Food processor

By incorporating multiple independent container components and an intelligent control panel within the food processor, the problem of food processors being unable to use multiple containers simultaneously or alternately is solved, enabling efficient, low-noise, multi-functional food processing, enhancing user experience and device intelligence.

CN223944295UActive Publication Date: 2026-02-27BEIJING LIVEN SCI TECH
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Patent Information

Application Number
CN202520290501.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2026-02-27
Estimated Expiration
2035-02-21

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  • Figure CN223944295U_ABST
    Figure CN223944295U_ABST
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Abstract

The utility model provides a food processor. Specifically, the food processor comprises a cup body assembly and a base. Each cup body assembly is provided with a cooking cavity, the number of the cup body assemblies is at least two, each cup body assembly is independently arranged, and each cup body assembly is provided with an upper cover, a cup body and a lower shell; the base is provided with at least two mounting cavities, each mounting cavity is correspondingly provided with a cup body assembly, and each cup body assembly is detachably mounted in the corresponding mounting cavity through the lower shell. The food processor solves the problems that in the prior art, a food processor is low in working efficiency and cannot meet the multifunctional requirement.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of household appliances, specifically relates to a food processor. BACKGROUND

[0002] Food processors have gradually become a standard household appliance in the kitchen in recent years because of their ability to process food into more delicate, easier to digest, and more beneficial to human health.

[0003] In the prior art, food processors, especially soybean milk machines, face a series of limitations in operation and function. Traditional food processors are usually designed as single container structures, which often lack the ability to independently control multiple containers, meaning that users cannot simultaneously or alternately use multiple containers for processing different food materials in a short period of time, limiting the multifunctionality of the food processor and the expansion of use scenarios. During family gatherings or office breakfast preparation, it is necessary to simultaneously make soybean milk, breakwall drinks, or ground meat, etc. Single-container food processors obviously cannot meet such needs, causing inconvenience to users. Furthermore, noise is also a significant drawback of traditional soybean milk machines. The sound produced by high-speed stirring and heating during operation can interfere with the user or the surrounding environment.

[0004] No effective solution has been proposed to address the above problems. SUMMARY

[0005] The main purpose of the utility model is to provide a food processor to solve the problem of low work efficiency and inability to meet multifunctional needs in the prior art.

[0006] To achieve the above purpose, according to one aspect of the utility model, a food processor is provided, which includes: a cup body assembly, the cup body assembly has a food processing cavity, and at least two cup body assemblies are provided, each cup body assembly is independently provided, and each cup body assembly is provided with an upper cover, a cup body, and a lower shell; a base, the base is provided with at least two mounting cavities, and each mounting cavity is provided with one cup body assembly, wherein each cup body assembly is detachably mounted in the mounting cavity through the lower shell.

[0007] Further, the food processor further includes: a control panel, the control panel is arranged on one side of the base, the control panel is connected with the base, the control panel is provided with a touch control area, and the working state of each cup body assembly can be controlled by operating the touch control area.

[0008] Further, the touch control area includes a first touch control area, the first touch control area is arranged in one-to-one correspondence with the cup body assembly, and the first touch control area corresponding to the cup body assembly is arranged on one side of the cup body assembly, and the first touch control area is used for controlling the corresponding cup body assembly to work independently.

[0009] Further, the touch area comprises a second touch area, the second touch area is located at the same side of the plurality of cup body assemblies, and the second touch area is used for controlling the plurality of cup body assemblies to work simultaneously.

[0010] Further, the control panel is provided with a first display area, the first display area is arranged one by one corresponding to the cup body assemblies, and the first display area arranged corresponding to the cup body assemblies is located above the first touch area, and the first display area is used for displaying at least one of working time and working temperature of each cup body assembly.

[0011] Further, the control panel is provided with a second display area, the second display area is located between adjacent two cup body assemblies, and the second display area is used for displaying a first working mode of each cup body assembly, wherein the first working mode comprises at least one of soybean milk mode, five grain milk mode, nutrient paste mode, soft porridge mode and thick soup mode.

