Cleaning device of full-automatic cooking utensil and full-automatic cooking utensil

By using a cleaning component in fully automatic cooking appliances that connects the suction unit to the food outlet, the system uses airflow to separate the attached substances from the food to be cooked, solving the problem of water accumulation caused by washing and achieving a simple and effective cleaning result.

CN223489547UActive Publication Date: 2025-10-31CHUNMI TECHNOLOGY (SHANGHAI) CO LTD
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Patent Information

Application Number
CN202423017395.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2025-10-31
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

Existing fully automatic cooking appliances use water washing for cleaning, which makes it difficult to drain the water, affecting the lifespan of the appliance and potentially leading to waste of food to be cooked.

Method used

A cleaning component that connects the suction component to the outlet uses airflow to separate the attached material from the food to be cooked, avoiding the need for washing. The attached material is then sucked into the suction component.

Benefits of technology

It effectively separates adhering substances from the food to be cooked, avoiding water accumulation problems, reducing the risk to the appliance's lifespan, and minimizing waste of food to be cooked.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a full-automatic cooking utensil cleaning device which comprises a cleaning assembly and an air suction assembly, the cleaning assembly comprises a cleaning bin and a discharging port which is located on one side of the cleaning bin and communicated with the cleaning bin, the air suction assembly is communicated with the discharging port, and the air suction assembly is used for sucking attachments into the air suction assembly. According to the cleaning device of the full-automatic cooking utensil, when the cleaning device cleans attachments attached to the to-be-cooked materials and the to-be-cooked materials fall into the cleaning bin, the air suction assembly sucks the attachments in the to-be-cooked materials and moves towards the discharging port, the to-be-cooked materials fall down according to the gravity of the to-be-cooked materials, and the to-be-cooked materials fall into the cleaning bin. The attachments are sucked away by the air suction assembly due to light weight, so that the attachments are separated from the to-be-cooked materials, the to-be-cooked materials do not need to be in contact with water through the cleaning device, the mode of cleaning the attachments in the to-be-cooked materials is simple, and use is more convenient.
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Description

Technical Field

[0001] This utility model relates to the field of kitchen utensils, and in particular to a cleaning device for a fully automatic cooking appliance and a fully automatic cooking appliance. Background Technology

[0002] As the pace of life accelerates in cities, more and more people want to spend more time on work or leisure rather than on housework. Therefore, people are demanding higher levels of automation in home appliances, especially rice cookers, which are the most common household appliance, as their intelligence and automation can greatly improve user convenience.

[0003] Currently, most rice-based cooking ingredients available to consumers in the market, such as rice, have already undergone thorough processing and cleaning. Before cooking, consumers mainly need to remove any remaining impurities, primarily dust. Existing fully automatic cooking appliances use water washing to clean the ingredients, mixing them with water. While this process can separate impurities from the ingredients, the resulting water is difficult to drain, leading to complex structures and potentially shortening the appliance's lifespan due to water accumulation.

[0004] Therefore, there is a need to provide a fully automatic cleaning device for cooking appliances to solve the above-mentioned technical problems. Utility Model Content

[0005] This invention provides a cleaning device for fully automatic cooking appliances, solving the problem that existing cleaning devices for fully automatic cooking appliances use water washing methods and the water is difficult to drain.

[0006] To solve the above-mentioned technical problems, the technical solution of this utility model is as follows: a cleaning device for a fully automatic cooking appliance, including a cleaning component and a suction component. The cleaning component includes a cleaning chamber and a discharge port located on one side of the cleaning chamber and communicating with the cleaning chamber. The suction component is communicating with the discharge port and is used to suck the attached material into the suction component.

[0007] In some optional embodiments of this utility model, a partition is further provided between the suction assembly and the discharge port, and the partition is provided with a plurality of first through holes for the attachment material to enter.

[0008] In some optional embodiments of this invention, the size of the first through hole is smaller than the size of the material to be cooked.

[0009] In some optional embodiments of this utility model, the air intake of the air intake assembly is located on the upper side opposite to the connection position between the discharge port and the cleaning chamber.

[0010] In some optional embodiments of this utility model, the cleaning chamber is provided with multiple air inlets, the size of which is smaller than the size of the material to be cooked.

[0011] In some optional embodiments of this invention, the multiple air inlets are arranged in an array.

[0012] In some optional embodiments of this utility model, the bottom of the cleaning chamber is inclined, and the end of the bottom of the cleaning chamber near the discharge port is lower than the other end of the bottom of the cleaning chamber.

