Embedded electric cooker and integrated cooker

By designing an embedded rice cooker, the space occupation problem caused by the integrated stove not being integrated with the rice cooker is solved, and the steam scalding risk is solved through intelligent control and automated driving components, achieving a safe and convenient kitchen experience.

CN223054263UActive Publication Date: 2025-07-04SHENZHEN XUANZHOU TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422033953.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-21
Publication Date
2025-07-04
Estimated Expiration
2034-08-21

AI Technical Summary

Technical Problem

The existing integrated stove does not integrate the rice cooker, which causes inconvenience in the kitchen space, and the direct discharge of the rice cooker steam poses a risk of scalding, affecting the hygiene and safety of the kitchen.

Method used

An embedded rice cooker is designed, including an embedded box, a pot cover assembly and an exhaust component. The pot cover assembly is installed on the box panel and side panel. The pot assembly is installed on the other side and is equipped with an exhaust passage and an exhaust fan. It is connected through magnetic suction parts. The control panel realizes intelligent control and the driving component is automatically opened and closed.

Benefits of technology

It realizes space saving in rice cookers, avoids the risk of steam scalding, improves the safety of use and operation convenience, and simplifies user operation procedures.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of integrated electric appliances, in particular to an embedded electric cooker suitable for an integrated cooker and the integrated cooker, the embedded electric cooker comprises an embedded box body, a cooker cover assembly, a cooker body assembly and an exhaust assembly, the embedded box body comprises a box body panel and a box body side plate, the exhaust assembly is communicated with the cooker cover assembly, the cooker body assembly comprises a cooking container and a heating module, and the heating module is communicated with the cooker cover assembly. The cooking container is provided with a container opening, the cooker cover assembly is installed on one of the box body panel and the box body side plate, and the cooker body assembly is installed on the other one of the box body panel and the box body side plate. According to the embedded electric rice cooker, the cooker cover assembly and the cooker body assembly are installed at different positions of the embedded box body respectively, so that a user can open the embedded electric rice cooker when opening the embedded box body, the opening step is simplified, the exhaust assembly communicated with the cooker cover assembly is further arranged in the embedded box body, and therefore the embedded electric rice cooker is more convenient to use. Steam generated in the cooking process can be exhausted to the preset position and channel through the exhaust assembly, and the potential safety hazard that a human body is scalded by the steam is avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of integrated circuits, in particular to an embedded rice cooker and an integrated stove. Background Art

[0002] An integrated stove is a kitchen appliance that integrates multiple functions such as a range hood, a gas stove, a disinfection cabinet, and a storage cabinet. In the industry, it is also called an environmental protection stove or an integrated environmental protection stove. It has the advantages of saving space, good fume extraction effect, energy saving, low consumption, and environmental protection. The integrated stove can effectively utilize the kitchen space, reduce the space occupation by integrating multiple functional appliances, and at the same time simplify the cleaning and maintenance work. However, most of the existing integrated stoves on the market do not have a rice cooker appliance with a cooking function. Most users who use integrated stoves are related to the factor of insufficient kitchen space. The rice cooker is not integrated in the integrated stove and will occupy a certain amount of kitchen space. There is still room for improvement in the case of insufficient kitchen space.

[0003] A rice cooker is an indispensable cooking device in a Chinese kitchen. An ordinary rice cooker is generally placed on a table or a countertop during cooking, sharing the countertop space with other ingredients and kitchen utensils on the countertop, which not only affects the use of the countertop but also is inconvenient for storage. In addition, the surface of the rice cooker is easily affected by the outside world, resulting in the accumulation of kitchen fumes and dust, affecting the use hygiene and increasing the cleaning workload.

[0004] In addition, the water vapor and steam generated during cooking are directly discharged from the inside of the rice cooker to the outside, which poses a certain risk of scalding to people moving nearby. Long-term use may cause stains or water droplets to adhere to the boards of nearby cabinets, the wall surface, and the kitchen wall surface, increasing the difficulty of kitchen cleaning.

[0005] In view of the above deficiencies, we need to develop an embedded rice cooker and an integrated stove to meet the usage requirements of the majority of users. Summary of the Utility Model

[0006] In view of the problems mentioned above, such as most of the existing integrated stoves not integrating a rice cooker, the rice cooker occupying kitchen space and causing inconvenience, and the direct discharge of steam from the rice cooker posing a risk of scalding to people nearby, the technical solution adopted by the utility model to solve its technical problems is as follows:

[0007] An embedded rice cooker includes an embedded box body, a pot cover assembly, a pot body assembly, and an exhaust assembly. The embedded box body includes a box body panel and a box body side plate. The exhaust assembly is installed on the side of the box body side plate away from the box body panel and communicates with the pot cover assembly. The pot body assembly includes a cooking container for containing rice and water and a heating module for heating the cooking container. The cooking container is provided with a container opening for the rice and water to enter.

[0008] The lid assembly is installed on either the cabinet panel or the cabinet side panel, and the pot body assembly is installed on the other of the cabinet panel and the cabinet side panel.

[0009] Further, the lid assembly includes a lid member for covering the opening of the container. The lid member is provided with an exhaust passage for communicating with the exhaust assembly. The exhaust passage communicates with the container opening through an air inlet. The exhaust assembly includes an exhaust duct and at least one exhaust fan. The exhaust duct communicates the exhaust fan and the outlet of the exhaust passage.

[0010] Further, at the peripheral edge of the cabinet panel for contacting the cabinet side panel, there is a magnetic member for strengthening the connection. On one side of the cabinet side panel for contacting the cabinet panel, there is a magnetic member for magnetically connecting with the magnetic member.

[0011] Further, the cabinet panel is provided with a control panel for facilitating the control of cooking. The control panel is electrically connected to the pot body assembly and the exhaust assembly respectively. The control panel includes a display screen for displaying cooking information and a plurality of switch buttons for driving functions. The switch buttons include a power button for connecting to an external power supply and a steaming button for controlling the heating module.

[0012] Further, the pot body assembly is also provided with a locking device for restricting the extraction of the cabinet panel. The locking device includes a retractable locking tongue and a retractor for driving the locking tongue. The control panel is electrically connected to the locking device. The switch buttons include a locking button for controlling the locking device.

[0013] Further, the pot body assembly also includes a pot body mounting base. The heating module is installed on the pot body mounting base. The pot body mounting base is installed with a weight sensor for measuring the feeding of rice and water. The weight sensor is electrically connected to the control panel.

[0014] Further, the upper side panel A of the embedded cabinet is the cabinet panel. The lid assembly is installed on the cabinet panel. The cabinet panel is hinged to the cabinet side panel through a hinge assembly.

[0015] Further, the front side panel B of the embedded cabinet is the cabinet panel. The lid assembly is installed on the cabinet side panel. The cabinet panel and the cabinet side panel are connected in a sliding and telescopic manner through a slide rail assembly. The pot body assembly is installed between the cabinet panel and the slide rail assembly.

