A tool management cabinet

The tool management cabinet, controlled by RFID cards and a touch screen, solves the problem of low efficiency in traditional factory tool management, realizes transparent display of tool status and convenient recording, and improves the efficiency of tool management.

CN224544533UActive Publication Date: 2026-07-24GUANGDONG WENHUI DIGITAL TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG WENHUI DIGITAL TECHNOLOGY CO LTD
Filing Date
2025-08-29
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Traditional factory tool management is inefficient, tool ownership is opaque, and manual registration is inefficient and inconvenient for inventory.

Method used

The tool management cabinet is composed of components such as RFID cards, controllers, card readers, electromagnetic locks, LED lights, touch screens, temperature and humidity sensors, and heaters. The RFID cards record tool information, the touch screen controls the electromagnetic locks, the LED lights display the tool status, and the temperature and humidity sensors and heaters maintain the tool environment.

Benefits of technology

It enables convenient recording and transparent display of tool access status, improving the efficiency and accuracy of tool management and reducing manual intervention.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a tool management cabinet, including RFID card, controller, card reader, electromagnetic lock, LED lamp, touch -sensitive screen, humidity transducer, heater, main cabinet body and trigger board, wherein main cabinet body interval is equipped with multiple rows of vice cabinet body, and every vice cabinet body is equipped with the accommodation inner chamber for accommodating tool spare, and every tool spare is equipped with RFID card, and every accommodation inner chamber is equipped with card reader, humidity transducer and heater, and the trigger board can be lifted and set on the bottom wall of the accommodation inner chamber, and the bottom surface of trigger board and the bottom wall of accommodation inner chamber are equipped with the trigger mechanism for triggering card reader, LED lamp and electromagnetic lock power -on work. Through above -mentioned mode, the tool management cabinet can be unlocked through touch -sensitive screen input password to take out or store into the tool spare in vice cabinet body, and when the tool spare is stored, the information of RFID card on the tool spare is read by card reader, so that the access state of tool is recorded conveniently.
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Description

Technical Field

[0001] This utility model relates to the field of intelligent cabinet technology, specifically a tool management cabinet. Background Technology

[0002] Repair tools play a significant role in daily life, and due to their different functions, they are further subdivided into various types of tools (such as wrenches, screwdrivers, electric drills, etc.). People can store tools in toolboxes, but the number and categories of repair tools in factories are quite large, and they are generally stored in tool cabinets.

[0003] In the traditional way, factories manage tools by manually registering them on paper when they are borrowed and returned. However, this method is inefficient for storing or retrieving tools, and the ownership of tools is not transparent. It is usually necessary to check the previous registration information to find out if the tool is still in the tool cabinet. At the same time, it is inconvenient for manual inventory of tools later. Utility Model Content

[0004] (a) Technical problems to be solved

[0005] To address the shortcomings of existing technologies, this utility model provides a tool management cabinet that can solve the aforementioned technical problems.

[0006] (II) Technical Solution

[0007] To solve the above-mentioned technical problems, this utility model provides the following technical solution: a tool management cabinet, comprising multiple RFID cards, a controller, a card reader electrically connected to the controller and used to sense the RFID cards, multiple electromagnetic locks electrically connected to the controller, multiple LED lights electrically connected to the controller, multiple touch screens electrically connected to the controller, multiple temperature and humidity sensors electrically connected to the controller, and multiple heaters electrically connected to the controller. The electromagnetic locks are retractably equipped with locking rods. The cabinet is characterized by further comprising: a main cabinet body, with multiple rows of secondary cabinet bodies spaced vertically, each secondary cabinet body having a storage compartment for storing tools. The inner cavity includes a door for covering each of the auxiliary cabinets, wherein the controller is located within the main cabinet, each tool is equipped with an RFID card, and the outer side of the door is equipped with an LED light and a touch screen. Each inner cavity contains a card reader, a temperature and humidity sensor, and a heater. An electromagnetic lock is located on the side wall of the inner cavity, and the door has a lock hole for locking the locking rod of the electromagnetic lock. A trigger plate is vertically mounted on the bottom wall of the inner cavity, and a triggering mechanism is provided between the bottom surface of the trigger plate and the bottom wall of the inner cavity to energize the card reader, the LED light, and the electromagnetic lock.