[0013] In some optional embodiments of this utility model, a cover is provided on the top of the discharge port, and a connecting pipe connected to the suction assembly is provided on the side wall of the discharge port.

[0014] In some optional embodiments of this utility model, the suction assembly includes a suction pipe connected to the connecting pipe and a blower connected to the suction pipe. The material to be cooked in the cleaning chamber moves toward the discharge port under the action of gravity, and the blower sucks the attached material into the suction pipe.

[0015] In some optional embodiments of this utility model, the cleaning component further includes a fixed base, the cleaning chamber and the discharge port are both located inside the fixed base, and the suction component is connected to the fixed base.

[0016] This utility model also provides a fully automatic cooking appliance, including a storage bin assembly, a feeding assembly, a pot body assembly, and a cleaning device. The feeding bin assembly feeds the material into the cleaning device, and after being cleaned by the cleaning device, the material to be cooked in the feeding assembly flows into the pot body assembly.

[0017] Compared with the prior art, the advantages of this utility model are as follows: When cleaning the attachments on the food to be cooked, the cleaning device of this utility model activates the suction component. When the food to be cooked and the attachments fall into the cleaning chamber, the attachments are sucked away by the suction component because they are lighter, while the food to be cooked is discharged through the outlet, thus separating the attachments from the food to be cooked. The cleaning device does not require the food to be cooked to come into contact with water, effectively avoiding the problem of drainage after washing. The cleaning device has a simple structure and can effectively separate the attachments. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the embodiments are briefly introduced below. The drawings described below are only the corresponding drawings of some embodiments of this utility model.

[0019] Figure 1 This is a perspective view of the cleaning device for the fully automatic cooking appliance of this utility model.

[0020] Figure 2 This is a perspective view of the cleaning component of the cleaning device for the fully automatic cooking appliance of this utility model.

[0021] Figure 3 for Figure 2 A sectional view taken along the cutting line AA.

[0022] Figure 4 This is a side view of the mounting base of the cleaning device for the fully automatic cooking appliance of this utility model.

[0023] Figure 5 This is a top view of the fully automatic cooking appliance of this utility model.

[0024] Figure 6 for Figure 5 A sectional view made along the cutting line BB.

[0025] 11. Cleaning component; 12. Suction component; 13. Storage bin component; 14. Cleaning device; 15. Discharge component; 16. Pot body component; 111. Fixing base; 112. Cleaning bin; 114. Air inlet; 115. Connecting pipe; 116. Limiting frame; 117. Discharge port; 118. Partition plate; 1181. First through hole; 121. Exhaust fan; 122. Suction pipe. Detailed Implementation

[0026] To make the objectives, technical solutions, and advantages of the embodiments of this disclosure clearer, the technical solutions of the embodiments of this disclosure will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this disclosure. All other embodiments obtained by those skilled in the art based on the described embodiments of this disclosure without creative effort are within the scope of protection of this disclosure.

[0027] Unless otherwise defined, the technical or scientific terms used herein shall have the ordinary meaning as understood by one of ordinary skill in the art to which this disclosure pertains.

[0028] The terms "first," "second," and similar words used in this patent application specification and claims do not indicate any order, quantity, or importance, but are merely used to distinguish different components. The terms "comprising" or "including," and similar words, mean that the elements or objects preceding "comprising" or "including" encompass the elements or objects listed following "comprising" or "including," and do not exclude other elements or objects. The terms "connected" or "linked," and similar words, are not limited to physical or mechanical connections, but can include electrical connections, whether direct or indirect. "Above," "below," "left," "right," etc., are used only to indicate relative positional relationships; when the absolute position of the described object changes, the relative positional relationship may also change accordingly.

[0029] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0030] The following is a preferred embodiment of a cleaning device for fully automatic cooking appliances provided by this utility model, which can solve the above-mentioned technical problems.

[0031] Please refer to Figure 1 , Figure 2 and Figure 3 ,in Figure 1 This is a perspective view of the cleaning device for the fully automatic cooking appliance of this utility model. Figure 2 This is a perspective view of the cleaning component of the cleaning device for the fully automatic cooking appliance of this utility model. Figure 3 for Figure 2 A sectional view taken along the cutting line AA.

[0032] In the diagram, units with similar structures are represented by the same labels.

