Food processor

By designing valve core components in the food processor, the distinction between sewage and slurry is achieved, the problem of cross-contamination of sewage and slurry in existing food processors is solved, and the food hygiene and user experience are improved.

CN222968425UActive Publication Date: 2025-06-13BEAR ELECTRICAL APPLIANCE CO LTD +1
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Patent Information

Application Number
CN202422132998.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-06-13
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

Existing food processors are prone to cross-contamination during the discharge of sewage and slurry, resulting in food hygiene problems.

Method used

A food processing machine is designed, using valve core components to switch states, and discharge sewage and slurry through the first discharge port and the second discharge port respectively, so as to achieve the entire process of differentiating the discharge path.

Benefits of technology

It effectively improves the hygiene of food, provides a better user experience, and prevents cross-contamination of sewage and slurry.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a food processor. The food processor comprises: a host machine; the main machine is detachably connected with the cup body, a stirring cavity is formed in the cup body, and a first discharging opening and a second discharging opening are formed in the stirring cavity; the valve element assembly is assembled on the cup body; the valve element assembly has the first state of opening the first discharge outlet and closing the second discharge outlet, the second state of closing the first discharge outlet and opening the second discharge outlet and the third state of closing the first discharge outlet and the second discharge outlet. In the application, state switching is carried out through the valve element assembly, so that the stirring cavity can be closed or communicated with the outside through one of the first discharge outlet and the second discharge outlet, sewage and slurry can be discharged through the first discharge outlet and the second discharge outlet respectively, the discharge paths of the sewage and the slurry are distinguished in the whole process, and the discharge efficiency of the sewage and the slurry is improved. The food sanitation is effectively improved, and better use experience is brought to a user.
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Description

Technical Field

[0001] The utility model relates to the technical field of household appliances, in particular to a food processor. Background Art

[0002] With the increasing improvement of people's living standards, many different types of food processors have emerged on the market. Especially food processors for crushing and stirring food, such as soybean milk machines, blenders or wall breakers, and with people's usage requirements, food processors can also automatically perform many functions, including but not limited to: self-cleaning, soaking beans, making soybean milk, squeezing juice, making rice paste, mincing meat, shaving ice, making coffee and / or preparing facial masks, etc. However, currently, food processors generally share the same discharge port / channel for discharging sewage and slurry, which is prone to cross-contamination of slurry and sewage, resulting in worrying food hygiene conditions and bringing a poor user experience to users. Summary of the Utility Model

[0003] In order to overcome at least one of the above-mentioned defects of the prior art, the utility model provides a food processor, which realizes the separation of the discharge paths of sewage and slurry throughout the process and effectively improves food hygiene.

[0004] A food processor according to an embodiment of the utility model includes: a main body; a cup body, the main body is detachably connected to the cup body, and a stirring cavity is provided inside the cup body, and a first discharge port and a second discharge port are opened in the stirring cavity; a valve core assembly, the valve core assembly is assembled in the cup body; wherein the valve core assembly has a first state of opening the first discharge port and closing the second discharge port, a second state of closing the first discharge port and opening the second discharge port, and a third state of closing the first discharge port and the second discharge port.

[0005] In this food processor, the state is switched through the valve core assembly, so that the stirring cavity can be closed or communicate with the outside through one of the first discharge port and the second discharge port, so that the first discharge port and the second discharge port can be used to discharge sewage and slurry respectively, realizing the separation of the discharge paths of sewage and slurry throughout the process, effectively improving food hygiene, and bringing a better user experience to users.

[0006] According to some embodiments of the utility model, the valve core assembly includes a first valve plug and a second valve plug, the first valve plug is movably connected to the first discharge port, and the second valve plug is movably connected to the second discharge port.

[0007] According to some embodiments of the utility model, a heating plate is further included, the heating plate is arranged at the bottom of the stirring cavity, and both the first discharge port and the second discharge port are opened on the heating plate.