[0012] Further, the control panel is provided with a third display area, the third display area is located below the second display area, and the third display area is used for displaying a second working mode of each cup body assembly, wherein the second working mode comprises at least one of reservation mode, heat preservation mode and cleaning mode.

[0013] Further, the control panel is provided with a switch button, the switch button is located below the third display area, and the switch button is used for controlling each cup body assembly to open and close.

[0014] Further, the cup body of at least one cup body assembly is a plurality of, and the plurality of cup bodies comprise at least one of a powder grinding cup body, a soybean milk cup body, a broken wall cup body and a meat grinding cup body.

[0015] Further, the cup body of each cup body assembly is arranged in the same way.

[0016] The technical scheme of the utility model, by installing a plurality of cup body assemblies on the base, each cup body assembly is independently arranged, simultaneous or alternating use is realized, the convenience and efficiency of operation are greatly improved, and the demand for realizing multiple functions in a short time is met. The scheme solves the problems of low working efficiency and inability to meet the multi-functional demand of the existing technology. BRIEF DESCRIPTION OF DRAWINGS

[0017] The drawings accompanying the specification of this application serve to provide a further understanding of the utility model, the schematic embodiments of the utility model and the description thereof serve to explain the utility model, and do not constitute an improper limitation on the utility model. In the drawings:

[0018] Figure 1 An explosion schematic view of a first embodiment of the food processor according to the utility model is shown;

[0019] Figure 2 A structural schematic diagram of a second embodiment of the food processor according to the present application is shown;

[0020] Figure 3 An enlarged schematic diagram according to the second embodiment A of the present application is shown;

[0021] Figure 4 A structural schematic diagram of a third embodiment of the food processor according to the present application is shown;

[0022] Figure 5 A structural schematic diagram of a first embodiment of the control panel according to the present application is shown.

[0023] Among the above drawings, the following reference signs are included:

[0024] 1, cup body assembly;

[0025] 2, cover;

[0026] 3, muffler cover;

[0027] 4, muffler cover bead;

[0028] 5, micro-pressure valve structure; 51, valve body; 52, first exhaust passage; 53, opening and closing member;

[0029] 6, base;

[0030] 7, motor;

[0031] 8, handle;

[0032] 9, lower shell;

[0033] 10, control panel;

[0034] 11, first touch control area;

[0035] 12, switch button;

[0036] 13, first display area;

[0037] 14, second display area;

[0038] 15, third display area. DETAILED DESCRIPTION

[0039] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict. The present application will be described in detail below with reference to the drawings and in combination with embodiments.

[0040] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of example embodiments in accordance with the present application. As used herein, the singular forms "a", "an" and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. It will be further understood that the terms "comprises" and / or "comprising," when used in this specification, specify the presence of stated features, steps, operations, elements, components, and / or groups thereof, but do not preclude the presence or addition of one or more other features, steps, operations, elements, components, and / or groups thereof.

[0041] It is to be understood that the terms "first", "second", and the like used herein are used to distinguish similar objects from one another, and are not necessarily used to describe a particular sequential or chronological order. It is to be understood that such terms as used herein are interchangeable under appropriate circumstances such that the embodiments of the application described herein are capable of

[0042] Reference will now be made to the drawings to describe in more detail exemplary embodiments in accordance with the present application. These exemplary embodiments can, however, be carried out in many different ways, and should not be construed to be limited to the embodiments set forth herein. It should be understood that these embodiments have been provided merely for the purposes of clarity and that the concepts of the exemplary embodiments are to be understood as extending beyond the specific embodiments presented. In the drawings, the thickness of layers and regions can be exaggerated for clarity, and like reference numerals can be used throughout the drawings to designate like elements, and thus description thereof will be omitted.

[0043] A food processor is a multi-functional kitchen appliance that can perform a variety of food processing tasks such as mixing, beating, grinding, mincing, juicing, etc., greatly simplifying the food preparation process in the kitchen. Food processors include blenders, soybean milk processors, juicers, mixers, coffee machines, etc.

[0044] In conjunction with Figures 1 to 5 As shown, according to specific embodiments of the present application, a food processor is provided.