[0008] Preferably, the bottom surface of the trigger plate is disposed on the bottom wall of the receiving cavity by a compression spring.

[0009] Preferably, a first lifting groove is provided on one side of the bottom wall of the receiving cavity, and a second lifting groove is provided on the other side of the bottom wall of the receiving cavity, wherein the two ends of the trigger plate are respectively slidably disposed in the first lifting groove and the second lifting groove.

[0010] Preferably, one end of the trigger plate is provided with a first positioning through hole, the other end of the trigger plate is provided with a second positioning through hole, one side of the bottom wall of the receiving cavity is provided with a first slide rod in the first lifting slide groove, and the other side of the bottom wall of the receiving cavity is provided with a second slide rod in the second lifting slide groove, wherein the first slide rod passes through the first positioning through hole, and the second slide rod passes through the second positioning through hole.

[0011] Preferably, the receiving cavity is rectangular, the trigger plate is rectangular, and the width of both ends of the trigger plate is greater than the width of the receiving cavity, and the width of both ends of the trigger plate is less than the distance between the first lifting slide and the second lifting slide.

[0012] Preferably, the triggering mechanism includes a first conductor and a second conductor, wherein the first conductor is disposed on the bottom surface of the trigger plate, the second conductor is disposed on the bottom wall of the receiving cavity, and the first conductor extends with a downwardly disposed first extension portion, and the second conductor extends with an upwardly disposed second extension portion corresponding to the first extension portion, and when the first extension portion and the second extension portion are in contact and connected, the first conductor, the second conductor, the card reader, the LED light, the electromagnetic lock and the controller form a conductive circuit.

[0013] (III) Beneficial Effects

[0014] Compared with existing technologies, this utility model provides a tool management cabinet with the following advantages: The tool management cabinet disclosed in this utility model includes an RFID card, a controller, a card reader, an electromagnetic lock, an LED light, a touch screen, a temperature and humidity sensor, a heater, a main cabinet, and a trigger plate. The main cabinet has multiple rows of sub-cabinets spaced apart. Each sub-cabinet has a receiving cavity for storing tools. Each tool is equipped with an RFID card. Each receiving cavity contains a card reader, a temperature and humidity sensor, and a heater. The trigger plate is vertically adjustable above the bottom wall of the receiving cavity, and a triggering mechanism is provided between the bottom surface of the trigger plate and the bottom wall of the receiving cavity to energize the card reader, LED light, and electromagnetic lock. Through this method, the tool management cabinet disclosed in this utility model allows users to unlock the sub-cabinets by entering a password on the touch screen, enabling the removal or storage of tools. When a tool is stored, the card reader reads the information from the RFID card on the tool, conveniently recording the tool's storage and retrieval status. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of one embodiment of the tool management cabinet of this utility model;

[0016] Figure 2 for Figure 1 A partial structural diagram of the tool management cabinet;

[0017] Figure 3 for Figure 1 A partial structural diagram of the central auxiliary cabinet;

[0018] Figure 4 for Figure 1 A schematic diagram of the second partial structure of the central auxiliary cabinet;

[0019] Figure 5 for Figure 1 Schematic diagram of the cross-sectional structure of the middle auxiliary cabinet;

[0020] Figure 6 This is a schematic diagram of the electrical module connection of the tool management cabinet of this utility model;

[0021] Figure 7 This is a structural schematic diagram of another embodiment of the tool management cabinet of this utility model. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] like Figure 1-6 As shown, the tool management cabinet provided by this utility model includes multiple RFID cards, a controller 1, a card reader 12 electrically connected to the controller 1 and used for sensing RFID cards, multiple electromagnetic locks 13 electrically connected to the controller 1, multiple LED lights 14 electrically connected to the controller 1, multiple touch screens 15 electrically connected to the controller 1, multiple temperature and humidity sensors 16 electrically connected to the controller 1, multiple heaters 17 electrically connected to the controller 1, a main cabinet body 2, and a trigger plate 3, wherein the electromagnetic locks 13 are retractably equipped with locking rods.