[0008] According to some embodiments of the present utility model, the valve core assembly further includes a valve core driving member, a first driving rack, and a second driving rack assembled to the main body. An output shaft of the valve core driving member is connected with a driving gear. The first driving rack and the second driving rack are respectively engaged with two opposite sides of the driving gear. The first valve plug is connected with the first driving rack, and the second valve plug is connected with the second driving rack.

[0009] According to some embodiments of the present utility model, the valve core assembly further includes a valve core housing assembled to the cup body. Two valve core connecting rods are movably inserted through the valve core housing. The first valve plug is detachably connected with the first driving rack through one of the valve core connecting rods, and the second valve plug is detachably connected with the second driving rack through the other valve core connecting rod.

[0010] According to some embodiments of the present utility model, an elastic element is sleeved on the valve core connecting rod. One end of the elastic element abuts against the valve core housing, and the other end of the elastic element is connected with the valve core connecting rod, so that the elastic element can drive the valve core assembly to be in state three.

[0011] According to some embodiments of the present utility model, it further includes a first shunt pipeline and a second shunt pipeline. The first shunt pipeline and the second shunt pipeline are arranged on the valve core housing. The first shunt pipeline is connected with the stirring cavity through the first discharge port, and the second shunt pipeline is connected with the stirring cavity through the second discharge port.

[0012] According to some embodiments of the present utility model, it further includes a filter element, and the filter element is arranged at the first discharge port.

[0013] According to some embodiments of the present utility model, it further includes a filter element. The filter element and the first valve plug are arranged in sequence on the valve core connecting rod. When the valve core assembly is in state one, the first discharge port is communicated with the stirring cavity through the filter element.

[0014] According to some embodiments of the present utility model, it further includes a water storage tank and a boiling cup. The water storage tank is communicated with the first discharge port, and the boiling cup is communicated with the second discharge port.

[0015] In summary, the food processor provided by the present utility model has the following technical effects:

[0016] The state of the valve core assembly is switched, so that the stirring cavity can be closed or communicated with the outside through one of the first discharge port and the second discharge port, so that the first discharge port and the second discharge port can be used to discharge sewage and slurry respectively, realizing the separation of the discharge paths of sewage and slurry throughout the process, effectively improving the hygiene of food, and giving users a better use experience. Description of the Drawings

[0017] Figure 1 It is a schematic structural diagram of a food processor according to an embodiment of the present utility model;

[0018] Figure 2 is Figure 1 an enlarged schematic view of area A;

[0019] Figure 3 It is a schematic structural diagram of a valve core assembly in state one according to an embodiment of the present utility model;

[0020] Figure 4 It is a schematic structural diagram of a valve core assembly in state two according to an embodiment of the present utility model;

[0021] Figure 5 It is a schematic structural diagram of a valve core assembly in state three according to an embodiment of the present utility model.

[0022] Among them, the meanings of the reference numerals are as follows:

[0023] 1. Main body; 2. Cup body; 21. Stirring cavity; 22. First discharge port; 23. Second discharge port; 24. Heating plate; 3. Valve core assembly; 31. First valve plug; 32. Second valve plug; 33. Valve core driving member; 34. First driving rack; 35. Second driving rack; 36. Driving gear; 37. Valve core housing; 38. Valve core connecting rod; 39. Elastic element; 4. First shunt pipeline; 5. Second shunt pipeline; 6. Filter element; 7. Water storage tank; 8. Boiling cup. Detailed Embodiments

[0024] For better understanding and implementation, the technical solutions in the embodiments of the present utility model will be clearly and completely described below in conjunction with the drawings in the embodiments of the present utility model.

[0025] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present utility model.

[0026] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the technical field to which the present utility model belongs. The terms used in the description of the present utility model herein are only for the purpose of describing specific embodiments and are not intended to limit the present utility model.