[0045] Specifically, as Figure 1As shown, the food processor comprises: a cup assembly 1 and a base. The cup assembly 1 has a food cavity, and at least two cup assemblies 1 are provided, each cup assembly 1 is independently provided, and each cup assembly 1 is provided with an upper cover 2, a cup body and a lower shell 9; the base 6 is provided with at least two mounting cavities, and each mounting cavity is provided with a cup assembly 1, wherein each cup assembly 1 is detachably mounted in the mounting cavity through the lower shell 9.

[0046] The technical scheme of the utility model, through installing multiple cup assemblies on the base, each cup assembly is independently provided, simultaneous or alternating use is realized, the convenience and efficiency of operation are greatly improved, and the demand for realizing multiple functions in a short time is met. The present application solves the problem of low working efficiency and inability to meet the demand for multiple functions of the existing food processor.

[0047] Further, the food processor further comprises: a mute cover 3 connected with the cover 2, the mute cover 3 shielding at least part of the cup assembly 1, and the mute cover 3 comprising a mute cover cover bead 4 arranged on the top of the cover 2.

[0048] Specifically, the food processor further comprises: a micro-pressure valve structure 5 arranged on at least one of the mute cover cover bead 4 and the cover 2, the micro-pressure valve structure 5 having a closed state of sealing the food cavity, and the micro-pressure valve structure 5 having an open state of connecting the food cavity with the atmosphere.

[0049] It should be further pointed out that the micro-pressure valve structure 5 has a closed state of sealing the food cavity when the pressure in the food cavity is less than a critical value, and the micro-pressure valve structure 5 has an open state of connecting at least part of the food cavity with the atmosphere when the pressure in the food cavity is greater than or equal to the critical value.

[0050] By arranging the micro-pressure valve structure 5 on the mute cover cover bead 4 or the cover 2, the switching of the micro-pressure valve structure 5 between the closed and open states can increase the heating efficiency by increasing the pressure inside the container without increasing the additional heating power, shorten the cooking time, avoid food paste bottom, improve the quality and taste of food, reduce energy consumption and improve user experience.

[0051] As Figure 3As shown, the micro-pressure valve structure 5 comprises a valve body 51 and a shutter 53. The valve body 51 is internally formed with a first exhaust passage 52, the first end of the first exhaust passage 52 being in communication with the cooking cavity, and the second end of the first exhaust passage 52 being in communication with the atmosphere; the shutter 53 is located in the first exhaust passage 52, and is movably arranged relative to the valve body 51, and has a blocking position and at least one avoiding position, wherein when the shutter 53 is in the blocking position, the shutter 53 blocks the first exhaust passage 52, so that the micro-pressure valve structure 5 is in a closed state, and when the shutter 53 is in the avoiding position, the shutter 53 at least partially opens the first exhaust passage 52, so that the micro-pressure valve structure 5 is in an open state. The automatic switching of the shutter 53 between the blocking position and the avoiding position realizes dynamic control of the air pressure in the cooking cavity. Through this switching mechanism of the shutter 53, the micro-pressure valve structure 5 can automatically adjust the internal air pressure at different stages of cooking, which not only ensures the efficiency and quality of cooking, but also avoids safety hazards.

[0052] The micro-pressure valve structure 5 is arranged at the middle position of the mute cover 4, and the first exhaust passage 52 is a passage for releasing excess air pressure in the micro-pressure valve structure 5, and the opening and closing of the first exhaust passage 52 are automatically controlled by the gravity of the shutter 53. The first end of the first exhaust passage 52 is in communication with the cooking cavity, and steam can enter the first exhaust passage 52, and when the cooking is in the initial stage or the air pressure has not reached the preset value, the shutter 53 is in the blocking position, and the shutter 53 (a steel ball in the embodiment) blocks the first exhaust passage 52 by relying on its own gravity, so that the steam is limited in the cooking cavity, forming a micro-pressure environment, which can improve the working efficiency.