[0016] Furthermore, the pot body assembly also includes a driving assembly for driving the pot body assembly to move, the driving assembly is electrically connected to the control panel, the driving assembly includes a driving device for providing power, a transmission mechanism for transmitting power and a fixing member for cooperating with the transmission mechanism, and the output end of the driving device drives the transmission mechanism to cooperate with the fixing member to operate, so that the pot body assembly can reciprocate along the length direction of the slide rail assembly.

[0017] Furthermore, the integrated stove includes a stove cabinet and the embedded rice cooker installed in the stove cabinet, and the stove cabinet is provided with a vent for the exhaust component to discharge steam.

[0018] The beneficial effects of the utility model are as follows:

[0019] 1. The embedded rice cooker of the utility model adopts a modular embedded box as an outer shell so as to be embedded in different integrated stove structures. By installing the cover assembly and the body assembly at different positions of the embedded box respectively, the user can open the embedded rice cooker at the same time when opening the embedded box, thereby simplifying the opening process and steps. The utility model also provides an exhaust assembly connected to the cover assembly inside the embedded box, so that the steam generated during the cooking process can be discharged to a preset position and channel through the exhaust assembly, thereby avoiding the safety hazard of scalding the human body caused by the steam.

[0020] 2. The embedded electric rice cooker of the utility model adopts an intelligently controlled control panel, which controls the various functions of the embedded electric rice cooker through multiple switch buttons integrated in the control panel, so that the user can realize multiple intelligent control modes such as one-key steaming, one-key keeping warm, one-key locking and one-key timing through the control panel, simplifying the steps for the user to operate the electric rice cooker, shortening the use time, and speeding up the user's cooking efficiency.

[0021] 3. The embedded electric rice cooker of the utility model can be opened by flipping the cover. The upper side plate A of the embedded box is set as a flip cover for the user to flip up and open. When the kitchen aisle space is limited, the flip cover can be opened to save the limited space of the aisle, so as to avoid the embedded electric rice cooker affecting the normal passage of people in the aisle. Under the condition of ensuring the normal function of the electric rice cooker, the user can enter the cooking container from the top of the embedded box to take out the hot rice, which is convenient for the user to use.

[0022] 4. The embedded electric rice cooker of the utility model can be opened by pulling out and closing. The side panel A of the embedded box body is set in a flip-up form for the user to flip up and open. When the space on the kitchen countertop or the integrated stove countertop is limited, pulling out and opening can save the countertop space and avoid the embedded electric rice cooker affecting the layout and use of the countertop. Under the condition that the function of the electric rice cooker is normal, the embedded electric rice cooker can be pulled out from the front of the embedded box body to take out the hot rice from the cooking container, which is convenient for the user to use.

[0023] 5. The built-in rice cooker of the present utility model uses a driving component to drive the pot body component to move along the length direction of the fixing member through a slide rail component, and the driving device drives the transmission mechanism to transmit on the fixing member and generate a thrust force to realize the automatic opening or closing of the built-in rice cooker, without manually pulling or pushing to open or close the cabinet panel, which is convenient for users to smoothly open the built-in rice cooker even when both hands are holding objects, facilitating user use. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 A perspective view of a built-in rice cooker and an integrated stove according to the present utility model.

[0025] Figure 2 A top view of a built-in rice cooker and an integrated stove according to the present utility model.

[0026] Figure 3 is Figure 2 the C-C sectional view of

[0027] Figure 4 is Figure 2 the D-D sectional view of

[0028] Figure 5 is Figure 4 the usage state diagram of

[0029] Figure 6 A perspective view of a built-in rice cooker and an integrated stove according to the present utility model.

[0030] Figure 7 A front view of a built-in rice cooker and an integrated stove according to the present utility model.

[0031] Figure 8 is Figure 7 the internal structure of Figure 1 .

[0032] Figure 9 is Figure 7 the E-E sectional view of

[0033] Figure 10 is Figure 9 the usage state of Figure 1 .

[0034] Figure 11 is Figure 9 the usage state of Figure 2 .

[0035] Figure 12 is Figure 7 the internal structure of Figure 2 .

[0036] Figure 13 For Figure 9 the usage state Figure 3 。

[0037] Figure 14 For Figure 9 the usage state Figure 4 。 Specific embodiments

[0038] The following will describe in detail the embodiments of the present utility model with reference to the accompanying drawings.

[0039] Embodiment 1: As shown in Figures 1 to 5 , an embedded rice cooker includes an embedded box body 100, a pot lid assembly 200, a pot body assembly 300, and an exhaust assembly 400. The embedded box body 100 includes a box body panel 11 and a box body side plate 12. The exhaust assembly 400 is installed on a side of the box body side plate 12 away from the box body panel 11 and communicates with the pot lid assembly 200. The pot body assembly 300 includes a cooking container 31 for containing rice and water and a heating module 32 for heating the cooking container 31. The cooking container 31 is provided with a container opening 311 for the rice and water to enter;

[0040] The pot lid assembly 200 is installed on one of the box body panel 11 and the box body side plate 12, and the pot body assembly 300 is installed on the other of the box body panel 11 and the box body side plate 12.

[0041] Optionally, the box body panel 11 and the box body side plate 12 can be made of one or a combination of metals, plastics, woods, mineral materials, etc. with high temperature resistance, steam erosion resistance, good flame retardancy, and certain forming structural strength. Preferably, metals with a relatively high melting point can be selected and formed by the process of sheet metal bending. With such a design, the hollow structure formed by sheet metal bending can be used to reduce heat conduction and reduce the overall weight. It can also facilitate the later splicing, installation, and locking. Preferably, heat-insulating and flame-retardant fireproof materials can be filled in the hollow structure formed by sheet metal bending to reduce the influence of the internal heat of the embedded rice cooker on other modules and also reduce the influence of external heat on the embedded rice cooker.