[0027] Refer to Figure 1 , Figure 3 , Figure 4 and Figure 5 , the present utility model discloses a food processor. The food processor includes a main body 1, a cup body 2 and a valve core assembly 3. In some embodiments, the main body 1 is detachably connected to the cup body 2. The cup body 2 has a stirring cavity 21 inside, and the stirring cavity 21 is provided with a first discharge port 22 and a second discharge port 23; the valve core assembly 3 is assembled in the cup body 2; wherein the valve core assembly 3 has a state one (corresponding to Figure 3 ) of opening the first discharge port 22 and closing the second discharge port 23, a state two (corresponding to Figure 4 ) of closing the first discharge port 22 and opening the second discharge port 23, and a state three (corresponding to Figure 5 ) of closing the first discharge port 22 and the second discharge port 23. Thus, through the state switching of the valve core assembly 3, the stirring cavity 21 can be closed or communicate with the outside through one of the first discharge port 22 and the second discharge port 23, so that the sewage and the slurry can be discharged respectively by using the first discharge port 22 and the second discharge port 23, realizing the separation of the sewage and slurry discharge paths throughout the process, effectively improving the hygiene of the food, and giving the user a better use experience.

[0028] Refer to Figure 1 , optionally, a stirring blade may be further provided in the cup body 2 to perform processing such as stirring, juicing or breaking the wall of the ingredients in the stirring cavity 21. Optionally, the main body 1 may be provided with a stirring driving member for driving the stirring blade to rotate. Optionally, when the valve core assembly 3 is in state one, the sewage generated by cleaning the stirring cavity 21, cleaning the ingredients in the stirring cavity 21 and soaking the ingredients can be discharged through the first discharge port 22; optionally, when the valve core assembly 3 is in state two, the slurry generated after processing such as stirring, juicing or breaking the wall in the stirring cavity 21 can be discharged through the second discharge port 23; optionally, when the valve core assembly 3 is in state three, both the first discharge port 22 and the second discharge port 23 are in a closed state, and operations such as soaking, heating, stirring, juicing or breaking the wall of the ingredients in the stirring cavity 21 can be performed.

[0029] Refer to Figure 2 , Figure 3 , Figure 4 and Figure 5, in some embodiments, the valve core assembly 3 includes a first valve plug 31 and a second valve plug 32. The first valve plug 31 is movably connected to the first discharge port 22, and the second valve plug 32 is movably connected to the second discharge port 23. In this way, the first discharge port 22 and the second discharge port 23 are respectively opened or closed by the first valve plug 31 and the second valve plug 32, so as to switch the state of the valve core assembly 3. Optionally, both the first valve plug 31 and the second valve plug 32 can be manually driven by the user or driven by a power source such as a motor, a cylinder or an electric cylinder, so that the first valve plug 31 and the second valve plug 32 reciprocate between the open and closed positions. Optionally, when the first valve plug 31 is in the position of opening the first discharge port 22 and the second valve plug 32 is in the position of closing the second discharge port 23, the valve core assembly 3 is in state one, and at this time, the mixing chamber 21 can discharge sewage; optionally, when the first valve plug 31 is in the position of closing the first discharge port 22 and the second valve plug 32 is in the position of opening the second discharge port 23, the valve core assembly 3 is in state two, and at this time, the mixing chamber 21 can discharge slurry; when the first valve plug 31 is in the position of closing the first discharge port 22 and the second valve plug 32 is in the position of closing the second discharge port 23, the valve core assembly 3 is in state three, and at this time, the mixing chamber 21 does not discharge externally and can perform operations such as soaking, heating, stirring, juicing or breaking the ingredients in the mixing chamber 21.

[0030] Refer to Figure 3 , Figure 4 and Figure 5 , in some embodiments, it further includes a heating plate 24. The heating plate 24 is arranged at the bottom of the mixing chamber 21, and both the first discharge port 22 and the second discharge port 23 are opened on the heating plate 24. That is to say, the ingredients or slurry in the mixing chamber 21 can be heated through the heating plate 24, so that the food processor can perform more diversified ingredient processing. At the same time, both the first discharge port 22 and the second discharge port 23 are opened on the heating plate 24 located at the bottom of the mixing chamber 21, that is, the first discharge port 22 and the second discharge port 23 are located at the bottom of the mixing chamber 21. Therefore, when the valve core assembly 3 is in state one or state two, the sewage or slurry in the mixing chamber 21 can directly flow into the first discharge port 22 or the second discharge port 23.

