Internet of Things self-heating rice packaging structure with intelligent temperature control feedback function and system thereof

By introducing an intelligent temperature control system and component design into the self-heating rice packaging structure, the problems of poor heating performance and safety hazards are solved, and a stable and safe heating effect and an extended service life are achieved.

CN120607036AInactive Publication Date: 2025-09-09CHONGQING YINGCAI FOOD CO LTD
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Patent Information

Application Number
CN202510796969.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-16
Publication Date
2025-09-09
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing self-heating rice packaging structure has poor heating performance and poses safety hazards, such as explosion caused by overheating of the heating device and uneven heating caused by control system disorder.

Method used

An IoT self-heating rice packaging structure with intelligent temperature control feedback was designed, including components such as a self-heating outer shell, a self-heating top cover, a water storage tank, a storage box, a heating shell, and a heating plate. Combined with a display data module, an intelligent controller module, a sensor module, and a heating equipment module, precise temperature control and safe heating can be achieved.

Benefits of technology

The heating performance is improved, the potential safety hazards are reduced, the service life is extended, and the stability and diversity of the device are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of self-heating packaging, and discloses an internet-of-things self-heating rice packaging structure with intelligent temperature control feedback and a system thereof, the structure comprises a self-heating shell and a self-heating auxiliary cover at the top of the self-heating shell, one side of the self-heating auxiliary cover is fixedly connected to the self-heating shell, and the other side of the self-heating auxiliary cover is fixedly connected to the self-heating shell. A self-heating top cover is arranged on the side, perpendicular to the self-heating outer shell, of the self-heating auxiliary cover, a water storage tank is arranged on the side, close to the self-heating top cover, of the self-heating outer shell, the water storage tank is arranged in the self-heating outer shell, and a storage box is arranged on the side, close to the self-heating top cover, of the water storage tank. According to the self-heating device, the water storage tank is arranged on the side, close to the self-heating top cover, of the self-heating shell, the water storage tank is arranged in the self-heating shell, the whole device is easy to operate, repeated use can be achieved, cleaning can be well conducted, internal part structures of the device cannot be damaged, the water adding and pouring process is simple and rapid, secondary transmission is not needed, and the device is convenient to use. Therefore, the actual use effect of the whole device is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of self-heating packaging, and in particular to an Internet of Things self-heating rice packaging structure and system with intelligent temperature control feedback. Background Art

[0002] Intelligent temperature control refers to the process of achieving precise temperature monitoring, automatic adjustment, and intelligent management through advanced sensor technology, control algorithms, and actuators. Its core is to dynamically maintain the target temperature through a closed-loop control system. It is widely used in industrial manufacturing, smart homes, medical equipment, agricultural breeding, and other fields. The packaging structure design of self-heating rice must take into account safety, convenience, heat transfer efficiency, and food hygiene. It usually consists of outer packaging, inner packaging, heating packs, and food packs. Each component has a clear function and cooperates with each other. The application of intelligent temperature control technology to self-heating packaging is a new device in the smart home industry in recent years. It is not fully intelligent and has an imperfect structure.

[0003] However, in actual use, the above-mentioned IoT self-heating rice packaging structure and system with intelligent temperature control feedback have poor self-heating performance on the one hand, and are prone to safety hazards on the other hand, such as explosion caused by overheating of the heating device and uneven heating caused by control system disorder. To this end, we propose an IoT self-heating rice packaging structure and system with intelligent temperature control feedback. Summary of the Invention

[0004] (1) Technical problems solved In response to the shortcomings of the existing technology, the present invention provides an Internet of Things self-heating rice packaging structure and system with intelligent temperature control feedback, which solves the problems of poor heating performance and potential safety hazards in the existing technology.

[0005] (2) Technical solution To achieve the above objectives, the present invention is implemented through the following technical solutions: an Internet of Things self-heating rice packaging structure and system with intelligent temperature control feedback, comprising a self-heating outer shell and a self-heating auxiliary cover on the top of the self-heating outer shell, one side of the self-heating auxiliary cover is fixedly connected to the self-heating outer shell, and the self-heating auxiliary cover is provided with a control panel for use therewith, a self-heating top cover is provided on a side of the self-heating auxiliary cover perpendicular to the self-heating outer shell, and the side of the self-heating top cover close to the self-heating outer shell is movably connected to the self-heating outer shell, a water storage tank is provided on a side of the self-heating outer shell close to the self-heating top cover, and the water storage tank is placed inside the self-heating outer shell, a storage box is provided on a side of the water storage tank close to the self-heating top cover, and one side of the storage box is inserted into the water storage tank and placed inside the water storage tank, an additional box is provided on a side of the storage box away from the water storage tank, and one side of the additional box is placed in the storage box and movably connected to the storage box.