[0053] During the cooking process, as the temperature in the cooking cavity rises, the steam pressure gradually increases. When the pressure exceeds the blocking threshold of the shutter 53, the shutter 53 is lifted by the steam pressure and is opened to the avoiding position, and at this time the first exhaust passage 52 is at least partially opened, and the micro-pressure valve structure 5 is in an open state. At this time, the second end of the first exhaust passage 52 is in communication with the atmosphere, and the excess steam is released into the atmospheric environment, avoiding the safety hazards that may be caused by the excessive internal pressure, and further reducing the noise generated during the operation of the food processor.

[0054] As Figure 2As shown, the food processor further comprises at least one motor 7, which is located inside the lower shell 9 and connected with the cup assembly 1. A stirring element is arranged in the cup assembly 1 and connected with the output end of the motor 7. Through the driving of the motor, the stirring element can rotate at high speed to effectively grind and stir the food materials placed in the cup. The design of the stirring element usually includes one or more blades, which can break the food materials into fine particles under the driving of the motor, and further through the heating and stirring process. The design of the blade needs to consider the hardness and granularity of the food materials, and the uniformity and efficiency of stirring can be improved by optimizing the angle, shape and number of the blade.

[0055] Specifically, the soundproof cover 3 forms a sound insulation cavity with the cup assembly 1. The sound insulation cavity can isolate the vibration of the cup assembly 1 and the motor 7 components, reduce the transmission of vibration to the outside world, further reduce the noise, and the soundproof cover 8 adopts double-layer sound insulation material, the outer layer is hard material, and the inner layer is sound-absorbing material, which can effectively isolate the noise during the operation of the motor, and provide a quiet use environment for the user. At the same time, a damping pad is installed between the soundproof cover 8 and the cup assembly 1, further reducing the vibration and noise during operation.

[0056] It needs to be further explained that the soundproof cover 3 is designed with a safety lock, which ensures that the motor cannot be started before the soundproof cover 3 is correctly installed, avoiding the potential danger caused by the exposed stirring element. In order to facilitate cleaning and maintenance, the detachable connection between the soundproof cover 3 and the cup assembly 1 allows the user to easily remove the soundproof cover for cleaning without worrying about damaging other parts of the equipment.

[0057] Specifically, as Figure 4 The food processor further comprises a control panel 10 arranged on one side of the base 6, which is connected with the base 6 and provided with a touch area on which the working state of each cup assembly 1 can be controlled by operating the touch area. The touch design of the control panel 10 makes the user operation more intuitive and convenient, reduces the complexity of traditional mechanical buttons, and improves the intelligent level of the equipment.

[0058] It needs to be further explained that the touch area on the control panel is connected with the circuit board, which ensures that the signal operated by the user can be accurately received and processed by the circuit board.

[0059] As Figure 5As shown, the touch control area includes a first touch control area 11, which is arranged one-to-one with the cup body assembly 1 and is located on one side of the cup body assembly 1. The first touch control area 11 is used to control the corresponding cup body assembly 1 to work independently. This one-to-one touch control design of the first touch control area 11 and the cup body assembly 1 enables the user to accurately control the operation of each cup body assembly, avoids misoperation, and improves the safety and efficiency of the device. Each cup body assembly 1 works independently and does not affect each other, improving the diversity and flexibility of cooking.

[0060] In this embodiment, two independent first touch control areas 11 are designed on the control panel, corresponding to the left and right cup body assemblies 1 respectively. The first touch control area 11 can be used to control the right cup body assembly 1 or the left cup body assembly 1 to work independently.

[0061] Further, the touch control area includes a second touch control area, which is located on the same side of the plurality of cup body assemblies 1. The second touch control area is used to control the plurality of cup body assemblies 1 to work simultaneously. The second touch control area is designed to meet the control needs of multiple cups working simultaneously. It is located on one side of the control panel, which is convenient for users to select intuitively and conveniently when operating. Unlike the first touch control area, the main function of the second touch control area is to coordinate and control the synchronous operation of the plurality of cup body assemblies 1. This design enables the user to start multiple cup body assemblies at a time for batch processing, greatly improving the working efficiency of the food processor.

