with the coupler 131, so as to fix the coupler 131 to the bottom shell 122, and the third sealing member 133 is used to seal the gap between the fixing portion 132 and the coupler 131.

[0214] In this embodiment, the cutter disc assembly 120 further comprises a fixing portion 132 and a third sealing member 133. Specifically, the fixing portion 132 is arranged in the bottom shell 122, and the fixing portion 132 comprises a fixing groove, a portion of the coupler 131 is located in the fixing groove, and the coupler 131 is connected with the fixing portion 132 through the second fastener, thereby fixing the coupler 131 on the bottom shell 122. The bottom disc 121 is connected with an external circuit through the coupler 131 and obtains electric energy, so that the bottom disc 121 has a heating function, i.e., the bottom disc 121 is a heating disc. It can be understood that the bottom disc 121 is arranged close to the cup body 110 compared with the bottom shell 122, and the bottom disc 121 forms a food processing cavity with the inner wall of the cup body 110, so that the bottom disc 121 can heat the food material while the cutter assembly 127 of the cutter disc assembly 120 performs high-speed whipping on the food material in the cup body 110, thereby simplifying the preparation steps of the food material and improving the taste of the prepared food material.

[0215] Further, the third sealing member 133 is located between the fixing portion 132 and the coupler 131, which can seal the gap between the fixing portion 132 and the coupler 131, ensure the normal work of the cutter disc assembly 120, and improve the stability and reliability of the food processing cup 100 during operation.

[0216] In actual application, the third sealing member 133 is a silica gel sealing member.

[0217] Embodiment Seven:

[0218] As shown in Figure 1 , Figure 2 , Figure 7 , Figure 8 , Figure 9 , Figure 10 , Figure 11 , Figure 12 , Figure 13 and Figure 15 , on the basis of any of the above embodiments, further, the cup body 110 comprises a cup seat 111, a cup body 112 and a fourth sealing member 113, wherein the limiting assembly 140 is arranged in the cup seat 111, the cup body 112 is connected with the cup seat 111, and the fourth sealing member 113 is arranged in the cup seat 111. The fourth sealing member 113 is used for sealing the gap between the cutter disc assembly 120 and the cup body 112, and is used for sealing the gap between the bottom opening end of the cup body 112 and the cup seat 111.

[0219] In this embodiment, the cup body 110 is defined to include the cup base 111, the cup body 112, and the fourth sealing member 113, and specifically, the cup base 111 is provided with the limiting assembly 140, so that the matching position of the cutter disc assembly 120 and the cup body 110 is located on the cup base 111, and the cup base 111 can be limited or released by the first limiting part 141 of the limiting assembly 140 and the second limiting part 160 on the cutter disc assembly 120, so as to install the cutter disc assembly 120 on the cup body 110, or disassemble the cutter disc assembly 120 from the cup body 110.

[0220] The cup body 112 and the cup base 111 are connected by threads or buckles, that is, the cup body 112 and the cup base 111 are detachably connected. Thus, the cup base 111 and the cup body 112 can be easily disassembled and cleaned, further reducing the cleaning difficulty of the food processing cup 100 and improving the cleaning effect of the food processing cup 100.

[0221] Further, the cup base 111 is further provided with the fourth sealing member 113, and specifically, the fourth sealing member 113 can seal the gap between the cutter disc assembly 120 and the cup body 112, and the gap between the cup base 111 and the cup body 112. Thus, the liquid in the cup body 110 can be further prevented from entering the inside of the cutter disc assembly 120 through the gap between the cutter disc assembly 120 and the cup body 112, and the gap between the cup base 111 and the cup body 112, or leaking out of the cup body 110, further improving the user's experience.

[0222] On the basis of the above embodiment, further, the food processing cup 100 further includes a support part, the support part is protrudingly arranged on the inner side wall of the cup base 111, and the fourth sealing member 113 is sleeved on the support part; a first side wall of the support part can support a bottom opening end of the cup body 112, and a second side wall of the support part can limit the bottom disc 121.

[0223] In this embodiment, the food processing cup 100 further includes a support part, and specifically, the support part is protrudingly arranged on the inner side wall of the cup base 111, that is, the support part is protrudingly arranged on the inner side wall of the cup base 111 in the direction of the inside of the cup base 111. By arranging the support part, the cup body 112 can be supported and the bottom disc 121 can be limited at the same time, ensuring the stability and reliability of the operation of the food processing equipment.