[0006] Preferably, a heating shell is provided on the side of the water tank close to the storage box, and one side of the heating shell is fixedly connected to the water tank. A heating plate is provided on the side of the heating shell away from the water tank, and one side of the heating plate is placed in the heating shell and fixedly connected to the heating shell.

[0007] Preferably, a placement piece is installed on a side of the heating shell close to the storage box, and one side of the placement piece is placed in the heating shell and fixedly connected to the heating shell, and the side of the storage box close to the placement piece is movably connected to the placement piece.

[0008] Preferably, an equipment slot is provided on the side of the self-heating shell away from the water storage tank, and one side of the equipment slot is placed inside the self-heating shell parallel to the water storage tank, a pressure piston is installed on the side of the self-heating top cover away from the self-heating shell, and one side of the pressure piston passes through the self-heating top cover and is movably connected to the self-heating top cover, and an air diffusion hole is provided on the side of the self-heating top cover close to the pressure piston for use with the pressure piston.

[0009] Preferably, an anti-overflow seal is installed on the side of the self-heating top cover close to the self-heating outer shell, and one side of the anti-overflow seal is fixedly connected to the self-heating top cover, and an air filter plate is installed on the side of the anti-overflow seal away from the self-heating top cover, and one side of the air filter plate is movably connected to the anti-overflow seal, and the self-heating top cover is provided with an air outlet hole used in conjunction with the air diffusion hole.

[0010] Preferably, the self-heating top cover is fixedly connected to a fastener on one side close to the self-heating auxiliary cover, and the fastener is provided with a matching opening and closing spring component on one side close to the self-heating auxiliary cover, and one side of the opening and closing spring component is fixedly connected to the self-heating auxiliary cover.

[0011] Preferably, a buffer connector is installed on the side of the self-heating top cover close to the self-heating shell, and one side of the buffer connector is fixedly connected to the self-heating top cover, and the side of the buffer connector away from the self-heating top cover is fixedly connected to the self-heating shell.

[0012] Preferably, it includes a display data module, an intelligent controller module, a sensor module, and a heating equipment module; The data display module is used for data display and touch control during equipment use, including opening and closing devices, raising and lowering the temperature of heating equipment. The opening and closing devices include regulating the actual start and end time of each process of the equipment and the operating time of key equipment. Raising and lowering the temperature of heating equipment includes actual temperature control in actual use and equipment performance limit debugging; The intelligent controller module is used for intelligent adjustment and analysis during device use, including analysis and adjustment of sensor data and intelligent terminal transmission. The analysis and adjustment of sensor data includes analyzing and processing sensor data and generating adjustment instructions through a preset control algorithm (such as PID control, fuzzy control, etc.). The intelligent terminal transmission includes a microprocessor (such as a single-chip microcomputer, PLC) or an intelligent terminal (such as an embedded system, edge computing device); The sensor module is used to collect ambient temperature and transmit data in real time during device use. It is mainly made of semiconductor materials. Its resistance value is very sensitive to temperature changes, and it has high sensitivity, fast response speed, small size and low cost. The heating equipment module is used as the main heating mechanism during the use of the equipment, and is controlled and regulated by front-end data to change the main body temperature.

[0013] In summary, the technical effects and advantages of the present invention are: 1. In the present invention, a water storage tank is provided on one side of the self-heating shell close to the self-heating top cover, and the water storage tank is placed inside the self-heating shell. The overall operation of the device is simple and can be reused. During use, the overall structure of the device is not easy to produce stains, and it is easy to clean without damaging the internal parts structure of the device. The process of adding and pouring water is also simple and quick, and no secondary transmission is required, thereby improving the actual use effect of the entire device.

[0014] 2. In the present invention, an additional box is provided on a side of the storage box away from the water tank, and one side of the additional box is placed in the storage box and movably connected to the storage box. A placement piece is installed on the side of the heating shell close to the storage box, and the side of the storage box close to the placement piece is movably connected to the placement piece. The container for rice inside is the storage box. A small additional box is added to the inside of the storage box, which is convenient for people to add other auxiliary ingredients and can better isolate rice from mixing with other soup foods, thereby improving the overall usage diversity of the device.