[0042] Specifically, in this embodiment, the built-in rice cooker can be used as one of the modules that make up an integrated stove. During installation, the embedded box body 100 is directly placed into the integrated stove, fixed, and then the power cable is connected. The embedded box body 100 is a flat box body on the outside of the built-in rice cooker for protecting and installing the device. It is composed of a box body panel 11 and box body side plates 12. The box body panel 11 can move relative to the box body side plates 12 to achieve opening and closing. More specifically, the box body panel 11 is provided with a panel handle 112 for the user to hold. The panel handle 112 protrudes and is horizontally arranged on the side of the box body panel 11 facing the outside. The pot cover assembly 200 is a cover for hermetically closing the cooking container 31 of the built-in rice cooker. The pot body assembly 300 is a material carrier container of the built-in rice cooker for accommodating and heating rice and water to achieve the steaming function. The exhaust assembly 400 is an exhaust device for the built-in rice cooker to assist in discharging the steam generated during the steaming process. The pot cover assembly 200 includes a connecting cover body for installation and a sealing soft cover body for ensuring airtightness. Both the connecting cover body and the sealing soft cover body are provided with ventilation holes for exhausting air. These ventilation holes are respectively connected to the container opening 311 and the exhaust assembly 400. The cooking container 31 is a rigid metal container that can be detachably placed on the pot body assembly 300 for placing rice and water. The cooking container 31 can adopt a hollow cylindrical or hollow rectangular container structure. The appropriate container structure can be selected according to the actual size to maximize the adaptation to the internal space of the embedded box body 100 and increase the rice and water capacity. Preferably, in this embodiment, a hollow rectangular container structure is adopted to adapt to the rectangular embedded box body 100. The pot body assembly 300 includes a pot body structure for placing the cooking container 31 and installing the heating module 32. The pot body structure is provided with a heat-insulating pot body shell. The cooking container 31 is detachably mounted in the pot body shell and contacts the heating end of the heating module 32 to achieve heat conduction. The pot body structure limits the installation position of the heating module 32 to ensure normal contact and heat conduction between the heating module 32 and the cooking container 31. The heating module 32 is a heating device for heating the cooking container 31 to achieve steaming. The heating module 32 can adopt a steaming mode and a heat preservation mode according to the actual needs of the user. The steaming mode has a higher temperature than the heat preservation mode and can quickly heat the rice and water to the boiling state, while the heat preservation mode is only used to provide a relatively low heating temperature to keep the cooking container 31 at a certain constant temperature to achieve the food heat preservation effect.

[0043] More specifically, the lid assembly 200 of this embodiment is installed on the cabinet panel 11 through a connecting lid. An insulating layer 18 for isolating heat transfer is also provided between the connecting lid and the cabinet panel 11. The insulating layer 18 prevents the cabinet panel 11 and the panel handle 112 from heating up and scalding the user. The pot body assembly 300 is installed on the cabinet side plate 12. A stabilizing member 17 for strengthening the stable placement of the pot body assembly 300 is also installed between the pot body assembly 300 and the cabinet side plate 12. The stabilizing members 17 are arranged at intervals around the outer peripheral side of the pot body assembly 300. The cabinet side plate 12 is provided with a closing limit member 16 for restricting the closing position of the cabinet panel 11. When in use, the user can open the cabinet panel 11 and lift the lid assembly 200 in a flip-up manner, and put the washed rice and water into the cooking container 31 from the container opening 311. When closing, the user closes the cabinet panel 11 so that the cabinet panel 11 contacts and is limited by the closing limit member 16. The sealed soft lid contacts the cooking container 31 and closes the container opening 311. The cabinet panel 11 contacts the cabinet side plate 12 so that the lid assembly 200 and the pot body assembly 300 are cooperatively connected to form a cooking cavity for airtight steaming. During steaming, the user starts the built-in rice cooker, and after the heating module 32 is powered on, it generates high temperature and heats the cooking container 31. After the cooking container 31 is heated, it transfers heat to the rice and water, causing the rice and water to heat up and boil and gradually steam. During the steaming process, the rice and water are heated and a large amount of steam is generated. The steam passes through the ventilation holes to the exhaust assembly 400. The exhaust assembly 400 can extract and discharge the steam through an exhaust fan or a blower, avoiding the safety hazard caused by high-pressure steam being sealed and also avoiding the safety hazard of scalding people near the outside when the steam is discharged. After steaming is completed, the user opens the cabinet panel 11 again and lifts the lid assembly 200, and then can take out the cooked rice from the cooking container 31. By using the flip-up opening method, in the case of limited space in the kitchen aisle, it can save the limited space in the aisle and avoid the built-in rice cooker from affecting the normal passage of people in the aisle, facilitating the user to use.

[0044] The built-in rice cooker of this embodiment uses a modular embedded cabinet as the shell to facilitate embedding into different integrated stove structures. By installing the lid assembly and the pot body assembly at different positions of the embedded cabinet respectively, the user can open the built-in rice cooker when opening the embedded cabinet, simplifying the opening process and steps. An exhaust assembly communicating with the lid assembly is also provided inside the embedded cabinet, so that the steam generated during the steaming process can be discharged to a preset position and channel through the exhaust assembly, avoiding the safety hazard of scalding the human body caused by the steam.

[0045] Embodiment 2: As Figures 6 to 12As shown, different from Embodiment 1, the lid assembly 200 of this embodiment is installed on the side plate 12 of the box body through a connecting cover, and the pot body assembly 300 is installed on the front panel 11 of the box body. When in use, the user can open the front panel 11 of the box body in a horizontal pulling manner and drive the pot body assembly 300 to be pulled out. Then, the washed rice and water are put into the cooking container 31 from the container opening 311. When closing, the user pushes the front panel 11 of the box body so that the pot body assembly 300 is pushed back to the position of the lid assembly 200. The sealing soft lid body is close to the container opening 311 and contacts the cooking container 31. The contact between the front panel 11 of the box body and the side plate 12 of the box body enables the lid assembly 200 and the pot body assembly 300 to be cooperatively connected to form a cooking cavity for airtight steaming. Then the user can start steaming. After the steaming is completed, the user pulls the front panel 11 again and takes out the pot body assembly 300, and then the cooked rice can be taken out from the cooking container 31. With the opening method of pulling and opening, when the space on the kitchen countertop or the integrated stove countertop is limited, pulling and opening can save the countertop space, avoid affecting the layout and use of the countertop by the built-in rice cooker, and facilitate the user to use.

[0046] Embodiment 3: As Figure 4 and Figure 5 and Figures 9 to 12 shown, the lid assembly 200 includes a lid part 21 for covering the container opening 311. The lid part 21 is provided with an exhaust passage 22 for communicating with the exhaust assembly 400. The exhaust passage 22 communicates with the container opening 311 through an air inlet 221. The exhaust assembly 400 includes an exhaust duct 41 and at least one exhaust fan 42. The exhaust duct 41 communicates with the exhaust fan 42 and the outlet 222 of the exhaust passage 22.

[0047] Preferably, the exhaust duct 41 is made of a heat-resistant flexible airtight material that can be telescopically folded. While ensuring that the lid assembly 200 can be smoothly opened and closed, the flexible airtight material can also ensure that the steam inside the exhaust duct 41 will not leak to the outside.