[0024] The main cabinet 2 has multiple rows of secondary cabinets 21 spaced vertically. Each secondary cabinet 21 has a receiving cavity 22 for storing tools and a door 23 for covering the receiving cavity 22. It should be understood that the door 23 is connected to the secondary cabinet 21 by hinges.

[0025] In this embodiment, the controller 1 is located inside the main cabinet 2. Each tool (such as a wrench, clamp, screwdriver, motor, etc.) is equipped with an RFID card. The outer side of the door 23 is equipped with an LED light 14 and a touch screen 15. Each receiving cavity 22 is equipped with a card reader 12, a temperature and humidity sensor 16, and a heater 17. An electromagnetic lock 13 is located on the side wall of the receiving cavity 22. The door 23 is equipped with a lock hole for locking the locking rod of the electromagnetic lock 13. It should be understood that in this embodiment, the presence of tools can be indicated by the on / off state of the LED light 14, while the touch screen 15 is used to input a password to control the extension and retraction of the locking rod of the electromagnetic lock 13 to open the door 23. The temperature and humidity sensor 16 is used to detect the temperature and humidity of the receiving cavity 22, and the heater 17 is used to heat the air in the receiving cavity 22 to achieve a drying effect.

[0026] It is understandable that staff can unlock the electromagnetic lock 13 by entering a password on the touchscreen 15 on the door 23 or by pressing their fingerprint to open the door 23 of the secondary cabinet 21, thereby retrieving the tools from the receiving cavity 22. When staff need to store tools, they can also enter a password on the touchscreen 15 on the door 23 to open the door 23 of the secondary cabinet 21, place the tools into the receiving cavity 22, and after the tools are placed into the secondary cabinet 21, the card reader 12 will read the information of the RFID card on the tools and upload it to the backend for registration via the controller 1.

[0027] The trigger plate 3 is vertically and flexibly mounted on the bottom wall of the receiving cavity 22. A trigger mechanism 31 is provided between the bottom surface of the trigger plate 3 and the bottom wall of the receiving cavity 22 to energize the card reader 12, LED light 14, and electromagnetic lock 13. That is, the trigger mechanism 31 is used to control the energization of the card reader 12, LED light 14, and electromagnetic lock 13. For example, the trigger plate 3 is in the raised state when no tool is pressing on it. After a tool is pressed on the trigger plate 3, the trigger plate 3 will descend, thereby triggering the trigger mechanism 31 below. At this time, the trigger mechanism 31 will control the card reader 12, LED light 14, and electromagnetic lock 13 to energize.

[0028] It is worth noting that the LED light 14 is connected to the trigger mechanism 31, which is essentially the switch for the LED light 14. When a tool is placed on the trigger plate 3, the tool causes the trigger plate 3 to descend, triggering the trigger mechanism 31 and causing the LED light 14 to light up. This allows the staff to accurately know whether there is a tool in the secondary cabinet 21. When the LED light 14 does not light up, it means that the trigger plate 3 has not been pressed down by the tool, which means that the tool in the secondary cabinet 21 has been removed. This allows the staff to have a clearer understanding of the tools in the tool cabinet.

[0029] Preferably, the bottom surface of the trigger plate 3 is disposed on the bottom wall of the receiving cavity 22 by a compression spring 32. That is, when the tool is placed in the receiving cavity 22, it will press the trigger plate 3 down, and when the tool is removed from the trigger plate 3, the trigger plate 3 will rise under the action of the compression spring 32. Of course, the weight of the tool is greater than the elastic force applied to the trigger plate 3 by the compression spring 32, thereby ensuring that the tool can make the trigger plate 3 descend.

[0030] In this embodiment, a first lifting groove 221 is provided on one side of the bottom wall of the receiving cavity 22, and a second lifting groove 222 is provided on the other side of the bottom wall of the receiving cavity 22. The two ends of the trigger plate 3 are respectively slidably disposed in the first lifting groove 221 and the second lifting groove 222. That is to say, the trigger plate 3 slides up and down in the first lifting groove 221 and the second lifting groove 222, and the trigger plate 3 will not excessively rise or fall within the receiving cavity 22.

