Industrial material storage container system

By using pressure sensors and transmitters in industrial material storage containers, the specific quantity of materials in the storage compartments is monitored, achieving real-time and accurate monitoring of industrial materials. This, as detailed in the patent specification, solves the problem of inaccurate material quantity monitoring in traditional containers and improves the automation level of inventory management.

CN223751642UActive Publication Date: 2026-01-02江阴市富仁智能科技有限公司
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Patent Information

Application Number
CN202520066800.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-13
Publication Date
2026-01-02
Estimated Expiration
2035-01-13

AI Technical Summary

Technical Problem

Traditional industrial material storage containers cannot monitor the quantity of materials in the storage compartments in real time, resulting in inaccurate inventory information and affecting production planning and material procurement decisions.

Method used

The system uses pressure sensors and transmitters to monitor the weight of materials in the storage compartments in real time, displays the quantity of materials through a data acquisition terminal and a main display, and combines a buzzer alarm function to prevent incorrect retrieval and placement, thus achieving automated management.

Benefits of technology

It enables real-time quantity monitoring and accurate statistics of industrial materials, reduces errors in manual recording, and improves inventory management efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of material storage and taking, in particular to an industrial material storage container system which comprises a line side cabinet, a plurality of storage units are arranged in the line side cabinet, each storage unit comprises an integrated controller and a platform scale, a plurality of pressure sensors are arranged at the platform scale, and the pressure sensors are connected with the line side cabinet. The top parts of the plurality of pressure sensors are correspondingly provided with storage grids, the storage grids are used for placing industrial materials, transmitters are arranged at the storage grids, the transmitters are electrically connected with the pressure sensors and the centralized controller, the outer walls of the storage grids are provided with serial port screens, and the serial port screens are electrically connected with the transmitters. According to the utility model, the quantity of each industrial material in the container can be well monitored when being stored and taken, so that the management is convenient.
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Description

TECHNICAL FIELD

[0001] The utility model relates to material storage technology field, concretely relates to an industrial material storage cabinet system. BACKGROUND

[0002] In modern industrial production, the storage and management of industrial materials are the key links to ensure production efficiency and reduce costs. With the improvement of automation level and the increase of logistics management complexity, the traditional manual management of material storage cabinet equipment cannot meet the requirements of large-scale production enterprises.

[0003] The industrial material storage cabinet currently in use often cannot monitor the material quantity of each storage compartment in the cabinet in real time, resulting in the problem of information asymmetry in material management for enterprises. When materials enter or leave the storage area, the user needs to record manually, which is easy to miss or make mistakes, thereby causing inaccurate inventory information, making it difficult for enterprises to accurately grasp the use of materials, and further affecting production planning and material procurement decisions. UTILITY MODEL CONTENT

[0004] The utility model provides an industrial material storage cabinet system, which can overcome some or some defects of the prior art.

[0005] According to the industrial material storage cabinet system of the utility model, a plurality of storage units are arranged in the line edge cabinet, the storage unit includes a centralized controller and a platform scale, a plurality of pressure sensors are arranged at the platform scale, a storage compartment corresponding to each pressure sensor is arranged at the top of each pressure sensor, the storage compartment is used for placing industrial materials, a transmitter is arranged at the storage compartment, the transmitter is electrically connected with the pressure sensor and the centralized controller, and a serial port screen is arranged on the outer wall of the storage compartment and electrically connected with the transmitter.

[0006] As a preferred, it further includes a data acquisition terminal and a main display, and the data acquisition terminal is electrically connected with the centralized controller and the main display.

[0007] As a preferred, the data acquisition terminal includes a communication module, and the communication module communicates with a background server.

[0008] As a preferred, it further includes a 24V switching power supply, and the 24V switching power supply is electrically connected with the centralized controller and the data acquisition terminal.

[0009] As preferred, the transmitter comprises a first microprocessor, a first ferroelectric memory, a pressure sensor output, a serial screen output, an ADC module and a first interface, the first microprocessor is electrically connected with the first ferroelectric memory, the pressure sensor output, the serial screen output and the first interface, the pressure sensor output is connected with the pressure sensor, the serial screen is connected with the serial screen output, the ADC module is connected with the pressure sensor output and the first microprocessor, and the ADC module is used for converting the electric signal of the pressure sensor into a digital signal and transmitting the digital signal to the first microprocessor.

[0010] As preferred, the centralized controller comprises a second microprocessor, a second ferroelectric memory, a second interface and a third interface, the second microprocessor is electrically connected with the second ferroelectric memory, the second interface and the third interface, the second interface is connected with the first interface through a network cable, and the third interface is connected with the data acquisition terminal through a network cable.