[0048] Specifically, based on the above embodiments, in this embodiment, the pot lid member 21 is a pot lid appliance for sealing the cooking container 31. The exhaust passage 22 is a reserved passage structure formed on the pot lid member 21 and used to communicate with the container opening 311 and the exhaust duct 41 respectively. During molding, the exhaust passage 22 is pre-buried inside the pot lid member 21 and integrally formed. The intake port 221 for steam to enter and the outlet port 222 for steam to discharge are respectively provided at the head and tail ends of the exhaust passage 22. The exhaust duct 41 is arranged between the outlet port 222 and the exhaust fan 42. During steaming, the heating module 32 heats the cooking container 31. After the cooking container 31 is heated, it transfers the heat to the rice water, causing the rice water to heat up, boil, and gradually steam. During the steaming process, the rice water is heated and generates a large amount of steam. The steam enters the exhaust passage 22 through the intake port 221 and leads to the outlet port 222. The steam enters the exhaust duct 41 from the outlet port 222 and is discharged towards the preset safe position along the air flow under the rotation of the blades of the exhaust fan 42, achieving the effect of steam discharge.

[0049] More specifically, the exhaust assembly 400 further includes an air flow check valve 43 for preventing steam from flowing back. The air flow check valve 43 is installed at the connection between the outlet port 222 and the exhaust duct 41. After the steam flows out from the outlet port 222, it passes through the air flow check valve 43 and enters the exhaust duct 41. However, due to the one-way flow property of the air flow check valve 43, the steam entering the exhaust duct 41 will not be affected by the air flow generated by the rotation of the blades of the exhaust fan 42 and flow back or reverse, avoiding the accumulation of steam in the exhaust passage 22 and the cooking container 31 and affecting the cooking quality.

[0050] Embodiment 4: As Figures 3 to 5 and Figures 8 to 12 shown, a magnetic attraction member 111 for strengthening the connection is provided at the peripheral edge of the box body panel 11 for contacting the box body side plate 12. A magnetic member 121 for magnetically connecting the magnetic attraction member 111 is provided on one side of the box body side plate 12 for contacting the box body panel 11.

[0051] Specifically, based on the above embodiments, in this embodiment, the magnetic component 111 is one of the magnetic accessories installed on the side of the box body panel 11 close to the box body side plate 12 for strengthening the closed contact. The magnetic component 121 is the other magnetic accessory installed on the side of the box body side plate 12 close to the box body panel 11 for strengthening the closed contact. The magnetic component 111 can be installed on the lid closing limiting component 16. Preferably, the magnetic component 111 and the magnetic component 121 are made of a metal with magnetic adsorption ability. When the user closes the box body panel 11, the mutual magnetic attraction between the magnetic component 111 and the magnetic component 121 can be used to make the contact between the box body panel 11 and the box body side plate 12 closer, avoiding steam leakage from the box body panel 11 to the outside during the cooking process, helping the box body panel 11 and the box body side plate 12 to form a relatively airtight space to reduce the impact on the external environment from the box body panel 11, and also helping to reduce the oil stains and dust in the external environment from entering the built-in rice cooker and causing dirt accumulation.

[0052] More specifically, in this embodiment, the magnetic components 111 are evenly spaced along the outer periphery of the box body panel 11, and the magnetic components 121 are evenly spaced along the outer periphery of the box body side plate 12. The arrangement positions of the magnetic components 111 and the magnetic components 121 correspond one by one to ensure the maximum magnetic adsorption force.

[0053] More specifically, in this embodiment, an elastic buffer member may also be provided on the side of the box body side plate 12 close to the box body panel 11. The elastic buffer member is made of an elastic plastic material and can be used to slow down the instantaneous impact force generated when the magnetic component 111 and the magnetic component 121 are magnetically closed, thereby reducing the impact sound when the box body panel 11 is closed and further slowing down the magnetic adsorption impact and impact noise.

[0054] Embodiment 5: As Figure 1 、 Figure 2 、 Figures 4 to 7 and Figures 9 to 11 shown, the box body panel 11 is provided with a control panel for facilitating cooking control. The control panel is electrically connected to the pot body assembly 300 and the exhaust assembly 400 respectively. The control panel includes a display screen 520 for displaying cooking information and a plurality of switch buttons 510 for driving functions. The switch buttons 510 include a power button 51 for connecting to an external power supply and a steaming button 52 for controlling the heating module 32.

[0055] Specifically, based on the above embodiments, in this embodiment, the control panel is the main control center of the built-in rice cooker for controlling the operation of each module or device. The control panel is installed on the box body panel 11. The heat insulation layer 18 on the box body panel 11 isolates heat conduction to protect the control panel. The box body panel 11 is provided with a wire threading channel 113 for the control cable of the control panel to pass through. The display screen 520 is a display screen for visualizing the operation status and operation data of the built-in rice cooker by the control center. The visualized data of the display screen 520 includes the operation status of the heating module 32, the real-time heated temperature of the cooking container 31, the operation status of the exhaust component 400, and information such as the steaming mode selected by the user. The switch button 510 is an operation contact for the control center to allow the user to manually select and operate the built-in rice cooker. The switch button 510 includes a power button 51 for turning on and off the external power supply, a steaming button 52 for starting the heating module 32 to enter the steaming mode, a warming button 53 for starting the heating module 32 to enter the warming mode, and a timing button 54 for the user to set the steaming time. The control panel controls the pot body component 300 and the exhaust component 400 respectively through a logic processor, and uses the logic processor to process the execution programs of each switch button 510. The user can adjust the steaming temperature, steaming time, and heating mode through the control panel to achieve the functional effects of steaming, warming, and timing, simplify the user operation, and realize the intelligent control of the built-in rice cooker.

[0056] More specifically, in this embodiment, when in use, the user adds steaming materials to the cooking container 31 and closes the box body panel 11, presses the power button 51 to turn on the power supply of the entire built-in rice cooker. At this time, the display screen 520 is powered on and enters the display interface. The user can press the steaming button 52 to enter the steaming mode, and control the heating module 32 to heat the cooking container 31 to achieve the steaming function; or the user can press the warming button 53 to enter the warming mode, and control the heating module 32 to keep the cooking container 31 at a constant temperature to achieve the warming function; or the user can press the timing button 54 to adjust the heating time of the heating module 32, and then press the steaming button 52 to adjust the steaming temperature, so that the steaming materials inside the cooking container 31 can be steamed at the preset heating time and preset heating temperature, realizing the user-defined steaming effect to meet the different steaming needs of the user.

[0057] Embodiment 6: As Figure 4 and Figure 5 shown, the pot body component 300 is further provided with a locking device 13 for restricting the extraction of the box body panel 11. The locking device 13 includes a retractable locking tongue and a retractor for driving the locking tongue. The control panel is electrically connected to the locking device 13, and the switch button 510 includes a locking button 55 for controlling the locking device 13.