[0015] 3. In the present invention, an intelligent temperature control system is provided in the device, which includes a display data module, an intelligent controller module, a sensor module, and a heating equipment module. A good device is inseparable from a stable internal system. A series of intelligent control measures can effectively reduce the internal temperature of the device, for operations that damage the equipment such as excessive heating, thereby extending the overall service life of the device and the stability of use. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a schematic diagram of the overall structure of an IoT self-heating rice packaging structure with intelligent temperature control feedback according to the present invention; Figure 2 This is a schematic diagram of the axial structure of the self-heating housing and storage box of the present invention; Figure 3Schematic diagram of the cross-sectional structure of the self-heating housing and storage box of the present invention; Figure 4 This is a schematic diagram of the axial structure of the self-heating top cover and the self-heating auxiliary cover of the present invention; Figure 5 This is a schematic diagram of the axial structure of the self-heating top cover and the air filter plate of the present invention; Figure 6 Schematic diagram of the cross-sectional structure of the self-heating top cover and the air filter plate of the present invention; Figure 7 This is a schematic diagram of the axial structure of the storage box of the present invention; Figure 8 The figure is a flow chart of the Internet of Things self-heating rice packaging system with intelligent temperature control feedback of the present invention.

[0017] In the figure: 1. Self-heating outer shell; 101. Equipment slot; 102. Water storage tank; 103. Placement part; 2. Self-heating top cover; 201. Buffer connection part; 202. Fastener; 203. Anti-overflow seal; 204. Air diffusion hole; 3. Self-heating auxiliary cover; 301. Control panel; 302. Opening and closing spring part; 4. Storage box; 401. Additional box; 5. Heating shell; 501. Heating plate; 6. Pressure piston; 7. Air filter plate; 701. Air outlet. DETAILED DESCRIPTION

[0018] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0019] refer to Figures 1-8The self-heating rice packaging structure and system of the Internet of Things with intelligent temperature control feedback shown in the figure include a self-heating outer shell 1 and a self-heating auxiliary cover 3 on the top of the self-heating outer shell 1. One side of the self-heating auxiliary cover 3 is fixedly connected to the self-heating outer shell 1, and the self-heating auxiliary cover 3 is provided with a control panel 301 for use with it. A self-heating top cover 2 is provided on one side of the self-heating auxiliary cover 3 perpendicular to the self-heating outer shell 1, and the side of the self-heating top cover 2 close to the self-heating outer shell 1 is movably connected to the self-heating outer shell 1. A water storage tank 102 is provided on the side of the self-heating outer shell 1 close to the self-heating top cover 2, and the water storage tank 102 is placed inside the self-heating outer shell 1. A storage box 4 is provided on a side close to the self-heating top cover 2, and one side of the storage box 4 is inserted into the water tank 102 and placed inside the water tank 102. An additional box 401 is provided on a side of the storage box 4 away from the water tank 102, and one side of the additional box 401 is placed in the storage box 4 and movably connected to the storage box 4. A heating shell 5 is provided on a side of the water tank 102 close to the storage box 4, and one side of the heating shell 5 is fixedly connected to the water tank 102. A heating plate 501 is provided on a side of the heating shell 5 away from the water tank 102, and one side of the heating plate 501 is placed in the heating shell 5 and fixedly connected to the heating shell 5.

[0020] Among them, a placement piece 103 is installed on the side of the heating shell 5 close to the storage box 4, and one side of the placement piece 103 is placed in the heating shell 5 and fixedly connected to the heating shell 5, and the side of the storage box 4 close to the placement piece 103 is movably connected to the placement piece 103, and an equipment slot 101 is provided on the side of the self-heating shell 1 away from the water tank 102, and one side of the equipment slot 101 is placed inside the self-heating shell 1 in parallel with the water tank 102, and a pressure piston 6 is installed on the side of the self-heating top cover 2 away from the self-heating shell 1, and one side of the pressure piston 6 passes through the self-heating top cover 2 and is movably connected to the self-heating top cover 2, and an air diffusion hole 204 used in conjunction with the pressure piston 6 is provided on the side of the self-heating top cover 2 close to the pressure piston 6.