[0062] Specifically, the control panel 10 is provided with a first display area 13, which is arranged one-to-one with the cup body assembly 1 and is located above the first touch control area 11. The first display area 13 is used to display at least one of the working time and the working temperature of each cup body assembly 1. This display design enables the user to monitor the working state of each cup body assembly 1 in real time, ensuring accurate control of the cooking process.

[0063] Optionally, when the working temperature of the cup body assembly 1 exceeds the preset safety threshold, the first display area 13 can prompt in an eye-catching manner (such as color change or flashing) to remind the user that there may be a safety hazard and measures need to be taken.

[0064] In a specific embodiment, the first display area 13 adopts a high-brightness LED screen, which can clearly display the working parameters of each cup assembly. Even in a relatively dark kitchen environment, users can easily read the parameters. The screen layout is simple, and the first display area displays "temperature: 80℃, time: 15min", so that users can intuitively understand the current running state and progress of different cups. If the user needs to adjust the temperature or time during the operation of the device, he can directly operate in the first touch area, and the first display area 13 will update the display in real time to ensure the accuracy of the parameter setting. In addition, the device also has a "multi-cup synchronous production" mode, which can be selected by the user through the second touch area. At this time, the first display area 13 will display the total time and progress of synchronous work, as well as the preset heating temperature, so that the user can monitor the running of multiple cups at the same time. In order to increase the intelligence of the device, the first display area 13 can also be paired with a mobile phone APP or other smart devices through wireless communication technology (such as Bluetooth or Wi-Fi), and the working parameters can be sent to the user's mobile phone in real time. Even if the user leaves the kitchen, he can always master the running state of the device and realize remote monitoring. Through the above design, the food processor not only provides efficient food processing capacity, but also through intelligent display technology, gives the device more interactivity and functionality, greatly improves the convenience of user operation and the intelligence level of the device, and makes the device more widely and deeply applied in the kitchen and catering service industry.

[0065] Further, the control panel 10 is provided with a second display area 14, which is located between two adjacent cup assemblies 1. The second display area 14 is used to display the first working mode of each cup assembly 1, wherein the first working mode includes at least one of the soybean milk mode, the five-grain milk mode, the nutrition paste mode, the soft porridge mode and the thick soup mode. This design enables users to intuitively understand the current working mode of each cup assembly, avoiding confusion when switching between multiple modes, and improving the convenience of operation and the practicality of the device. Users can easily select and switch different working modes according to their dietary needs, meeting individual cooking needs.

[0066] In a specific embodiment, the second display area 14 adopts a high-contrast LED screen, which can clearly display information in strong light, has low power consumption and bright colors. The central position of the screen layout is designed with five mode icons corresponding to soy milk, millet milk, nutrition paste, soft porridge and thick soup modes. When the user selects a mode through the touch area, the corresponding icon will be highlighted to confirm the user's selection. During the operation of the device, the second display area 14 will dynamically display the current working mode of each cup body in a scrolling or split-screen display manner. For example, when the left cup body is running in soy milk mode, the left part of the screen will display "soy milk mode" and its related parameters such as heating temperature and stirring time; if the right cup body is in the millet milk mode, the right part of the screen will display the corresponding mode and parameters.

[0067] Optionally, in combination with the built-in recipe database of the food processor, the second display area 14 can recommend recipes related to the current mode, or recommend appropriate first working modes after the user inputs the type of food ingredients, increasing the interactivity and practicality of the device.

[0068] Specifically, if the user needs to switch from one mode to another, the second display area 14 can display prompt information during the switching process, such as "Please stop the current mode first, then select a new mode", to ensure the safety and order of the operation.

[0069] Further, the control panel 10 is provided with a third display area 15 located below the second display area 14, and the third display area 15 is used to display the second working mode of each cup body assembly 1, wherein the second working mode includes at least one of the reservation mode, the keep-warm mode and the cleaning mode. This design provides users with a more intelligent and user-friendly user experience. The reservation mode allows users to set the cooking time in advance, the keep-warm mode ensures the temperature of the food ingredients, and the cleaning mode facilitates the cleaning and maintenance of the device. Users can flexibly use these modes according to their own time arrangement and cooking needs, improving the quality of life and efficiency.