[0011] As preferred, the transmitter further comprises a buzzer, and the buzzer is electrically connected with the first microprocessor.

[0012] As preferred, the centralized controller further comprises an unlocking circuit, and a cabinet door lock is arranged at the storage compartment in correspondence, and the cabinet door lock is electrically connected with the unlocking circuit.

[0013] Advantageous effects:

[0014] 1. The industrial materials placed in the storage compartment can be sensed by the pressure sensor to obtain the total weight, so as to obtain the specific quantity of the industrial materials, which is transmitted to the data acquisition terminal through the transmitter, so that the user can know the real-time remaining quantity of the industrial materials, and the data acquisition terminal can know the quantity of the industrial materials taken or placed each time, thereby preferably facilitating statistics and management.

[0015] 2. The serial screen can display the quantity of the industrial materials in the storage compartment, thereby facilitating the user to know the material stock in the storage compartment. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a structural block diagram of the industrial material storage cabinet system.

[0017] Figure 2 It is a structural block diagram of the transmitter.

[0018] Figure 3 It is a structural block diagram of the centralized controller.

[0019] Figure 4 It is a structural block diagram of the platform scale.

[0020] Figure 5 It is a working flowchart of the industrial material storage cabinet system. DETAILED DESCRIPTION

[0021] In order to further understand the content of the utility model, the utility model is described in detail in combination with examples. It should be understood that the examples are merely used to explain the utility model and not to limit it.

[0022] Seen in Figures 1-4 The embodiment provides an industrial material storage cabinet system, which comprises a line-side cabinet, a plurality of storage units are arranged in the line-side cabinet, the storage unit comprises a centralized controller and a platform scale, a plurality of pressure sensors are arranged at the platform scale, a storage compartment corresponding to each pressure sensor is arranged at the top of the pressure sensor, the storage compartment is used for placing industrial materials, a transmitter is arranged at the storage compartment, the transmitter is electrically connected with the pressure sensor and the centralized controller, and a serial port screen is arranged on the outer wall of the storage compartment and is electrically connected with the transmitter.

[0023] Further, the industrial material storage cabinet system further comprises a data acquisition terminal and a main display, the data acquisition terminal is used for being electrically connected with the centralized controller and the main display, the data acquisition terminal comprises a communication module, the communication module communicates with a background server, the background server can be connected with a plurality of upper computers such as mobile phones or PCs through a network, so that remote query and remote control of industrial material storage and taking in the industrial material storage cabinet system are realized.

[0024] It can be understood that the communication module comprises a WIFI module, a 4G / 5G module and a wired network module, so that the communication module can send data to the background server in a wireless or wired mode.

[0025] According to the scheme provided in the embodiment, the industrial materials placed in the storage compartment can be sensed by the pressure sensor according to the total weight, so that the specific quantity of the industrial materials is known, the transmitter is used for transmitting to the data acquisition terminal, and the user can know the real-time remaining quantity of the industrial materials, and the data acquisition terminal can know the quantity of the industrial materials taken or placed each time, so that the statistics and management are facilitated.

[0026] It can be understood that the mass range of a single industrial material is 10g-500g, one storage compartment is used for placing one kind of material, the mass tolerance of a single material is less than or equal to 0.5g, and the quantity of the industrial materials placed in the storage compartment is determined according to the size of the material and the counting accuracy of the pressure sensor, and the upper limit of the storage mass of each storage compartment is 5000g.

[0027] The serial port screen can display the quantity of the industrial materials in the storage compartment, so that the user can know the material reserves in the storage compartment, and in addition, when the user performs the storage and taking operation, the serial port screen can display a specific color block and the actual quantity taken, the color block is initially red, becomes green after the corresponding quantity of materials is taken out, and becomes red again if the materials are continuously taken, so that the user can avoid taking the wrong quantity of materials.

[0028] In the embodiment, the industrial material storage cabinet system further comprises a 24V switching power supply, which is electrically connected with the centralized controller to ensure power supply of the centralized controller.

[0029] In the embodiment, the transmitter comprises a first microprocessor, a first ferroelectric memory, a pressure sensor output port, a serial screen output port, an ADC module and a first interface, the first microprocessor is electrically connected with the first ferroelectric memory, the pressure sensor output port, the serial screen output port and the first interface, the pressure sensor output port is connected with the pressure sensor, the serial screen is connected with the serial screen output port, the ADC module is connected with the pressure sensor output port and the first microprocessor, and the ADC module is used to convert the electric signal of the pressure sensor into a digital signal and transmit the digital signal to the first microprocessor.