[0224] Specifically, since the cup holder 111 is connected to the blade disc assembly 120 at the same time as the cup body 112 is connected to the cup holder 111, a certain gap may exist between the cup body 112 and the blade disc assembly 120. The fourth sealing member 113 is provided to ensure that the connection between the three is sealed. A protruding support portion is provided on the inner side wall of the cup holder 111, and the fourth sealing member 113 is sleeved on the support portion. The first side wall of the support portion, which is close to the cup body 110, abuts against the bottom open end of the cup body 112 through the fourth sealing member 113, thereby supporting the cup body 112 and ensuring the installation stability and reliability of the cup body 110 during the food processing process of the food processing device.

[0225] The second side wall of the support portion close to the chassis 121 is in contact with the chassis 121 through the fourth seal 113, so that the chassis 121 can be limited in the radial direction of the cup body 110, further improving the installation stability of the blade assembly 120, thereby ensuring the stability and reliability of the food processing equipment operation, and enhancing the user experience of the food processing equipment.

[0226] In practical applications, the support portion and the cup holder 111 can be an integrated structure. It is understood that an integrated structure has excellent mechanical properties, thereby improving the connection strength between the support portion and the cup holder 111, ensuring the support portion's support effect on the cup body 112 and its limiting effect on the bottom plate 121. Furthermore, the integrated structure facilitates processing and production, thereby reducing the processing difficulty of the cup body 110, improving the production efficiency of the cup body 110, and further reducing the production cost of the cup body 110 and the food processing cup 100, thereby reducing the production cost of the food processing device.

[0227] In addition, the cup body 112 is prone to extend too far into the cup holder 111 during the connection process with the cup holder 111, affecting the connection between the cutter disc assembly 120 and the cup holder 111, and further affecting the use of the food processing cup 100. The first side wall of the support portion can limit the cup body 112 during the installation process of the cup body 110 while supporting the cup body 112, thereby preventing the cup body 112 from touching the cutter disc assembly 120 or affecting the operation of the cutter disc assembly 120.

[0228] Embodiment 8:

[0229] According to a second aspect of the present invention, a food processing device is provided, comprising the food processing cup 100 provided in any of the above embodiments, thereby having all the beneficial technical effects of the food processing cup 100, which will not be described in detail here.

[0230] Furthermore, the food processing equipment includes a soy milk maker or a wall breaking machine, etc.

[0231] In the description of the specification, the terms "connection", "installation", "fixation" and the like should be understood in a broad sense, for example, "connection" can be fixed connection, can also be detachable connection, or integrally connected; can be directly connected, or indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0232] In the description of the specification, the description of the terms "one embodiment", "some embodiments", "a specific embodiment" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0233] The above is only the preferred embodiment of the present application, and is not used to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A food processing cup, characterized in that: include: cup body; a blade disc assembly, the blade disc assembly being detachably connectable to the food processing cup; A limiting assembly is movably provided on the cup body, and the limiting assembly includes a first limiting portion; a gripping portion connected to the position-limiting assembly, wherein the gripping portion is capable of driving the position-limiting assembly to move relative to the cup body; A second limiting portion is provided on the cutter head assembly; Wherein, when the grip portion drives the limiting assembly to move to the first position, the first limiting portion and the second limiting portion are in limiting cooperation; When the grip portion drives the limiting assembly to move to the second position, the first limiting portion and the second limiting portion separate from each other; A limiting protrusion is provided on the limiting component; Wherein, when the grip portion drives the limiting assembly to move to the first position, the limiting protrusion and the cup body are in limiting cooperation; The limiting component includes: a first limiting member movably disposed on the cup body, wherein the first limiting portion is disposed on a side of the first limiting member facing the cutter disc assembly, and a gap is formed between the first limiting member and the cup body; The second limiting member is provided on a side of the first limiting member away from the cutter head assembly, the limiting protrusion is provided on the second limiting member, and the gripping portion is connected to the second limiting member. The gripping portion is capable of driving the second limiting member to move relative to the first limiting member, so as to drive the limiting protrusion to move into or out of the gap; The food processing cup further comprises: a first elastic member, wherein a first end of the first elastic member is connected to the first limiting member, and a second end of the first elastic member is connected to the second limiting member; Wherein, when the limiting protrusion moves into the gap, the first elastic member pushes the gripping portion to maintain the limiting matching state between the limiting protrusion and the cup body.