[0070] Specifically, the reservation mode allows the user to set the time when the device starts, so that the food processor automatically starts making food at the time set by the user. This is achieved through the internal timer and controller of the device. When the user selects the reservation mode and sets the time on the control panel through the touch control, the controller of the device will record the start time input by the user, and automatically activate the preset food making program when reaching this time point. For example, the user can set the reservation mode before going to bed, put the required food ingredients into the cup body in advance, set the first working mode to soy milk mode, and set the device to automatically start making soy milk at 6 am in the morning. In this way, the user can enjoy freshly cooked soy milk when getting up without additional waiting.

[0071] The keep-warm mode aims to automatically maintain the food at a suitable temperature for consumption after the food preparation is completed, to ensure that the food can still maintain the best taste and nutrition within a certain period of time. The key to realizing the keep-warm mode is the temperature sensor and heating element in the device. When the food preparation is completed, the temperature sensor detects that the food temperature drops below the preset keep-warm temperature, and sends a signal to the controller, which starts the heating element to continuously heat at low power to maintain the food temperature. For example, after the soy milk preparation is completed, the keep-warm mode can maintain the soy milk temperature at about 60°C, and the user can enjoy the warm soy milk within the next few hours.

[0072] The cleaning mode can simplify the cleaning process of the food processor or soy milk machine, reduce the user's manual operation, and improve the hygiene standard of the device. The cleaning mode usually combines the heating and stirring functions of the device, that is, by heating and high-speed stirring of cleaning liquid or water, the mechanical action and thermal action of the water flow are used to remove the residual food materials and stains on the cup body and stirring part. The user only needs to add an appropriate amount of clean water or cleaning liquid in the cup body, and then selects the cleaning mode through touch control. The controller of the device will automatically control the heating element to heat to an appropriate cleaning temperature, and drive the motor to rotate the stirring part at a specific speed to perform a cleaning process for a certain period of time.

[0073] Further, the control panel 10 is provided with a switch button 12, which is located below the third display area 15. The switch button 12 is used to control the opening and closing of each cup assembly 1. The switch button 12 is used to control the opening and closing of each cup assembly 1. This design simplifies the switching operation of the device, and the user can control the switching of all cup assemblies through one button, improving the convenience of operation and the use efficiency of the device. Especially when processing multiple food materials or performing batch cooking, this design can significantly save operation time and improve work efficiency.

[0074] Specifically, the cup assembly 1 of at least one cup assembly 1 is multiple, and the multiple cup assemblies 1 include at least one of a powder grinding cup body, a soy milk cup body, a breaking cup body, and a meat grinding cup body. This design enables a food processor to perform multiple food processing functions. Each different cup body has its special working mode, such as soy milk mode, powder grinding mode, breaking mode, and meat grinding mode, and the user can replace or use different cup bodies simultaneously according to different food materials and needs.

[0075] Optionally, each cup body can be replaced independently of the cup assembly 1, which means that the user can freely select and replace the most suitable cup body according to the current food material and preparation needs, ensuring that different cup bodies can be quickly and seamlessly replaced, and the device adopts a standardized interface design.

[0076] Specifically, the cup bodies of each cup body assembly 1 are identically arranged. The cup bodies of each cup body assembly 1, although functionally different, such as soybean milk cup body, grinding cup body, breaking cup body and mincing cup body, maintain high consistency and standardization in structural design, size, mounting interface and interaction mode with the food processor. The cup bodies of each cup body assembly 1 are of the same size, which ensures that they can be fitted to the same base of the device, without the need to design additional mounting positions or sizes for different cup bodies, simplifying the device structure and reducing production costs.

[0077] It needs to be further explained that the food processor further comprises a handle 8 and a power interface.

[0078] As shown in Figure 1 The handle 8 is connected with the cup body assembly 1 and arranged on one side of the cup body assembly 1. The handle 8 is designed in a U-shaped shape and is anti-slip designed, so that the user can easily pick up or move the cup body assembly. Especially when it is necessary to reinstall the device or clean it after use, the handle 8 provides a stable gripping point, enhancing the convenience and safety of operation. During use, the handle 8 can avoid the user directly contacting high-temperature or live parts, especially after cooking, the handle 8 is designed to ensure that the user will not be scalded, improving the overall safety.