[0033] The terms "first" and "second" in this utility model are used for descriptive purposes only and should not be construed as indicating or implying relative importance, nor as a restriction on the order of events.

[0034] In a first aspect, this utility model provides a cleaning device 14 for a fully automatic cooking appliance, comprising a cleaning component 11 and a suction component 12. The cleaning component 11 includes a cleaning chamber 112 and a discharge port 117 located on one side of the cleaning chamber 112 and communicating with the cleaning chamber 112. The suction component 12 communicates with the discharge port 117 and is used to suck up the attached material into the suction component 12.

[0035] The cleaning chamber 112 is the place where the food to be cooked is separated from the attached substances. When the food to be cooked enters the cleaning component 11, the suction component 12 draws air into the cleaning chamber 112 through the discharge port 117. The air forms an airflow that separates the attached substances mixed in with the food to be cooked from the food. The suction component 12 sucks away the attached substances, thereby cleaning the food to be cooked. The discharge port 117 of the cleaning device 14 is used to discharge the food to be cooked and the attached substances. When the food to be cooked and the attached substances flow to the discharge port 117 respectively, the attached substances are sucked in by the suction component 12, thereby separating the attached substances from the food to be cooked, while the food to be cooked enters the next cooking process through the discharge port 117.

[0036] In this invention, the material to be cooked may include rice, millet, etc.; the adhering substances may include dust, rice bran, and broken rice, etc. The weight of the adhering substances is less than the weight of the material to be cooked. In this invention, wind power is used to separate the material to be cooked from the adhering substances. This utilizes the weight difference between the material to be cooked and the adhering substances; for example, the weight of dust is much smaller than the weight of the material to be cooked, and the corresponding wind force is sufficient to suck out the adhering substances but not the material to be cooked.

[0037] When the cleaning device 14 cleans the food to be cooked, the suction component 12 separates the adhering substances in the food from the food. When the food and adhering substances enter the discharge port 117, due to the weight of the food itself, the suction component 12 cannot move the food. The food descends into the next working process of the fully automatic cooking appliance. Because the adhering substances are relatively light, the suction component 12 can move the adhering substances towards the suction component 12 when suctioning, thus separating the adhering substances from the food. The adhering substances are then sucked away by the suction component 12. The cleaning device 14 of this utility model does not require the food to be cooked to come into contact with water, effectively avoiding the problem of water accumulation after washing. It has a simple structure and reduces the risk of reduced device life due to water accumulation. It also avoids the problem of water carrying away the food during the washing of the food and adhering substances, thus avoiding the waste of the food.

[0038] In one embodiment of the first aspect of this utility model, please refer to [reference needed]. Figure 4A partition 118 is also provided between the suction assembly 12 and the discharge port 117. The partition 118 is provided with a plurality of first through holes 1181 for the attachment to enter. The partition 118 is located between the discharge port 117 and the suction assembly 12. The partition 118 is used to block the material to be cooked from entering the suction assembly 12. The first through holes 1181 on the partition 118 are used to facilitate the passage of the attachment.

[0039] The baffle 118 is preferably disposed at the connection position between the suction assembly 12 and the discharge port 117, or it can be disposed inside the pipe of the corresponding suction assembly 12.

[0040] Furthermore, the size of the first through hole 1181 is smaller than the size of the material to be cooked, preventing the material from passing through the first through hole 1181. When the suction assembly 12 separates the material to be cooked from the attached material, both move towards the discharge port 117. When both the material to be cooked and the attached material are located towards the discharge port 117, the material to be cooked falls due to its own gravity, while the attached material is sucked away by the suction assembly 12. If the material to be cooked is accidentally sucked away by the suction assembly 12, the size of the first through hole 1181, being smaller than the size of the material to be cooked, prevents the material from passing through the first through hole 1181, effectively preventing the material to be cooked from being sucked away by the suction assembly 12. When the suction assembly 12 stops suctioning, the material to be cooked, falling due to its own gravity, will also move towards the discharge port 117, thus effectively avoiding the waste of the material to be cooked.

[0041] In other embodiments, the partition 118 may not have a through hole 1181. In this case, the partition 118 should have a gap with the air inlet of the suction assembly 12 to allow the attachment to pass through.

[0042] In one embodiment of the first aspect of this utility model, the air intake of the suction assembly 12 is located on the upper side opposite to the connection position between the discharge port 117 and the cleaning chamber 112. The position of the air intake of the suction assembly 12 is higher than the position of the cleaning chamber 112, so as to prevent the material to be cooked from entering the suction assembly 12.