[0021] Among them, the self-heating top cover 2 is provided with an overflow-proof seal 203 on the side close to the self-heating outer shell 1, and one side of the overflow-proof seal 203 is fixedly connected to the self-heating top cover 2, and the overflow-proof seal 203 is provided with an air filter plate 7 on the side away from the self-heating top cover 2, and one side of the air filter plate 7 is movably connected to the overflow-proof seal 203, and the self-heating top cover 2 is provided with an air outlet 701 for use with the air diffusion hole 204, and the self-heating top cover 2 is fixedly connected with a connecting fastener 202 on the side close to the self-heating auxiliary cover 3, and the connecting fastener 202 is provided with an opening and closing spring part 302 for use therewith on the side close to the self-heating auxiliary cover 3, and one side of the opening and closing spring part 302 is fixedly connected to the self-heating auxiliary cover 3, and a buffer connecting part 201 is installed on the side of the self-heating top cover 2 close to the self-heating outer shell 1, and one side of the buffer connecting part 201 is fixedly connected to the self-heating top cover 2, and the side of the buffer connecting part 201 away from the self-heating top cover 2 is fixedly connected to the self-heating outer shell 1.

[0022] Among them, it includes display data module, intelligent controller module, sensor module, and heating equipment module; The data display module is used for data display and touch control during equipment use, including opening and closing devices, raising and lowering the temperature of heating equipment. Opening and closing devices includes regulating the actual start and end time of each process of the equipment and the operating time of key equipment. Raising and lowering the temperature of heating equipment includes actual temperature control and equipment performance limit debugging; Intelligent controller module, used for intelligent regulation and analysis during equipment use, including analysis and regulation of sensor data and transmission to smart terminals. The analysis and regulation of sensor data involves analyzing and processing sensor data and generating regulation instructions through preset control algorithms (such as PID control and fuzzy control). Smart terminal transmission includes microprocessors (such as single-chip microcomputers and PLCs) or smart terminals (such as embedded systems and edge computing devices). The sensor module is used to collect ambient temperature and transmit data in real time during equipment use. It is mainly made of semiconductor materials. Its resistance value is very sensitive to temperature changes, and it has high sensitivity, fast response speed, small size and low cost. The heating equipment module is used as the main heating mechanism during equipment use. It controls and regulates the main body temperature through front-end data control.

[0023] Working principle of the present invention: The breaker 3 that is used for the fire extinguisher 1 is provided with the self-heating top cover 2 on the one side of the self-heating shell 1 and the self-heating auxiliary cover 3 on the top of the self-heating shell 1.

[0024] Secondly, an additional box 401 is provided on the side of the storage box 4 away from the water tank 102, and one side of the additional box 401 is placed in the storage box 4 and movably connected to the storage box 4, and a placement piece 103 is installed on the side of the heating shell 5 close to the storage box 4, and the side of the storage box 4 close to the placement piece 103 is movably connected to the placement piece 103. The container for rice inside is the storage box 4, and a small additional box 401 is added to the inside of the storage box 4, which is convenient for people to add other auxiliary ingredients and can better isolate rice from mixing with other soup foods, thereby improving the overall usage diversity of the device.

[0025] Then, by setting up an intelligent temperature control system in the device, which includes a display data module, an intelligent controller module, a sensor module, and a heating equipment module, a good device is inseparable from a stable internal system. A series of intelligent control measures can effectively reduce the internal temperature of the device, for operations that damage the equipment such as excessive heating, thereby extending the overall service life of the device.

[0026] The electrical components mentioned in this article are all connected to an external main controller and 220V mains electricity, and the main controller can be a conventional known device that performs control such as a computer.

[0027] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. An IoT self-heating rice packaging structure with intelligent temperature control feedback, comprising a self-heating shell (1) and a self-heating auxiliary cover (3) on the top of the self-heating shell (1), characterized in that: One side of the self-heating auxiliary cover (3) is fixedly connected to the self-heating outer shell (1), and a control panel (301) for use therewith is provided on the self-heating auxiliary cover (3); a self-heating top cover (2) is provided on a side of the self-heating auxiliary cover (3) perpendicular to the self-heating outer shell (1), and a side of the self-heating top cover (2) close to the self-heating outer shell (1) is movably connected to the self-heating outer shell (1); a water storage tank (102) is provided on a side of the self-heating outer shell (1) close to the self-heating top cover (2), and the water storage tank (102) is placed inside the self-heating outer shell (1); a storage box (4) is provided on a side of the water storage tank (102) close to the self-heating top cover (2), and one side of the storage box (4) is inserted into the water storage tank (102) and placed inside the water storage tank (102).