[0079] The power interface is arranged at the lower part of the food processor, which is the key point of connecting the food processor with the external power supply. It is responsible for providing the necessary electrical energy for the device, ensuring that the motor 7, control panel 10 and micro-pressure valve structure 5 can operate normally, meeting the cooking requirements. The power interface is waterproof designed, which can avoid electrical failure caused by liquid splashing.

[0080] According to another specific embodiment of the present application, a control method of a food processor is provided. The control method is used to control the food processor in the above embodiments. The control method comprises the following steps: receiving a control instruction, the control instruction being used to control the cup body assembly 1 to be in a target working mode; determining the number of cup body assemblies 1 to be started in response to the control instruction; and controlling the corresponding number of cup body assemblies 1 to be in the target working mode based on the determined number of cup body assemblies 1 to be started. Through the above control method, one cup body assembly 1 can be controlled to work alone, and multiple cup body assemblies 1 can be controlled to work simultaneously.

[0081] Further, based on determining the number of cup body assemblies 1 to be started, the corresponding number of cup body assemblies 1 is controlled to be in the target working mode, including: in the case of determining the number of cup body assemblies 1 to be started, the working mode to be executed by each cup body assembly 1 is obtained, wherein the working modes of each cup body assembly 1 can be the same or different; based on the working mode to be executed by each cup body assembly 1, the corresponding cup body assembly 1 is controlled to execute the target working mode. This control mode allows the user to flexibly select and control the working mode of each cup body assembly according to different food preparation requirements, improving the multifunctionality and convenience of the device.

[0082] In a specific embodiment, assuming that the user needs to make soy milk and freshly squeezed juice at the same time when preparing breakfast at home, the user first installs the soy milk cup body and the breaking cup body on the food processor. Then, the user selects the "soy milk mode" and the "juice mode" through the first working mode on the touch panel. After receiving this control instruction, the control panel of the device starts two cup body assemblies, adjusts the control parameters of the circuit board, sets one cup body assembly to the soy milk mode and the other cup body assembly to the juice mode, and the device starts the two cup body assemblies at the same time to work according to the target mode. In the first display area of the control panel, the device displays the preparation progress of the soy milk and the juice, including the heating temperature and the time. The user can monitor the preparation state of the two in real time through this display area to ensure the quality and safety of the food. Once the soy milk and the juice are prepared, the device will automatically stop heating and stirring and enter the holding mode to maintain the food temperature until the user takes it. After the work is completed, the user can also start the automatic cleaning process of the double cup body through the "cleaning mode" button on the touch panel, and the cleaning function of the device will effectively clean the soy milk and the juice according to their characteristics to ensure the hygiene of the cup body.

[0083] Further, the device alternately controls each cup body assembly 1 to execute the target working mode. The user selects the required working mode and the number of cup body assemblies to be started through the control panel, and the device controls the cup body assemblies to alternately execute the target working mode according to the instruction to ensure that each cup body assembly can complete the food preparation task in the best state. This alternating control mode can effectively avoid excessive load of the device when processing multiple food materials at the same time, intelligently adjust the power output, avoid unnecessary energy waste, and improve the stability and service life of the device.

[0084] From the above description, it can be seen that the embodiments of the device achieve the following technical effects:

[0085] The technical scheme is characterized by comprising the following steps: a plurality of independent cup body assemblies are arranged, and the cup body assemblies are arranged in the mounting cavities of the base. The cooking machine provides an intuitive operation interface for the user through the touch area and the display area on the control panel, and can quickly set the working mode, monitor the heating temperature, the stirring time and the equipment state. The innovative control method allows the equipment to start the plurality of cup body assemblies simultaneously or alternately, and effectively improves the working efficiency and reduces the noise by combining the micro-pressure steel ball and other mute technologies. The cooking machine not only enriches the equipment functions, improves the food processing efficiency and comfort, but also provides a highly personalized operation experience for the user, and further improves the convenience and intelligent level of use.