[0058] Specifically, based on Embodiment 1 and Embodiment 5, in this embodiment, the locking device 13 is an electric lock device with a retractable locking tongue. To prevent the cabinet panel 11 from being accidentally touched and opened by users, children, or pets during the steaming process, resulting in steam leakage and scalding, in this embodiment, the locking device 13 is installed at a position on the cabinet side plate 12 close to the lid closing limiting member 16. The lid assembly 200 is provided with a locking tongue hole for the locking tongue to extend into. The locking button 55 is a locking state switch for controlling the locking device 13 by the control panel. The control panel can adjust the start and stop of the locking device 13 according to the operating state of the built-in rice cooker and the pressing state of the locking button 55. When in use, the user closes the cabinet panel 11 and enters the steaming mode or the warming mode. At this time, if the locking button 55 is not pressed, the control panel automatically connects the locking button 55, causing the locking device 13 to be powered on and the locking tongue to pop out through the telescopic device to enter the locking state. At this time, the cabinet panel 11 cannot be easily opened from the outside. When the user needs to interrupt the steaming mode or the warming mode and open the cabinet panel 11 during the steaming process, the locking button 55 can be long-pressed to unlock. At this time, the locking button 55 is disconnected, causing the locking device 13 to be powered off and enter the unlocking state, and then the user can open the cabinet panel 11. More specifically, the user can also press the locking button 55 in advance before closing the cabinet panel 11. After closing the cabinet panel 11, the locking button 55 connects the locking device 13 to be powered on and enter the locking state, avoiding the situation that the built-in rice cooker is accidentally opened from the outside, improving the safety of using the built-in rice cooker, and preventing the steam from leaking out during the steaming process of the built-in rice cooker and scalding the user, children, or pets.

[0059] Embodiment 7: As Figures 9 to 11 shown, based on Embodiment 2 and Embodiment 5, different from Embodiment 6, in this embodiment, the locking device 13 is provided at a position on the side wall of the cooker body shell close to the cooker body assembly 300. When the built-in rice cooker enters the steaming mode or the warming mode, the control panel connects the locking device 13 to be powered on and enter the locking state through the locking button 55, so as to prevent the user, children, or pets from accidentally touching and pulling out the cabinet panel 11, and prevent the steam from leaking out during the steaming process of the built-in rice cooker and scalding the user, children, or pets.

[0060] Embodiment 8: As Figures 3 to 5 and Figures 8 to 14As shown, based on Embodiment 1 and Embodiment 5, different from Embodiment 6 or Embodiment 7, it further includes a backup power supply 700 for emergency power supply. The backup power supply 700 can be one of lead-acid batteries, nickel-cadmium batteries, nickel-metal hydride batteries, lithium-ion batteries, lithium polymer batteries or lithium iron phosphate batteries. Preferably, the backup power supply 700 uses a lithium iron phosphate battery, which has the characteristics of high safety, good stability, long life and good environmental protection. The backup power supply 700 is electrically connected to the control panel and the locking device 13 respectively to prevent the user from being unable to open the box panel 11 when the external power supply is cut off. When the power is off, the backup power supply 700 supplies power to the control panel and the locking device 13 respectively, and the control panel timely sets the locking device 13 to the unlocked state. The backup power supply 700 can also supply power to the pot body assembly 300 to continue to complete the steaming task.

[0061] Embodiment 9: As Figures 3 to 5 shown, the pot body assembly 300 further includes a pot body mounting base 33. The heating module 32 is installed on the pot body mounting base 33. The pot body mounting base 33 is equipped with a weight sensor 34 for measuring the feeding of rice and water, and the weight sensor 34 is electrically connected to the control panel.

[0062] Specifically, based on Embodiment 1 and Embodiment 5, in this embodiment, the pot body mounting base 33 can be used for mounting the pot body housing on the box body side plate 12 embedded at the bottom of the embedded box body 100, and can also be used to accommodate the heating module 32 and raise the cooking container 31 to ensure that the cooking container 31 has sufficient height to be covered by the pot lid assembly 200. It can also separate the heating module 32 from the box body side plate 12 embedded at the bottom of the embedded box body 100 to reduce the influence of heat on the box body side plate 12. More specifically, to solve the problem of how users can precisely control the amount of rice and water fed, in this embodiment, the weight sensor 34 for measuring the amount of rice and water fed is installed between the pot body mounting base 33 and the cooking container 31 and contacts the bottom of the cooking container 31. The weight sensor 34 is a weighing tool for weighing the amount of rice and water fed. The weight sensors 34 are evenly spaced around the outer bottom of the cooking container 31 to comprehensively and precisely measure the weight change of the rice and water fed. When in use, the user puts the washed rice and water into the cooking container 31 from the container opening 311. When the cooking container 31 presses against the weight sensor 34 due to the self-weight of the rice and water, the weight sensor 34 collects the data of the weight change and synchronously transmits it to the control panel for display of the real-time weight change via the display screen 520. The user can intuitively know the amount of the fed rice and water from the display screen 520 to judge the timing to stop feeding the rice and water, which helps the user more precisely control the feeding amount of the rice and water, thereby controlling the feeding ratio of the rice and water. With the design of the weight sensor 34, the user can more intuitively and precisely control the amount of rice and water fed, avoid wasting ingredients or lacking ingredients, and can also adjust the steaming quality after steaming by controlling the feeding ratio of the rice and water, which helps to improve the steaming quality and steaming taste.

[0063] More specifically, when the user loads ingredients from the cooking container 31, the weight sensor 34 can also transmit the data of the reduced weight change of the ingredients to the control panel for display of the real-time weight change via the display screen 520, which helps users with control requirements for ingredient intake to intuitively know the amount of ingredients loaded each time through the weight sensor 34 and more intuitively control the ingredient intake to meet the intake requirements for body management or health management.

[0064] Embodiment 10: As Figures 8 to 11 shown, based on Embodiment 2 and Embodiment 5, different from Embodiment 9, the pot body mounting base 33 of this embodiment can be used for mounting the pot body housing on the box body panel 11. The pot body mounting base 33 is slidably connected to the box body side plate 12 embedded at the bottom of the box body 100. When the user pulls out the box body panel 11, the pot body assembly 300 is driven by the pot body mounting base 33 to disengage from the pot lid assembly 200 and be pulled out externally, which is convenient for the user to use.

[0065] Embodiment 11: As Figures 1 to 5As shown, the upper side plate A110 of the embedded box body 100 is the box body panel 11. The pot cover assembly 200 is installed on the box body panel 11, and the box body panel 11 is hinged to the box body side plate 12 through a hinge assembly 14.