2. The IoT self-heating rice packaging structure with intelligent temperature control feedback according to claim 1, characterized in that: An additional box (401) is provided on a side of the storage box (4) away from the water tank (102), and one side of the additional box (401) is placed inside the storage box (4) and movably connected to the storage box (4).

3. The IoT self-heating rice packaging structure with intelligent temperature control feedback according to claim 1, characterized in that: A heating shell (5) is provided on a side of the water storage tank (102) close to the storage box (4), and one side of the heating shell (5) is fixedly connected to the water storage tank (102); a heating plate (501) is provided on a side of the heating shell (5) away from the water storage tank (102), and one side of the heating plate (501) is placed in the heating shell (5) and fixedly connected to the heating shell (5).

4. The IoT self-heating rice packaging structure with intelligent temperature control feedback according to claim 3 is characterized by: A placement piece (103) is installed on one side of the heating shell (5) close to the storage box (4), and one side of the placement piece (103) is placed inside the heating shell (5) and fixedly connected to the heating shell (5), while a side of the storage box (4) close to the placement piece (103) is movably connected to the placement piece (103).

5. The IoT self-heating rice packaging structure with intelligent temperature control feedback according to claim 1, characterized in that: A device tank (101) is provided on a side of the self-heating housing (1) away from the water storage tank (102), and one side of the device tank (101) is placed inside the self-heating housing (1) parallel to the water storage tank (102).

6. The IoT self-heating rice packaging structure with intelligent temperature control feedback according to claim 1, characterized in that: A pressure piston (6) is installed on the side of the self-heating top cover (2) away from the self-heating shell (1), and one side of the pressure piston (6) passes through the self-heating top cover (2) and is movably connected to the self-heating top cover (2). A gas diffusion hole (204) used in conjunction with the pressure piston (6) is provided on the side of the self-heating top cover (2) close to the pressure piston (6).

7. The IoT self-heating rice packaging structure with intelligent temperature control feedback according to claim 1, characterized in that: An anti-overflow seal (203) is installed on a side of the self-heating top cover (2) close to the self-heating housing (1), and one side of the anti-overflow seal (203) is fixedly connected to the self-heating top cover (2); an air filter plate (7) is installed on a side of the anti-overflow seal (203) away from the self-heating top cover (2), and one side of the air filter plate (7) is movably connected to the anti-overflow seal (203); and an air outlet hole (701) used in conjunction with the air diffusion hole (204) is provided on the self-heating top cover (2).

8. The IoT self-heating rice packaging structure with intelligent temperature control feedback according to claim 1, characterized in that: A fastener (202) is fixedly connected to one side of the self-heating top cover (2) close to the self-heating auxiliary cover (3); an opening and closing spring (302) is provided on one side of the fastener (202) close to the self-heating auxiliary cover (3); and one side of the opening and closing spring (302) is fixedly connected to the self-heating auxiliary cover (3).

9. The IoT self-heating rice packaging structure with intelligent temperature control feedback according to claim 1, characterized in that: A buffer connector (201) is installed on a side of the self-heating top cover (2) close to the self-heating outer shell (1), and one side of the buffer connector (201) is fixedly connected to the self-heating top cover (2), while a side of the buffer connector (201) away from the self-heating top cover (2) is fixedly connected to the self-heating outer shell (1).

10. An Internet of Things self-heating rice packaging system with intelligent temperature control feedback, characterized in that: include: Display data module, intelligent controller module, sensor module, heating equipment module; The data display module is used for data display and touch control during equipment use, including opening and closing devices, raising and lowering the temperature of heating equipment. The opening and closing devices include regulating the actual start and end time of each process of the equipment and the operating time of key equipment. Raising and lowering the temperature of heating equipment includes actual temperature control in actual use and equipment performance limit debugging; The intelligent controller module is used for intelligent adjustment and analysis and processing during the use of the device, including analysis and adjustment of sensor data and transmission to an intelligent terminal. The analysis and adjustment of sensor data includes analysis and processing of sensor data and generation of adjustment instructions through a preset control algorithm. The intelligent terminal transmission includes a microprocessor or an intelligent terminal. The sensor module is used to collect ambient temperature and transmit data in real time during device use. It is mainly made of semiconductor materials. Its resistance value is very sensitive to temperature changes, and it has high sensitivity, fast response speed, small size and low cost. The heating equipment module is used as the main heating mechanism during the use of the equipment, and is controlled and regulated by front-end data to change the main body temperature.