[0031] Refer to Figure 2 , Figure 3 , Figure 4 and Figure 5, in some embodiments, the valve core assembly 3 further includes a valve core driving member 33, a first driving rack 34 and a second driving rack assembled on the main machine 1. The output shaft of the valve core driving member 33 is connected with a driving gear 36. The first driving rack 34 and the second driving rack are respectively engaged on two opposite sides of the driving gear 36. The first valve plug 31 is connected with the first driving rack 34, and the second valve plug 32 is connected with the second driving rack. In this way, when the valve core driving member 33 drives the driving gear 36 to rotate, the first driving rack 34 and the second driving rack respectively engaged on two opposite sides of the driving gear 36 move in opposite directions, so that the first valve plug 31 and the second valve plug 32 are alternately opened or closed. Preferably, the valve core driving member 33 can drive the driving gear 36 to rotate forward or backward. Optionally, when the valve core driving member 33 drives the driving gear 36 to rotate forward, the first driving rack 34 drives the first valve plug 31 to move to a position where the first discharge port 22 is opened, and the second driving rack drives the second valve plug 32 to move to a position where the second discharge port 23 is closed, that is, the valve core assembly 3 is switched to state one. Optionally, when the valve core driving member 33 drives the driving gear 36 to rotate backward, the first driving rack 34 drives the first valve plug 31 to move to a position where the first discharge port 22 is closed, and the second driving rack drives the second valve plug 32 to move to a position where the second discharge port 23 is opened, that is, the valve core assembly 3 is switched to state two. Further, when the driving gear 36 rotates forward or backward to a certain position or certain positions, the first driving rack 34 drives the first valve plug 31 to be in a position where the first discharge port 22 is closed, and the second driving rack drives the second valve plug 32 to be in a position where the second discharge port 23 is closed, that is, there is at least one position that drives the valve core assembly 3 to be switched to state three, so as to seal the stirring chamber 21.

[0032] Refer to Figure 2 , Figure 3 , Figure 4 and Figure 5, in some embodiments, the valve core assembly 3 further includes a valve core housing 37 assembled to the cup body 2. Two valve core connecting rods 38 are movably inserted through the valve core housing 37. The first valve plug 31 is detachably connected to the first driving rack 34 through one of the valve core connecting rods 38, and the second valve plug 32 is detachably connected to the second driving rack through the other valve core connecting rod 38. Preferably, one end of one valve core connecting rod 38 is fixedly connected to the first valve plug 31, and the other end of one valve core connecting rod 38 is detachably connected to the first driving rack 34. One end of the other valve core connecting rod 38 is fixedly connected to the second valve plug 32, and the other end of the other valve core connecting rod 38 is detachably connected to the second driving rack. In this way, when the cup body 2 is removed from the host 1, the disassembly of the valve plug from the valve core driving member 33 can be realized by disassembling the two valve core connecting rods 38 from the first driving rack 34 and the second driving rack. Moreover, by using the valve core connecting rods 38 as the connecting members between the driving rack and the valve plug, the disassembly and assembly process is prevented from directly affecting the first valve plug 31 and the second valve plug 32. At the same time, the valve core connecting rods 38 serve as the transmission members between the driving rack and the valve plug, that is, the two valve core connecting rods 38 can move relative to the valve core housing 37. Specifically, the first driving rack 34 can drive the first valve plug 31 through a corresponding valve core connecting rod 38, and the second driving rack can drive the second valve plug 32 through the other corresponding valve core connecting rod 38 to switch the state of the valve core assembly 3.