[0066] Specifically, based on Embodiment 1 and Embodiment 5, the box body panel 11 of this embodiment is the upper side plate A110 of the embedded box body 100. The upper side plate A110 and the box body side plate 12 also located on the upper side of the embedded box body 100 are hinged through a hinge assembly 14. The control panel is arranged on the side of the upper side plate A110 facing the outside. The panel handle 112 is located at a position on the box body panel 11 away from the hinge assembly 14. When the box body panel 11 is opened by the user, the box body panel 11 can rotate and turn relative to the box body side plate 12 on the upper side of the embedded box body 100 for the user to enter the interior of the embedded rice cooker. The hinge assembly 14 includes two hinge plate members for respectively connecting the box body panel 11 and the box body side plate 12 and a hinge shaft member for connecting adjacent hinge plate members. The hinge assembly 14 further includes a hinge damping member installed between the hinge plate member and the hinge shaft member. The hinge damping member can be used to buffer the downward impact force when the box body panel 11 is closed, avoid the box body panel 11 directly colliding with the box body side plate 12 with the impact force caused by its own weight, reduce the force for the user to close the box body panel 11, improve the durability and closing buffer effect of the embedded rice cooker. When in use, the user holds the panel handle 112 with the hand and pulls it upward, so that the box body panel 11 rotates circumferentially upward around the hinge shaft member through the hinge assembly 14. The box body panel 11 turns up the pot cover assembly 200 together, and the pot cover assembly 200 is separated from the pot body assembly 300, so that the container opening 311 of the cooking container 31 communicates with the outside. At this time, the user can put rice and water or take out cooked rice from the container opening 311. The hinged design can facilitate the user to open the embedded rice cooker with only one hand. The production and procurement costs of the hinge accessories are relatively low, they are easy to manufacture and install, and the fault replacement method is simple. It is convenient for long-term use and maintenance, and convenient for the user to use.

[0067] Embodiment 12: As Figures 6 to 11 shown, the front side plate B120 of the embedded box body 100 is the box body panel 11. The pot cover assembly 200 is installed on the box body side plate 12. The box body panel 11 and the box body side plate 12 are cooperatively connected through a slidable and telescopic rail assembly 15. The pot body assembly 300 is installed between the box body panel 11 and the rail assembly 15.

[0068] Specifically, based on Embodiment 2 and Embodiment 5, the box panel 11 of this embodiment is the front side plate B120 embedded in the box body 100. The control panel is arranged on the side of the front side plate B120 facing the outside. The front side plate B120 is installed on the side of the pot body assembly 300 away from the exhaust assembly 400. The pot body assembly 300 is installed on the box body side plate 12 through the slide rail assembly 15. The slide rail assembly 15 includes a first slide rail 151 and a second slide rail 152 respectively installed on both sides of the pot body assembly 300. Both the first slide rail 151 and the second slide rail 152 are installed in a vertical setting mode between the pot body assembly 300 and the box body side plates 12 on the left and right sides of the embedded box body 100. This installation method can increase the total height after the pot cover assembly 200 and the pot body assembly 300 are combined, thereby increasing the rice and water capacity of the pot body assembly 300, or increasing the space of the exhaust passage 22 of the pot cover assembly 200, or increasing the thickness of the heat insulation layer 18 of the pot cover assembly 200. Both the first slide rail 151 and the second slide rail 152 adopt heavy-duty ball slide rails with damping effects. The heavy-duty ball slide rails can adopt specifications of two sections, three sections or four sections. This kind of slide rail has good weighing capacity, relatively quiet telescopic sliding, and relatively smooth telescopic sliding. Moreover, when the user pushes back and closes the box panel 11, the damping effect can also play a role in buffering the closing, avoiding the box panel 11 failing to decelerate in time and hitting the box body side plate 12, and avoiding too much vibration and noise generated during closing, effectively reducing the impact speed and impact force when closing the box panel 11, protecting the overall structure of the built-in rice cooker from the side, and further improving the smooth sliding property when opening the built-in rice cooker.

[0069] Embodiment 13: As Figure 12 shown, based on Embodiment 2 and Embodiment 5, different from Embodiment 12, both the first slide rail 151 and the second slide rail 152 of this embodiment are installed in a horizontal setting mode between the pot body assembly 300 and the box body side plate 12 at the bottom of the embedded box body 100. This installation method can increase the setting width of the pot body assembly 300, thereby increasing the rice and water capacity of the pot body assembly 300. And compared with the vertical setting, the horizontal setting has better load-bearing capacity. After being pulled out, both the first slide rail 151 and the second slide rail 152 are hidden at the bottom of the pot body assembly 300, further beautifying the appearance of the product in the use state.

[0070] Embodiment 14: As Figures 9 to 11As shown, the pot body assembly 300 further includes a driving assembly 600 for driving the movement of the pot body assembly 300. The driving assembly 600 is electrically connected to the control panel. The driving assembly 600 includes a driving device 61 for providing power, a transmission mechanism 62 for transmitting power, and a fixing member 63 for cooperating with the transmission mechanism 62. The output end of the driving device 61 drives the transmission mechanism 62 to cooperate with the fixing member 63 to operate, so that the pot body assembly 300 can reciprocally move along the length direction of the slide rail assembly 15.

[0071] Specifically, based on Embodiment 2 and Embodiment 5, when the user uses the built-in rice cooker, they still need to manually pull or push to open or close the cabinet panel 11. When the user has items in both hands and it is inconvenient to open or close, a more convenient way of opening and closing needs to be considered. To further optimize the user's operation of pulling or pushing to open or close the built-in rice cooker, the drive assembly 600 in this embodiment is a drive device for automatically driving the cabinet panel 11 of the built-in rice cooker to open or close. The drive device 61 is a drive motor that provides the power source for the drive assembly 600. The drive device 61 is vertically arranged on the side of the cooker body assembly 300 away from the cabinet panel 11. The drive device 61 can be one of a servo motor or a stepper motor. The drive device 61 extends an output shaft that can rotate forward and backward. An exhaust fan 42 for cooling the drive device 61 can be additionally provided at a position close to the drive device 61 in the exhaust assembly 400 to prevent the drive device 61 from overheating and causing malfunctions. The transmission mechanism 62 is a transmission assembly of the drive assembly 600 for transmitting the power of the drive device 61. The transmission mechanism 62 can adopt one or a combination of gear transmission, sprocket transmission, belt pulley transmission, and screw transmission as the main transmission structure. Preferably, in this embodiment, the transmission mechanism 62 adopts the gear transmission method. Gear transmission has the characteristics of high transmission efficiency, smooth transmission, high transmission accuracy, and long service life. It is not easily damaged and is convenient and fast to install. The fixing member 63 is fixedly installed on the cabinet side plate 12 at the bottom of the embedded cabinet 100 for cooperating with the transmission mechanism 62. Preferably, in this embodiment, the fixing member 63 adopts a rack to cooperate with the transmission mechanism 62 that uses gear transmission. The output shaft of the drive device 61 is installed with a gear member for cooperating with the transmission mechanism 62. To save internal space and better place the drive device 61, the gear member adopts the tooth profile structure of a bevel gear. The drive assembly 600 is electrically connected to the control panel, and the control panel controls the forward and reverse rotation and the rotation speed of the drive device 61. When in use, after the user presses the power button 51 on the control panel, the built-in rice cooker is powered on as a whole. When the user presses the power button 51 again, the drive device 61 is triggered to start. The output shaft of the drive device 61 rotates and drives the transmission mechanism 62 to rotate through the bevel gear. The transmission mechanism 62 meshes with the fixing member 63. Since the fixing member 63 is fixedly connected to the cabinet side plate 12, the drive device 61 drives the cooker body assembly 300 to move along the length direction of the fixing member 63 through the transmission mechanism 62.