[0043] When the suction component 12 is positioned opposite the cleaning chamber 112, the suction component 12 will draw in more food to be cooked. If the suction component 12 is positioned lower than the cleaning chamber 112, the food to be cooked will move toward the suction component 12 due to inertia during its descent. When the suction component 12 is drawing in air, it may block the first through hole 1181 of the partition 118, resulting in the food being unable to pass through the first through hole 1181. The optimal position is when the suction component 12 is positioned higher than the cleaning chamber 112 to prevent the food to be cooked from moving toward the suction component 12.

[0044] In this invention, the cleaning chamber 112 is provided with multiple air inlets 114. The size of each air inlet 114 is smaller than the size of the material to be cooked. On the one hand, the air inlets 114 provide air for the suction assembly 12 when it is suctioning. On the other hand, when the suction assembly 12 is suctioning, the air inlets 114 provide air to the suction assembly 12, and the suction assembly 12 forms an airflow that moves in the direction of the suction assembly 12. This also prevents the material to be cooked or any adhering substances from sticking to the bottom of the cleaning chamber 112, so that the suction assembly 12 can empty the material to be cooked and any adhering substances from the cleaning chamber 112 when it is suctioning, thus avoiding the problem of material to be cooked remaining in the cleaning chamber 112.

[0045] Preferably, the multiple air inlets 114 are arranged in an array. This array arrangement saves space in the cleaning chamber 112, allowing for more air inlets to be placed within the chamber, thus effectively utilizing its space. When the suction assembly 12 is positioned at the air inlet, it allows more air to enter the cleaning chamber 112, further reducing the likelihood of food particles adhering to it. Simultaneously, the multiple air inlets 114 effectively prevent blockage by deposits, ensuring stable air intake from the air inlets within the cleaning chamber 112. In other embodiments, the air inlets 114 may be circumferentially distributed or irregularly distributed.

[0046] In one embodiment of the first aspect of this utility model, the bottom of the cleaning chamber 112 is inclined, with one end of the bottom of the cleaning chamber 112 near the discharge port 117 being lower than the other end of the bottom of the cleaning chamber 112. The inclined arrangement of the cleaning chamber 112 facilitates the sliding of the material to be cooked towards the discharge port 117 by its own gravity after entering the cleaning chamber 112, thus accelerating the sliding speed of the material. On the one hand, it accelerates the sliding speed of the material to be cooked; on the other hand, when the suction component 12 is performing suction, it can move the material to be cooked towards the discharge port 117 more quickly and efficiently. In this embodiment, the movement of the material to be cooked is achieved by the combined action of its gravity and the suction component 12. In other embodiments, the cleaning chamber 112 can be configured with other shapes, and the movement of the material to be cooked in the cleaning chamber 112 is achieved solely by the suction component 12. In this case, the airflow provided by the suction component 12 should be sufficient to move the material to be cooked to the discharge port without it being sucked into the suction component.

[0047] Furthermore, in one embodiment of this utility model, the opening of the cleaning chamber 112 is provided with a limiting frame 116. The limiting frame 116 is used to connect with the cooking appliance. On the one hand, it is used to prevent the food to be cooked from falling into the cleaning chamber 112 inaccurately during the movement of the food to be cooked into the cleaning chamber 112, and to prevent the food to be cooked from falling outside the cleaning chamber 112. This avoids the food to be cooked making abnormal noises inside the cooking appliance during operation or handling. On the other hand, the limiting frame 116 is used to increase the height of the fixing base 111. When the food to be cooked is descending, it falls accurately into the cleaning chamber 112 according to its own weight and inertia. This effectively prevents the food to be cooked from being sucked away by the suction component 12 towards the discharge port 117 during the descent. When the food to be cooked falls into the cleaning chamber 112, it can effectively accelerate the separation of the adhering substances on the food to be cooked from the food, thereby further accelerating the efficiency of removing adhering substances.

[0048] In one embodiment of the first aspect of this utility model, the top of the discharge port 117 is provided with a cap, and a connecting pipe 115 connected to the suction assembly 12 is provided on the side wall of the discharge port 117. The cap is used to close the top of the discharge port 117. On the one hand, it is used to prevent air from entering the discharge port 117 from the top, thus preventing the suction assembly 12 from being unable to enter the cleaning chamber 112 when suctioning, and avoiding the problem that the suction assembly 12 cannot clean the attachments on the food to be cooked. On the other hand, the connecting pipe 115 is used to facilitate the connection of the suction assembly 12 to the connecting pipe 115. At the same time, due to the function of the connecting pipe 15, it is convenient to set the partition 118, which can effectively prevent the partition 118 from separating from the connecting pipe.