[0033] See Figure 2 , Figure 3 , Figure 4 and Figure 5, in some embodiments, an elastic element 39 is sleeved on the valve core connecting rod 38. One end of the elastic element 39 abuts against the valve core housing 37, and the other end of the elastic element 39 is connected to the valve core connecting rod 38, so that the elastic element 39 can drive the valve core assembly 3 to be in state three. In this way, when the first driving rack 34 or the second driving rack does not provide a force to the valve core connecting rod 38, the valve core connecting rod 38 is driven by the pre-tightening force provided by the elastic element 39 to drive the first valve plug 31 to be in a position where the first discharge port 22 is closed, and the second valve plug 32 is in a position where the second discharge port 23 is closed, so that the valve core assembly 3 is in state three. Thus, when the user directly picks up the cup body 2, the valve core connecting rod 38 drives the first valve plug 31 to be in a position where the first discharge port 22 is closed and the second valve plug 32 to be in a position where the second discharge port 23 is closed under the action of the elastic element 39, preventing the sewage or slurry in the stirring chamber 21 from continuing to be discharged and avoiding the leakage of the sewage or slurry in the stirring chamber 21. Optionally, the elastic element 39 is a spring. The spring is sleeved on the valve core connecting rod 38. One end of the spring close to the valve plug abuts against or is fixed to the valve core housing 37, and the other end of the spring far from the valve plug is fixedly connected to the valve core connecting rod 38. Optionally, a push plate is abutted against the other end of the spring far from the valve plug, and the push plate is fixedly connected to the valve core connecting rod 38. In this way, when the first driving rack 34 or the second driving rack drives the first valve plug 31 or the second valve plug 32 to move to the open position through the valve core connecting rod 38, the corresponding spring is in a compressed state. If the first driving rack 34 or the second driving rack is separated from the valve core connecting rod 38 at this time, the spring undergoes elastic deformation, driving the valve core connecting rod 38 to drive the corresponding first valve plug 31 or second valve plug 32 to move to the closed position.

[0034] Refer to Figure 2 , Figure 3 , Figure 4 and Figure 5 , in some embodiments, a first shunt pipe 4 and a second shunt pipe 5 are further included. The first shunt pipe 4 and the second shunt pipe 5 are arranged on the valve core housing 37. The first shunt pipe 4 is connected to the stirring chamber 21 through the first discharge port 22, and the second shunt pipe 5 is connected to the stirring chamber 21 through the second discharge port 23. In this way, when the first discharge port 22 is in an open state, the sewage in the stirring chamber 21 enters the first shunt pipe 4 through the first discharge port 22. When the second discharge port 23 is in an open state, the slurry in the stirring chamber 21 enters the second shunt pipe 5 through the second discharge port 23.

[0035] Refer toFigure 2 , Figure 3 , Figure 4 and Figure 5 , in some embodiments, it further includes a filter member 6, and the filter member 6 is disposed at the first discharge port 22. In this way, when the first discharge port 22 is in an open state, the sewage in the stirring chamber 21 can pass through the filter member 6 and flow into the first discharge port 22, thereby preventing the food materials in the stirring chamber 21 from flowing out of the stirring chamber 21, realizing the function of discharging sewage. When the second discharge port 23 is in an open state, the slurry (a mixture of processed food materials and liquid) in the stirring chamber 21 can directly flow into the first diversion channel, realizing the function of discharging slurry. In this embodiment, the filter member 6 is fixedly assembled on the first discharge port 22. Optionally, when the valve core driving member 33 drives the first valve plug 31 to move away from the filter member 6 through the valve core connecting rod 38 and drives the first discharge port 22 to be in an open state, the sewage in the stirring chamber 21 passes through the filter member 6 and flows into the first discharge port 22, so that the filter member 6 prevents the food materials in the stirring chamber 21 from flowing out of the stirring chamber 21.