[0072] When the built-in rice cooker is in the closed state, the user touches and presses the power button 51 with their body, triggering the drive device 61 to rotate forward and driving the cooker body assembly 300 to move towards the cabinet panel 11 through the slide rail assembly 15, realizing the opening of the cabinet panel 11 without manual pulling.

[0073] When the built-in rice cooker is in the on state, the user touches and presses the power button 51 with the body, triggering the driving device 61 to reverse and drive the cooker body assembly 300 to move in the direction of the exhaust assembly 400 through the slide rail assembly 15, so as to close the cabinet panel 11 without manual pushing or pulling.

[0074] The driving device is adopted to drive the transmission mechanism to transmit on the fixing member and generate a thrust force, so as to realize the automatic opening or closing of the built-in rice cooker, without manual pulling to open or pushing and pulling to close the cabinet panel, which is convenient for the user to smoothly open the built-in rice cooker even when both hands are holding items, facilitating the user to use.

[0075] Embodiment 15: As Figure 13 shown, specifically, based on Embodiment 2 and Embodiment 5, different from Embodiment 14, the transmission mechanism 62 of this embodiment adopts a combined transmission method of gear transmission and screw transmission, and the fixing member 63 adopts a screw rod to cooperate with the transmission mechanism 62 adopting screw transmission. When in use, after the user presses the power button 51 on the control panel, the built-in rice cooker is powered on as a whole. When the user presses the power button 51 again to trigger the driving device 61 to start, the output shaft of the driving device 61 rotates and drives the transmission mechanism 62 to rotate through the gear member. The transmission mechanism 62 and the fixing member 63 are threadedly connected to generate a pushing force along the length direction of the fixing member 63. Since the fixing member 63 is fixedly connected to the cabinet side plate 12, the driving device 61 drives the cooker body assembly 300 to move along the length direction of the fixing member 63 through the transmission mechanism 62.

[0076] Embodiment 16: As Figure 14 shown, specifically, based on Embodiment 2 and Embodiment 5, different from Embodiment 14, the transmission mechanism 62 of this embodiment adopts a combined transmission method of gear transmission and screw transmission, the fixing member 63 adopts a screw rod, and both ends of the fixing member 63 are respectively installed on the cabinet side plate 12 embedded at the bottom of the cabinet 100 through hinge bearing seats. The transmission mechanism 62 is fixedly connected to the fixing member 63, the driving device 61 is installed on the cabinet side plate 12, and a connecting and fixing block for transmission is installed on one side of the cooker body assembly 300 close to the driving device 61. The connecting and fixing block is threadedly connected to the fixing member 63. When the driving device 61 rotates, it drives the fixing member 63 to rotate through the transmission mechanism 62, and the fixing member 63 makes the connecting and fixing block push the cooker body assembly 300 to move along the length direction of the fixing member 63 through the slide rail assembly 15 by screw transmission.

[0077] Embodiment 17: As Figure 1 、 Figure 2 、 Figure 6 and Figure 7 shown, the integrated stove includes a stove cabinet and the built-in rice cooker installed in the stove cabinet, and the stove cabinet is provided with a ventilation opening for the exhaust assembly 400 to discharge steam.

[0078] Specifically, based on Embodiment 5, an embedded rice cooker is installed on the stove cabinet of the integrated stove in this embodiment. The integrated stove is a kitchen appliance integrating multiple functional modules. When a user uses the integrated stove to cook rice, the user can turn on and operate the embedded rice cooker through the control panel. The control panel adopts intelligent control and controls the operation of various functions of the embedded rice cooker through a plurality of switch buttons integrated on the control panel respectively. Thereby, the user can realize multiple intelligent control methods such as one-key steaming, one-key warming, one-key locking, and one-key timing through the control panel. Moreover, the steam extracted by the exhaust assembly 400 can be directed towards the ventilation port dedicated to discharging steam, avoiding scalding people nearby, simplifying the steps for the user to operate the rice cooker, shortening the usage time, and accelerating the cooking efficiency of the user.

[0079] Embodiment 18: As Figures 1 to 5 shown, during use, the user holds the panel handle 112 with the hand and pulls it upward, causing the cabinet panel 11 to rotate circumferentially upward around the hinge assembly 14 and the hinge shaft towards the upper part of the embedded cabinet 100. The cabinet panel 11 drives the pot cover assembly 200 to turn up together, and the pot cover assembly 200 is separated from the pot body assembly 300, so that the container opening 311 of the cooking container 31 communicates with the outside. The user adds the washed steaming materials into the cooking container 31, and the weight sensor 34 transmits the weight change of the feeding to the display screen 520. The user adjusts the feeding ratio according to the feeding amount change displayed on the display screen 520. After the feeding is completed, the user holds the panel handle 112 with the hand and closes it downward to close the cabinet panel 11, and presses the power button 51 to turn on the power supply of the whole embedded rice cooker. At this time, the display screen 520 is powered on and enters the display interface. The user can press the steaming button 52 to enter the steaming mode, and control the heating module 32 to heat the cooking container 31 to realize the steaming function; or the user can press the warming button 53 to enter the warming mode, and control the heating module 32 to keep the cooking container 31 at a constant temperature to realize the warming function; or the user can press the timing button 54 to adjust the heating time of the heating module 32, and then the user presses the steaming button 52 to adjust the steaming temperature, so that the steaming materials inside the cooking container 31 can be steamed at the preset heating time and the preset heating temperature, realizing the user-defined steaming effect to meet the different steaming needs of the user; the steam generated during steaming enters the exhaust passage 22 from the air inlet 221, and then enters the exhaust pipe 41 through the air outlet 222, and is extracted to the preset position by the exhaust fan 42; after the steaming is completed, the user holds the panel handle 112 with the hand and pulls it upward, driving the cabinet panel 11 to drive the pot cover assembly 200 to turn up together, so as to take out the cooked food from the embedded rice cooker, realizing that the embedded rice cooker can be opened by the way of flipping the cover.

[0080] Embodiment 19: As Figures 6 to 12As shown in the figure, when in use, the user can open the cabinet panel 11 in a horizontal pulling manner and drive the pot body assembly 300 to be pulled out. Put the washed steaming materials into the cooking container 31 through the container opening 311. The weight sensor 34 transmits the weight change of the feeding to the display screen 520. The user adjusts the feeding ratio according to the change of the feeding amount displayed on the display screen 520. When closing, the user pushes the cabinet panel 11 so that the pot body assembly 300 is pushed back to the pot cover assembly 200. The sealing soft cover body approaches the container opening 311 and contacts the cooking container 31. The cabinet panel 11 contacts the cabinet side plate 12 so that the pot cover assembly 200 and the pot body assembly 300 are cooperatively connected to form a cooking cavity for airtight steaming, and the user can start steaming. The steam generated during steaming enters the exhaust passage 22 from the air inlet 221, and then enters the exhaust pipe 41 through the air outlet 222 and is drawn to a preset position by the exhaust fan 42. After steaming is completed, the user pulls the cabinet panel 11 again and takes out the pot body assembly 300, and then can take out the cooked food from the cooking container 31.