[0049] In this utility model, the cleaning component 11 further includes a fixing base 111. The cleaning chamber 112 and the discharge port 117 are both located within the fixing base 111. On one hand, the fixing base 111 is used to install the cleaning chamber 112 and to provide the discharge port 117 within the fixing base 111. After cleaning, the material to be cooked in the cleaning chamber 112 is discharged from the discharge port 117. On the other hand, the fixing base 111 is used to install in a fully automatic cooking appliance, making it easy to fix the cleaning chamber 112 within the fully automatic cooking appliance.

[0050] In one embodiment of the first aspect of this utility model, the connecting pipe 115, the partition 118, and the fixing seat 111 are integrally formed to enhance the rigidity of the partition 118, the connecting pipe 115, and the fixing seat 111, and to prevent the connecting pipe 115 and the partition 118 from separating from the fixing seat 111.

[0051] In this invention, the suction assembly 12 includes a suction pipe 122 connected to the connecting pipe 115 and a blower 121 connected to the suction pipe 122. The blower 121 draws in the attached material from the air inlet 114 and carries it away from the cleaning chamber 112 through the outlet 117 and the suction pipe 122. The suction pipe 122 is connected to the connecting pipe 115, and the blower 121 is connected to the suction pipe 122. When the suction assembly 12 draws in air from the cleaning chamber 112 through the suction pipe 122, the air in the cleaning chamber 112 forms an airflow that enters the connecting pipe 115 through the outlet 117, thus facilitating the blower 121 to carry the attached material away from the fixed base 111 without the need for manual cleaning, making it more convenient to use.

[0052] The second aspect of this utility model also provides a fully automatic cooking appliance, please refer to... Figure 5 and Figure 6 The appliance includes a storage bin assembly 13, a feeding assembly 15, a pot assembly 16, and a cleaning device 14. The storage bin assembly 13 feeds the food into the cleaning device 14. After being cleaned by the cleaning device 14, the food to be cooked in the feeding assembly 15 flows into the pot assembly 16. The storage bin assembly 13 is used to hold the food to be cooked, eliminating the need to add food each time it is used. The feeding assembly 15 feeds the cleaned food to be cooked into the pot assembly 16. The pot assembly 16 is used to cook the food, thus forming a complete cooking utensil. During use, the user does not need to perform many operations to cook the food. After the food is cooked, the pot assembly 16 can be removed for consumption. The operation is simple and convenient.

[0053] The aforementioned fully automatic cooking appliance can be a fully automatic rice cooker, a fully automatic electric pressure cooker, or a corresponding cooking robot, etc.

[0054] To better illustrate the first and second aspects of the technical solutions of this utility model, an exemplary embodiment of each aspect is provided below:

[0055] <Example 1>

[0056] Combination Figure 1-4 Embodiment 1 of this utility model provides a cleaning device 14 for a fully automatic cooking appliance, which includes a cleaning component 11 and a suction component 12. The cleaning component 11 includes a fixed base 111, a cleaning chamber 112 connected to the fixed base 111, a discharge port 117 located on one side of the cleaning chamber 112 and communicating with the cleaning chamber 112, and a connecting pipe 115 disposed at the upper end opposite to the connection position between the discharge port 117 and the cleaning chamber 112. A partition 118 is also provided between the connecting pipe 115 and the discharge port 117. The partition 118 contains a... The cleaning chamber 112 has multiple first through holes 1181, the size of which is smaller than the size of the material to be cooked. The cleaning chamber 112 has multiple air inlets 114 for the suction assembly 12 to draw air in. The multiple air inlets 114 are arranged in an array. The opening of the cleaning chamber 112 is provided with a limit frame 116. One end of the cleaning chamber 112 near the discharge port 117 is lower than the other end of the cleaning chamber 112. The suction assembly 12 includes a suction pipe 122 connected to the connecting pipe 115 and a fan 121 connected to the suction pipe 122.

[0057] When separating the residue from the food being cooked, firstly, the suction assembly 12 is activated, the exhaust fan 121 is started and draws air in. Air enters from the air inlet 114 of the cleaning chamber 112, passes through the discharge port 117 and through the partition 118 into the connecting pipe 115. The air in the connecting pipe 115 passes through the suction pipe 122 and is drawn out from the exhaust fan 121.

