Intelligent food steaming bin

The design of the intelligent rice steaming chamber solves the problem that traditional rice steaming equipment is difficult to accurately control the cooking process, achieves precise cooking of rice and energy saving and environmental protection, provides remote control function, and improves cooking efficiency and quality.

CN223349976UActive Publication Date: 2025-09-19QINGSUN ROBOT TECHNOLOGY SERVICE (LIAONING) CO LTD
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Patent Information

Application Number
CN202422683948.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-05
Publication Date
2025-09-19
Estimated Expiration
2034-11-05

AI Technical Summary

Technical Problem

Traditional rice steaming equipment makes it difficult to precisely control the cooking process, resulting in inconsistent rice taste, nutrient loss, and energy waste. It also lacks remote control and temperature maintenance functions.

Method used

An intelligent food steaming chamber was designed, equipped with a temperature sensor, humidity sensor, chain drive motor, chamber door pneumatic module and control center, which can automatically detect and adjust cooking parameters and can be remotely controlled via the Internet. It combines energy-saving heating elements and segmented temperature control design.

Benefits of technology

It achieves precise control of the rice cooking process, ensuring rich taste and nutrition, while saving energy and protecting the environment, providing remote control convenience, and improving energy utilization efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223349976U_ABST
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Abstract

The utility model discloses an intelligent meal steaming bin. A bin door is arranged in front of a bin body; a transmission chain is arranged at the lower end of the bin body; multiple layers of meal boxes are arranged above the transmission chain; a steam pipe and a heating pipe are arranged below the chain, and a refrigerating pipe is arranged above the bin body; a plurality of temperature sensors and humidity sensors are arranged in the bin body; the temperature sensor and the humidity sensor are both connected with the control center; the chain driving motor and the bin door driving pneumatic module are both connected with the control center. The electric rice cooker can automatically detect and adjust key parameters such as temperature, humidity and the like, and ensures that rice tastes delicious and is rich in nutrition; meanwhile, daily use of the user is greatly facilitated through remote control and reservation functions; in addition, the energy-saving heating element and the independent and sectional temperature control design further improve the energy utilization efficiency, and conform to the energy-saving and environment-friendly concept of the modern society.
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Description

Technical Field

[0001] The utility model relates to the field of machinery, in particular to a food processing machine, and more particularly to a meal steaming bin. Background Art

[0002] Traditional rice steaming equipment often relies on manual adjustments to heat and cooking time, making it difficult to precisely control the cooking process of rice and dishes. This can easily lead to problems such as inconsistent rice taste, nutrient loss, and energy waste. With the rapid development of IoT technology and the increasing popularity of smart products, consumers are increasingly demanding automated, precise, energy-efficient, and environmentally friendly cooking equipment. Furthermore, after steaming, the rice must maintain a certain temperature. Furthermore, if food requires heating or refrigeration, a device is required to achieve these functions. Being able to remotely control food machinery greatly facilitates its use. Therefore, it is particularly important to develop a smart steaming chamber that can automatically adjust cooking parameters to improve cooking efficiency and quality. Utility Model Content

[0003] An intelligent food steaming chamber comprises a chamber body, with a chamber door provided in front of the chamber body; a transmission chain is provided at the lower end of the chamber body, and multi-layered food boxes are provided above the transmission chain; a steam pipe and a heating pipe are provided below the chain, and a refrigeration pipe is provided above the chamber body; a plurality of temperature sensors and humidity sensors are provided in the chamber body; the temperature sensors and humidity sensors are both connected to a control center; a chain drive motor and a chamber door drive pneumatic module are both connected to the control center.

[0004] The chain is meshed with the sprocket and the driving sprocket below, and the driving sprocket is meshed with the driving teeth of the output shaft of the chain drive motor.

[0005] The warehouse door is axially connected to the warehouse body; the middle section of the warehouse door is connected to the warehouse door driving pneumatic module, and the warehouse door driving pneumatic module is a cylinder assembly.

[0006] The warehouse body is arranged on a frame, and a refrigeration compressor and a refrigeration fan are also arranged at one end of the frame.

[0007] The control center is connected to the operating mobile phone through the communication module and the Internet.

[0008] The warehouse body is provided with an axle seat, the support shaft is fixed between the axle seats at both ends of the warehouse body, and a sprocket is provided on the support shaft.