[0036] Refer to Figure 2 , Figure 3 , Figure 4 and Figure 5 , in some embodiments, it further includes a filter member 6, and the filter member 6 and the first valve plug 31 are arranged in sequence on the valve core connecting rod 38. When the valve core assembly 3 is in state one, the first discharge port 22 is communicated with the stirring chamber 21 through the filter member 6. In this way, when the valve core assembly 3 is in state one, both the filter member 6 and the first valve plug 31 can move along with the valve core connecting rod 38. Among them, the first valve plug 31 moves to a position where the first discharge port 22 is opened, and the filter member 6 moves to the water inlet side of the first discharge port 22, so that the first discharge port 22 is communicated with the stirring chamber 21 through the filter member 6, enabling the sewage in the stirring chamber 21 to pass through the filter member 6 and flow into the first discharge port 22, and preventing the food materials in the stirring chamber 21 from flowing out of the stirring chamber 21, realizing the function of discharging sewage. In this embodiment, the filter member 6 is fixedly assembled on the valve core connecting rod 38, so that the filter member 6 can move along with the first valve plug 31 and the valve core connecting rod 38. When the first valve plug 31 moves to a position where the first discharge port 22 is opened, the filter member 6 moves to the water inlet side of the first discharge port 22. In this way, the sewage in the stirring chamber 21 passes through the filter member 6 and flows into the first discharge port 22, so that the filter member 6 prevents the food materials in the stirring chamber 21 from flowing out of the stirring chamber 21.

[0037] Refer to Figure 1, in some embodiments, it further includes a water storage tank 7 and a boiling cup 8. The water storage tank 7 is communicated with the first discharge port 22, and the boiling cup 8 is communicated with the second discharge port 23. Preferably, the first discharge port 22 is communicated with the water storage tank 7 through the first shunt pipeline 4, and the second discharge port 23 is communicated with the boiling cup 8 through the second shunt pipeline 5. Optionally, both the water storage tank 7 and the boiling cup 8 are assembled to the main machine 1 to facilitate the collection of sewage and slurry.

[0038] Refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5, in some embodiments, when discharging and cleaning the stirring chamber 21, cleaning the food materials in the stirring chamber 21, and soaking the food materials to generate sewage, when the valve core driving member 33 drives the driving gear 36 to rotate forward, the first driving rack 34 drives the first valve plug 31 to move to the position of opening the first discharge port 22 through one valve core connecting rod 38, and the second driving rack drives the second valve plug 32 to move to the position of closing the second discharge port 23 through the other valve core connecting rod 38, that is, the valve core assembly 3 switches to state one. At the same time, the filter member 6 moves along with the first valve plug 31, so that the first discharge port 22 is communicated with the stirring chamber 21 through the filter member 6, enabling the liquid in the stirring chamber 21 to flow through the filter member 6 and into the first discharge port 22, and preventing the food materials in the stirring chamber 21 from flowing out of the stirring chamber 21, realizing the function of discharging sewage. Then, the sewage enters the water storage tank 7 through the first diversion pipeline 4 for storage; when discharging the slurry, the first driving rack 34 drives the first valve plug 31 to move to the position of closing the first discharge port 22 through one valve core connecting rod 38, and the second driving rack drives the second valve plug 32 to move to the position of opening the second discharge port 23 through the other valve core connecting rod 38, that is, the valve core assembly 3 switches to state two, so that the second discharge port 23 is communicated with the stirring chamber 21, enabling the slurry in the stirring chamber 21 to flow into the second discharge port 23. Then, the slurry enters the boiling cup 8 through the second diversion pipeline 5 for storage. Thus, the first discharge port 22 and the second discharge port 23 can be used to discharge sewage and slurry respectively, realizing the separation of the discharge paths of sewage and slurry throughout the process, effectively improving the hygiene of food, and giving users a better use experience; further, when the user directly picks up the cup body 2, the two valve core connecting rods 38 are separated from the first driving rack 34 and the second driving rack respectively, so that the valve core connecting rods 38 drive the first valve plug 31 to be in the position of closing the first discharge port 22 and the second valve plug 32 to be in the position of closing the second discharge port 23 under the action of the elastic element 39, preventing the sewage or slurry in the stirring chamber 21 from continuing to be discharged and avoiding the leakage of the sewage or slurry in the stirring chamber 21.