[0058] Furthermore, the material to be cooked enters the cleaning chamber 112 and slides towards the discharge port 117. During the sliding process, since the adhering substances on the material are relatively light, the exhaust fan 121 moves the adhering substances towards the discharge port 117. As the material passes through the discharge port 117, it falls downwards due to its own gravity, while the adhering substances are separated from the material by passing through the first through hole 1181 with the airflow from the exhaust fan 121. This separation of adhering substances from the material eliminates the need for the material to come into contact with water, effectively preventing water from washing away the material and adhering substances, thus avoiding waste of the material and saving food.

[0059] <Example 2>

[0060] Further integration Figure 5 and 6 Embodiment 2 of this utility model provides a fully automatic rice cooker. Based on Embodiment 1, it further includes a storage bin assembly 13, a feeding assembly 15, a pot body assembly 16, and the cleaning device 14. The storage bin assembly 13 feeds the material into the cleaning device 14. After being cleaned by the cleaning device 14, the material to be cooked in the feeding assembly 15 flows into the pot body assembly 16.

[0061] Specifically, the food to be cooked is placed in the storage bin assembly 13. When cooking, the food to be cooked falls from the storage bin assembly 13 to the cleaning device 14. After the cleaning device 14 separates the food to be cooked from the attached substances, the food to be cooked falls from the discharge port 117 of the cleaning device 14 to the feeding assembly 15. The food to be cooked in the feeding assembly 15 is weighed and fed to the set weight into the pot assembly 16. The pot assembly 16 cooks the food to be cooked without much human intervention. After the food to be cooked is finished, the pot assembly 16 can be removed and the food can be served.

[0062] In summary, although the present invention has been disclosed above with reference to preferred embodiments, the above preferred embodiments are not intended to limit the present invention. Those skilled in the art can make various modifications and refinements without departing from the spirit and scope of the present invention. Therefore, the scope of protection of the present invention shall be determined by the scope defined in the claims.

Claims

1. A cleaning device for fully automatic cooking appliances, characterized in that, It includes a cleaning component and a suction component. The cleaning component includes a cleaning chamber and a discharge port located on one side of the cleaning chamber and communicating with the cleaning chamber. The suction component is communicating with the discharge port and is used to suck the attached material into the suction component.

2. The cleaning device for fully automatic cooking appliances according to claim 1, characterized in that, A partition is also provided between the suction assembly and the discharge port, and the partition is provided with a plurality of first through holes for the attachment material to enter.

3. The cleaning device for fully automatic cooking appliances according to claim 2, characterized in that, The size of the first through hole is smaller than the size of the material to be cooked.

4. The cleaning device for fully automatic cooking appliances according to claim 2, characterized in that, The air intake of the air intake assembly is located on the upper side opposite to the connection position between the discharge port and the cleaning chamber.

5. The cleaning device for fully automatic cooking appliances according to claim 1, characterized in that, The cleaning chamber is equipped with multiple air inlets, the size of which is smaller than the size of the food to be cooked.

6. The cleaning device for fully automatic cooking appliances according to claim 5, characterized in that, The bottom of the cleaning chamber is inclined, and the end of the bottom of the cleaning chamber near the discharge port is lower than the other end of the bottom of the cleaning chamber.

7. The cleaning device for fully automatic cooking appliances according to claim 6, characterized in that, The top of the discharge port is provided with a cover, and the side wall of the discharge port is provided with a connecting pipe that is connected to the suction assembly.

8. The cleaning device for fully automatic cooking appliances according to claim 7, characterized in that, The suction assembly includes a suction pipe connected to the connecting pipe and a blower connected to the suction pipe. The food to be cooked in the cleaning chamber moves toward the discharge port under the action of gravity, and the blower sucks the attached material into the suction pipe.

9. The cleaning device for fully automatic cooking appliances according to claim 1, characterized in that, The cleaning assembly also includes a fixed base, the cleaning chamber and the discharge port are both located inside the fixed base, and the suction assembly is connected to the fixed base.

10. A fully automatic cooking appliance, characterized in that, The invention includes a storage bin assembly, a feeding assembly, a pot assembly, and a cleaning device as described in any one of claims 1-9. The material to be cooked in the feeding assembly is fed into the cleaning device and cleaned by the cleaning device before flowing into the pot assembly.