[0030] Further, the transmitter further comprises a buzzer, which is electrically connected with the first microprocessor

[0031] That is, when the user takes the material, if the user takes the wrong number of materials, the buzzer alarms, and when the material is returned, the alarm is released, or when the industrial material in the storage compartment is too much, the pressure sensor exceeds the threshold, the buzzer alarms, and when the excess part is taken out, the alarm is released.

[0032] In the embodiment, the centralized controller comprises a second microprocessor, a second ferroelectric memory, a second interface and a third interface, the second microprocessor is electrically connected with the second ferroelectric memory, the second interface and the third interface, the second interface is connected with the first interface through a network cable, and the third interface is connected with the data acquisition terminal through a network cable.

[0033] Further, the centralized controller further comprises an unlocking circuit, and a cabinet door lock is arranged at the storage compartment and is electrically connected with the unlocking circuit.

[0034] Working principle:

[0035] As shown in Figure 5 That is, when the industrial material storage cabinet system is used, first, the identity is verified and the industrial material to be taken or placed is determined at the main display, then the user opens the storage compartment where the material is stored, closes the storage compartment after completing the material storage and taking operation, the pressure sensor at the storage compartment senses the change of weight, the ADC module collects data and transmits the data to the first microprocessor, the first microprocessor detects the data change, stores the changed data into the first ferroelectric memory and sends the data to the centralized controller, the second microprocessor of the centralized controller stores the received data into the second ferroelectric memory and uploads the data to the data acquisition terminal, at this time, the material data after storage can be displayed through the serial screen and the background server.

[0036] It is easy to understand that the person skilled in the art can combine, split, recombine, etc. the embodiments of the present application on the basis of one or several embodiments provided by the present application to obtain other embodiments, and these embodiments do not exceed the protection scope of the present application.

[0037] The above describes the present application and its embodiments in a schematic manner, and the description is not restrictive. The embodiments shown are only part of the embodiments of the present application, and the actual structure is not limited thereto. Therefore, if a person skilled in the art is inspired by the present application, without departing from the spirit of the present application, similar structural modes and embodiments can be designed without creativity, and all of them should belong to the protection scope of the present application.

Claims

1. An industrial material storage bin system, characterized by, The line side cabinet is internally provided with a plurality of storage units, the storage unit comprises a centralized controller and a platform scale, a plurality of pressure sensors are arranged at the platform scale, a plurality of storage compartments are correspondingly arranged at the top of the plurality of pressure sensors, the storage compartments are used for placing industrial materials, transmitters are arranged at the storage compartments, the transmitters are electrically connected with the pressure sensors and the centralized controller, and serial port screens are arranged on the outer walls of the storage compartments.

2. The industrial material storage locker system of claim 1, wherein, The data acquisition terminal and the main display are also included, the data acquisition terminal is electrically connected with the centralized controller and the main display.

3. The industrial material storage locker system of claim 2, wherein, The data acquisition terminal comprises a communication module, and the communication module communicates with a background server.

4. The industrial material storage locker system of claim 2, wherein, The 24V switching power supply is also included, and the 24V switching power supply is electrically connected with the centralized controller and the data acquisition terminal.

5. The industrial material storage locker system of claim 2, wherein, The transmitter comprises a first microprocessor, a first ferroelectric memory, a pressure sensor output port, a serial port screen output port, an ADC module and a first interface, the first microprocessor is electrically connected with the first ferroelectric memory, the pressure sensor output port, the serial port screen output port and the first interface, the pressure sensor output port is connected with the pressure sensor, the serial port screen is connected with the serial port screen output port, the ADC module is connected with the pressure sensor output port and the first microprocessor, and the ADC module is used for converting an electric signal of the pressure sensor into a digital signal and transmitting the digital signal to the first microprocessor.

6. The industrial material storage bin system of claim 5, wherein, The centralized controller comprises a second microcontroller, a second ferroelectric memory, a second interface and a third interface, the second microcontroller is electrically connected with the second ferroelectric memory, the second interface and the third interface, the second interface is connected with the first interface through a network cable, and the third interface is connected with the data acquisition terminal through the network cable.

7. The industrial material storage bin system of claim 5, wherein, The transmitter further comprises a buzzer, and the buzzer is electrically connected with the first microprocessor.

8. The industrial material storage locker system of claim 1, wherein, The centralized controller further comprises an unlocking circuit, and a cabinet door lock is correspondingly arranged at the storage compartment, and the cabinet door lock is electrically connected with the unlocking circuit.