2. The food processing cup according to claim 1, wherein: When the gripping portion is forced to move toward the first elastic member, the first elastic member is deformed, and the second limiting member drives the limiting protrusion to move out of the gap. The second limiting member can drive the first limiting member to rotate to the second position to release the limiting cooperation with the cup body; The gripping portion can drive the limiting assembly to rotate to the first position, and the second limiting member drives the limiting protrusion to move into the gap to cooperate with the cup body in limiting manner.

3. The food processing cup according to claim 1, wherein: The limiting component also includes: a baffle connected to the first limiting member and forming an accommodating cavity with the first limiting member, wherein the first elastic member is located in the accommodating cavity; Wherein, along the radial direction of the cutter disc assembly, at least a portion of the second limiting member can contact the baffle.

4. The food processing cup according to any one of claims 1 to 3, characterized in that Also includes: An avoidance notch is provided on the cup body, and the gripping portion is exposed outside the cup body through the avoidance notch.

5. The food processing cup according to claim 4, wherein: Also includes: A rotating shaft is provided on the cup body and is located at the avoidance gap. The limiting assembly rotates around the rotating shaft. Wherein, when the grip portion drives the limiting assembly to rotate to the first position, the limiting assembly can fill the avoidance gap.

6. The food processing cup according to claim 5, wherein: Along the axial direction of the cutter disc assembly, the rotation axis of the rotating shaft is higher than the matching position of the first limiting portion and the second limiting portion.

7. The food processing cup according to any one of claims 1 to 3, characterized in that: One of the first limiting portion and the second limiting portion is configured as a protrusion, and the other is configured as a groove.

8. The food processing cup according to any one of claims 1 to 3, characterized in that The cutterhead assembly comprises: chassis; a bottom shell, disposed on a side of the bottom plate away from the cup body and connected to the bottom plate, wherein the second limiting portion is disposed on the bottom shell; The first sealing member is provided between the bottom plate and the bottom shell to seal the gap between the bottom plate and the bottom shell.

9. The food processing cup according to claim 8, wherein: The cutterhead assembly further comprises: A mounting hole is provided on the chassis; a through hole, provided in the bottom shell; A first fastener passes through the through hole and the mounting hole to securely connect the chassis and the bottom shell.

10. The food processing cup according to claim 8, wherein The cutterhead assembly further comprises: A first mounting member is provided on the chassis and extends toward the bottom shell, wherein the first mounting member is configured to have a cavity structure; a knife assembly, located on a side of the chassis facing away from the bottom shell; A knife shaft passes through the chassis and is connected to the knife assembly, and the knife shaft is placed in the cavity; The second sealing member is disposed between the first mounting member and the bottom shell to seal the gap between the first mounting member and the bottom shell.

11. The food processing cup according to claim 8, wherein The cutterhead assembly further comprises: A mounting port, provided on the bottom shell; a coupler, passing through the mounting opening and disposed on the bottom shell; The second fastener is used to fix the coupler to the bottom shell.

12. The food processing cup according to claim 11, wherein: The cutterhead assembly further comprises: a fixing portion, disposed in the bottom shell; A fixing groove is formed in the fixing portion, at least a portion of the coupler is placed in the fixing groove, and the second fastener passes through the fixing portion and is connected to the coupler to fix the coupler to the bottom shell; A third sealing member is used to seal a gap between the fixing portion and the coupler.

13. The food processing cup according to claim 8, wherein The cup body comprises: a cup holder, wherein the limiting assembly is provided on the cup holder; a cup body connected to the cup base; A fourth sealing member is provided on the cup seat, and is used to seal the gap between the cutter disc assembly and the cup body, and to seal the gap between the bottom open end of the cup body and the cup seat.

14. A food processing device, characterized in that: Comprising a food processing cup as claimed in any one of claims 1 to 13 above.

Citation Information

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