[0086] For the convenience of description, spatial relative terms such as "above", "upper", "upper surface", "upper" and the like can be used herein to describe the spatial positional relationship of one device or feature with other devices or features as shown in the drawings. It should be understood that the spatial relative terms are intended to include different orientations in use or operation in addition to the orientation of the device described in the drawings. For example, if the device in the drawing is inverted, the device described as "above" or "above" other devices or structures will be positioned "below" or "below" other devices or structures. Thus, the example term "above" can include both "above" and "below". The device can also be positioned in other different ways, and the spatial relative description used herein is interpreted accordingly.

[0087] In addition to the above, it should be noted that "one embodiment", "another embodiment", "embodiment" and the like mentioned in the specification refer to specific features, structures or characteristics described in conjunction with the embodiment, which are included in at least one embodiment described in the general description of the application. The same description appears in several places in the specification does not necessarily refer to the same embodiment. Further, when a specific feature, structure or characteristic is described in conjunction with any embodiment, it is claimed that the implementation of such feature, structure or characteristic in conjunction with other embodiments also falls within the scope of the present application.

[0088] In the above embodiments, the description of each embodiment has its own emphasis, and the parts not described in detail in a certain embodiment can be referred to the related description of other embodiments.

[0089] 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 changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A food processor, characterized in that, The application relates to a food processor. The food processor comprises: a plurality of cup assemblies (1) each having a cooking cavity, each cup assembly (1) being independently provided with an upper cover (2), a cup body and a lower shell (9); 2. The food processor of claim 1, wherein, a base (6) provided with a plurality of mounting cavities, each mounting cavity being provided with one cup assembly (1), wherein each cup assembly (1) is detachably mounted in the mounting cavity through the lower shell (9). The food processor further comprises:

3. The food processor of claim 2, wherein, a control panel (10) provided on one side of the base (6), the control panel (10) being connected with the base (6), the control panel (10) being provided with a touch area, and the working state of each cup assembly (1) being controlled by operating the touch area.

4. The food processor according to claim 2 or 3, characterized in that, The touch area comprises a first touch area (11) provided in one-to-one correspondence with the cup assemblies (1), and the first touch area (11) provided in correspondence with each cup assembly (1) is located on one side of the cup assembly (1), and the first touch area (11) is used for controlling the independent working of the corresponding cup assembly (1).

5. The food processor of claim 3, wherein, The touch area comprises a second touch area located on the same side of the plurality of cup assemblies (1), and the second touch area is used for controlling the simultaneous working of the plurality of cup assemblies (1).

6. The food processor of claim 5, wherein, The control panel (10) is provided with a first display area (13) provided in one-to-one correspondence with the cup assemblies (1), and the first display area (13) provided in correspondence with each cup assembly (1) is located above the first touch area (11), and the first display area (13) is used for displaying at least one of the working time and the working temperature of each cup assembly (1).

7. The food processor of claim 6, wherein, The control panel (10) is provided with a second display area (14) located between two adjacent cup assemblies (1), and the second display area (14) is used for displaying a first working mode of each cup assembly (1), wherein the first working mode comprises at least one of a soybean milk mode, a five-grain milk mode, a nutrition paste mode, a soft porridge mode and a thick soup mode.

8. The food processor of claim 7, wherein, The control panel (10) is provided with a third display area (15) located below the second display area (14), and the third display area (15) is used for displaying a second working mode of each cup assembly (1), wherein the second working mode comprises at least one of a pre-setting mode, a heat preservation mode and a cleaning mode. The control panel (10) is provided with a switch button (12) located below the third display area (15), and the switch button (12) is used for controlling the opening and closing of each cup assembly (1).

9. The food processor of claim 1, wherein, The cup body of at least one cup body assembly (1) is multiple, and the multiple cup bodies include at least one of a grinding cup body, a soybean milk cup body, a wall-breaking cup body and a meat mincing cup body.

10. The food processor according to claim 1 or 9, characterized in that, The cup body of each cup body assembly (1) is the same.