[0039] The technical means disclosed in the solution of the present utility model are not limited to the technical means disclosed in the above embodiments, but also include the technical solutions composed of any combination of the above technical features. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the principle of the present utility model, several improvements and retouches can be made, and these improvements and retouches are also regarded as the protection scope of the present utility model.

Claims

1. A food processing machine, characterized in that: include: Host (1); A cup body (2), the main machine (1) and the cup body (2) being detachably connected, the cup body (2) having a stirring chamber (21) therein, the stirring chamber (21) being provided with a first discharge port (22) and a second discharge port (23); A valve core assembly (3), wherein the valve core assembly (3) is assembled on the cup body (2); The valve core assembly (3) has a state one in which the first discharge port (22) is opened and the second discharge port (23) is closed, a state two in which the first discharge port (22) is closed and the second discharge port (23) is opened, and a state three in which the first discharge port (22) and the second discharge port (23) are closed.

2. The food processing machine according to claim 1, characterized in that: The valve core assembly (3) comprises a first valve plug (31) and a second valve plug (32), wherein the first valve plug (31) is movably connected to the first discharge port (22), and the second valve plug (32) is movably connected to the second discharge port (23).

3. The food processing machine according to claim 2, characterized in that: It also comprises a heating plate (24), wherein the heating plate (24) is arranged at the bottom of the stirring chamber (21), and the first discharge port (22) and the second discharge port (23) are both opened on the heating plate (24).

4. The food processing machine according to claim 2 or 3, characterized in that: The valve core assembly (3) also includes a valve core driving member (33), a first driving rack (34) and a second driving rack assembled on the main machine (1); the output shaft of the valve core driving member (33) is connected to a driving gear (36); the first driving rack (34) and the second driving rack are respectively engaged with two opposite sides of the driving gear (36); the first valve plug (31) is connected to the first driving rack (34); and the second valve plug (32) is connected to the second driving rack.

5. The food processing machine according to claim 4, characterized in that: The valve core assembly (3) also includes a valve core housing (37) assembled on the cup body (2), and two valve core connecting rods (38) are movably inserted into the valve core housing (37). The first valve plug (31) is detachably connected to the first drive rack (34) via one of the valve core connecting rods (38), and the second valve plug (32) is detachably connected to the second drive rack via another of the valve core connecting rods (38).

6. The food processing machine according to claim 5, characterized in that: An elastic element (39) is sleeved on the valve core connecting rod (38), one end of the elastic element (39) is in contact with the valve core housing (37), and the other end of the elastic element (39) is connected to the valve core connecting rod (38), so that the elastic element (39) can drive the valve core assembly (3) to be in state three.

7. The food processor according to claim 5, characterized in that: It also comprises a first shunt pipe (4) and a second shunt pipe (5), wherein the first shunt pipe (4) and the second shunt pipe (5) are arranged on the valve core housing (37), the first shunt pipe (4) is connected to the stirring chamber (21) via the first discharge port (22), and the second shunt pipe (5) is connected to the stirring chamber (21) via the second discharge port (23).

8. The food processing machine according to claim 5, characterized in that: It also comprises a filter element (6), wherein the filter element (6) is arranged at the first discharge port (22).

9. The food processing machine according to claim 5, characterized in that: It also includes a filter element (6), wherein the filter element (6) and the first valve plug (31) are arranged in sequence on the valve core connecting rod (38), and when the valve core assembly (3) is in state one, the first discharge port (22) is connected to the stirring chamber (21) through the filter element (6).

10. The food processor according to claim 8 or 9, characterized in that: It also comprises a water storage tank (7) and a boiling cup (8), wherein the water storage tank (7) is in communication with the first discharge port (22), and the boiling cup (8) is in communication with the second discharge port (23).