[0081] Embodiment 20: As Figures 6 to 12 As shown in the figure, when in use, after the user presses the power button 51 on the control panel, the built-in rice cooker is powered on as a whole. When the user presses the power button 51 again to trigger the driving device 61 to rotate forward, the driving device 61 drives the transmission mechanism 62 to drive the pot body assembly 300 to move in the direction of the cabinet panel 11 through the slide rail assembly 15. After the cabinet panel 11 and the pot body assembly 300 extend to a preset position, the driving device 61 stops. At this time, the cabinet panel 11 is in an open state. The user puts the washed steaming materials into the cooking container 31 through the container opening 311. The weight sensor 34 transmits the weight change of the feeding to the display screen 520. The user adjusts the feeding ratio according to the change of the feeding amount displayed on the display screen 520. When closing, the user presses the power button 51 again to trigger the driving device 61 to rotate reversely. The driving device 61 drives the transmission mechanism 62 to drive the pot body assembly 300 to move in the direction of the exhaust assembly 400 through the slide rail assembly 15. After the cabinet panel 11 contacts the cabinet side plate 12, the driving device 61 stops. At this time, the cabinet panel 11 is in a closed state. The sealing soft cover body approaches the container opening 311 and contacts the cooking container 31. The cabinet panel 11 contacts the cabinet side plate 12 so that the pot cover assembly 200 and the pot body assembly 300 are cooperatively connected to form a cooking cavity for airtight steaming, and the user can start steaming. The steam generated during steaming enters the exhaust passage 22 from the air inlet 221, and then enters the exhaust pipe 41 through the air outlet 222 and is drawn to a preset position by the exhaust fan 42. After steaming is completed, the user presses the power button 51 again to trigger the driving device 61 to rotate forward to drive the cabinet panel 11 and the pot body assembly 300 to extend, and then can take out the cooked food from the cooking container 31.

[0082] The above only further illustrates the technical content of the present utility model with embodiments to make it easier for readers to understand, but it does not mean that the implementation manners of the present utility model are limited thereto. Any technical extension or re-creation made according to the present utility model is protected by the present utility model. The protection scope of the present utility model shall be subject to the claims.

Claims

1. An embedded rice cooker, characterized in that: It includes an embedded box body (100), a pot cover assembly (200), a pot body assembly (300) and an exhaust assembly (400). The embedded box body (100) includes a box body panel (11) and a box body side plate (12). The exhaust assembly (400) is installed on the side of the box body side plate (12) away from the box body panel (11) and communicates with the pot cover assembly (200). The pot body assembly (300) includes a cooking container (31) for containing rice water and a heating module (32) for heating the cooking container (31). The cooking container (31) is provided with a container opening (311) for the rice water to enter. The pot cover assembly (200) is installed on one of the box body panel (11) and the box body side plate (12), and the pot body assembly (300) is installed on the other of the box body panel (11) and the box body side plate (12).

2. An embedded rice cooker according to claim 1, wherein: The pot cover assembly (200) includes a pot cover part (21) for covering the container opening (311). The pot cover part (21) is provided with an exhaust passage (22) for communicating with the exhaust assembly (400). The exhaust passage (22) communicates with the container opening (311) through an air inlet (221). The exhaust assembly (400) includes an exhaust pipe (41) and at least one exhaust fan (42). The exhaust pipe (41) communicates with the exhaust fan (42) and the air outlet (222) of the exhaust passage (22).

3. An embedded rice cooker according to claim 1, characterized in that: At the peripheral edge of the box body panel (11) for contacting the box body side plate (12), there is a magnetic part (111) for strengthening the connection. On the side of the box body side plate (12) for contacting the box body panel (11), there is a magnetic member (121) for magnetically connecting the magnetic part (111).

4. An embedded rice cooker according to claim 1, wherein: The box body panel (11) is provided with a control panel for facilitating the control of cooking. The control panel is electrically connected to the pot body assembly (300) and the exhaust assembly (400) respectively. The control panel includes a display screen (520) for displaying cooking information and a plurality of switch buttons (510) for driving functions. The switch buttons (510) include a power button (51) for connecting to an external power supply and a steaming button (52) for controlling the heating module (32).

5. An embedded rice cooker according to claim 4, characterized in that: The pot body assembly (300) is also provided with a locking device (13) for restricting the extraction of the box body panel (11). The locking device (13) includes a retractable lock tongue and a retractor for driving the lock tongue. The control panel is electrically connected to the locking device (13). The switch buttons (510) include a locking button (55) for controlling the locking device (13).

6. An embedded rice cooker according to claim 4, wherein: The pot body assembly (300) also includes a pot body mounting base (33). The heating module (32) is installed on the pot body mounting base (33). The pot body mounting base (33) is installed with a weight sensor (34) for measuring the feeding amount of rice water. The weight sensor (34) is electrically connected to the control panel.

7. An embedded rice cooker according to claim 4, wherein: The upper side plate A (110) of the embedded box body (100) is the box body panel (11), the pot cover assembly (200) is installed on the box body panel (11), and the box body panel (11) is hinged to the box body side plate (12) through a hinge assembly (14).

8. An embedded rice cooker according to claim 4, characterized in that: The front side plate B (120) of the embedded box body (100) is the box body panel (11), the pot cover assembly (200) is installed on the box body side plate (12), and the box body panel (11) and the box body side plate (12) are cooperatively connected through a slidable and telescopic slide rail assembly (15), and the pot body assembly (300) is installed between the box body panel (11) and the slide rail assembly (15).

9. An embedded rice cooker according to claim 8, characterized in that: The pot body assembly (300) further includes a driving assembly (600) for driving the pot body assembly (300) to move. The driving assembly (600) is electrically connected to the control panel. The driving assembly (600) includes a driving device (61) for providing power, a transmission mechanism (62) for transmitting power, and a fixing member (63) for cooperating with the transmission mechanism (62). The output end of the driving device (61) drives the transmission mechanism (62) to cooperate with the fixing member (63) to operate, so that the pot body assembly (300) can reciprocate along the length direction of the slide rail assembly (15).

10. Integrated stove, characterized in that: It includes a stove cabinet and the embedded rice cooker according to any one of claims 1-9 installed in the stove cabinet, and the stove cabinet is provided with a ventilation opening for the exhaust assembly (400) to discharge steam.