[0009] The advantages of this utility model include precise control over the cooking process of rice and other dishes. The intelligent steaming chamber automatically detects and adjusts key parameters such as temperature and humidity to ensure the rice is delicious and nutritious. Furthermore, remote control and scheduling greatly facilitate daily use. Furthermore, the energy-saving heating element and independent, segmented temperature control design further enhance energy efficiency, in line with modern society's energy-saving and environmentally friendly concepts. BRIEF DESCRIPTION OF THE DRAWINGS

[0010] Figure 1 This is a schematic diagram of the three-dimensional structure of the utility model after the warehouse body is removed;

[0011] Figure 2 It is an enlarged schematic diagram of the connection part of the sprocket and the shaft seat;

[0012] Figure 3 for Figure 1 Top view after adding the warehouse body;

[0013] Figure 4 for Figure 1 Left view of;

[0014] In the figure, 1 is the frame, 2 is the chain, 3 is the chain drive motor, 4 is the lunch box, 5 is the cooling fan, 6 is the cooling compressor, 7 is the shaft seat, 8 is the cooling pipe, 9 is the support shaft, 10 is the sprocket, 11 is the pneumatic module, 12 is the warehouse body, 13 is the steam pipe, 14 is the heating pipe, and 15 is the warehouse door. DETAILED DESCRIPTION

[0015] The following is a detailed description of the present invention with reference to the accompanying drawings. As shown in the figure, two axle seats 7 are provided at one end of the frame. A support shaft 9 is fixed between the axle seats 7 at each end of the frame, and a sprocket 10 is mounted on the support shaft 9. A corresponding sprocket is also provided at the other end of the frame, but one of the sprockets at this end meshes with the driving gear on the output shaft of the chain drive motor 3. Chains 2 are mounted on the sprockets, with two chains on each side. Lunch boxes 4 are placed above the chains 2. The lunch boxes can be stacked directly on the chains or rest on the chains via support plates below the boxes. This allows the boxes to move forward and backward through the rotation of the chains. The outer side of the lunch boxes is a compartment body 12, with a compartment door 15 located in front of the compartment body. The compartment door comprises pneumatic modules 11 located on either side of the compartment body's mid-end. The base of the compartment door is connected to the compartment body's shaft, and the middle section of the compartment door is connected to the compartment door drive pneumatic module, which is a cylinder assembly. The pneumatic module drives the compartment door to open and close.

[0016] A steam pipe 13 and a heating pipe 14 are installed below the chain, a cooling pipe 8 is installed above the warehouse, and multiple temperature and humidity sensors are installed inside the warehouse. These temperature and humidity sensors are all connected to the control center. The chain drive motor and the warehouse door drive pneumatic module are also connected to the control center. The control center here can be a single-chip microcomputer or a programmable logic controller.

[0017] The warehouse body is arranged on a frame 1, and a refrigeration compressor 6 and a refrigeration fan 5 are also arranged at one end of the frame.

[0018] The control center is connected to the operating mobile phone through the communication module and the Internet.

Claims

1. An intelligent steaming chamber, comprising a chamber body, characterized in that: A warehouse door is set in front of the warehouse body; a transmission chain is set at the lower end of the warehouse body, and a multi-layer lunch box is set above the transmission chain; a steam pipe and a heating pipe are set below the chain, and a refrigeration pipe is set above the warehouse body; multiple temperature sensors and humidity sensors are set in the warehouse body; the temperature sensors and humidity sensors are all connected to the control center; the chain drive motor and the warehouse door drive pneumatic module are both connected to the control center.

2. The intelligent food steaming chamber according to claim 1, characterized in that: The chain is meshed with the sprocket and the driving sprocket below, and the driving sprocket is meshed with the driving teeth of the output shaft of the chain drive motor.

3. The intelligent food steaming chamber according to claim 1, characterized in that: The warehouse door is axially connected to the warehouse body; the middle section of the warehouse door is connected to the warehouse door driving pneumatic module, and the warehouse door driving pneumatic module is a cylinder assembly.

4. The intelligent food steaming chamber according to claim 1, characterized in that: The warehouse body is arranged on a frame, and a refrigeration compressor and a refrigeration fan are also arranged at one end of the frame.

5. The intelligent food steaming chamber according to claim 1, characterized in that: The control center is connected to the operating mobile phone through the communication module and the Internet.

6. The intelligent food steaming chamber according to claim 1, characterized in that: The warehouse body is provided with an axle seat, the support shaft is fixed between the axle seats at both ends of the warehouse body, and a sprocket is provided on the support shaft.