[0031] Preferably, one end of the trigger plate 3 is provided with a first positioning through hole, and the other end of the trigger plate 3 is provided with a second positioning through hole. One side of the bottom wall of the receiving cavity 22 also has a first sliding rod 223 located within a first lifting groove 221, and the other side of the bottom wall of the receiving cavity 22 also has a second sliding rod 224 located within a second lifting groove 222. The first sliding rod 223 passes through the first positioning through hole, and the second sliding rod 224 passes through the second positioning through hole. It should be understood that when the trigger plate 3 slides up and down, the first sliding rod 223 sliding in the first positioning through hole and the second sliding rod 224 sliding in the second positioning through hole serve as guides, thus preventing the trigger plate 3 from tilting during sliding.

[0032] Preferably, the receiving cavity 22 is rectangular and the trigger plate 3 is rectangular, wherein the width of both ends of the trigger plate 3 is greater than the width of the receiving cavity 22, and the width of both ends of the trigger plate 3 is less than the distance between the first lifting slide 221 and the second lifting slide 222.

[0033] In this embodiment, the triggering mechanism 31 includes a first conductor 311 and a second conductor 312. The first conductor 311 is disposed on the bottom surface of the trigger plate 3, and the second conductor 312 is disposed on the bottom wall of the receiving cavity 22. The first conductor 311 extends with a downwardly disposed first extension 3111, and the second conductor 312 extends with an upwardly disposed second extension 3121 corresponding to the first extension 3111. When the first extension 3111 and the second extension 3121 are in contact and connected, the first conductor 311, the second conductor 312, the card reader 12, the LED light 14, the electromagnetic lock 13, and the controller 1 (as the control and power supply main body) form a conductive circuit. It should be understood that when the trigger plate 3 is pressed down by the tool, the first extension 3111 of the first conductor 311 on the bottom surface of the trigger plate 3 will descend, and the second extension 3121 will correspond to the first extension 3111, so that the first extension 3111 and the second extension 3121 can be connected. Of course, after the tool is removed by the staff, the compression spring 32 will push the trigger plate 3 up, so that the original conductive circuit is broken by the separation of the first extension 3111 and the second extension 3121, causing the LED light 14 to turn off by itself, so that the staff can directly know that there is no tool in the auxiliary cabinet 21.

[0034] It is worth noting that the controller 1, RFID card, card reader 12, electromagnetic lock 13, LED light 14, touch screen 15, temperature and humidity sensor 16, heater 17, first conductor 311, first extension 3111, second conductor 312 and second extension 3121 in this utility model can all be implemented using products in the prior art, and their principles and structures will not be described in detail here.

[0035] It should be understood that each of the secondary cabinets 21 of the main cabinet 2 is equipped with a corresponding touch screen 15. That is, the tool management cabinet in this embodiment is equipped with multiple touch screens 15, and each touch screen 15 controls the closing of a secondary cabinet 21. Furthermore, in other embodiments, for aesthetic purposes and cost savings, such as Figure 7 As shown, this embodiment is similar to the one described above. Figures 1-6 The difference in the embodiment is that the main cabinet 2 is only equipped with one main touch control screen 20, that is, the door 23 of one of the multiple auxiliary cabinets 21 is equipped with the main touch control screen 20. The closing of multiple auxiliary cabinets 21 can be controlled by this main touch control screen 20. The door 23 equipped with the main touch control screen 20 is also equipped with a camera 201 electrically connected to the controller 1 and an emergency power supply button 202 electrically connected to the controller 1. This allows for facial recognition through the camera 201 and emergency power supply to the tool management cabinet in the event of a power outage through the emergency power supply button 202. Of course, the main cabinet 2 is equipped with an emergency battery. The product and working principle of the main touch control screen 20 controlling the closing of the auxiliary cabinets 21, the product and working principle of the camera 201, and the product and working principle of the emergency power supply button 202 can be implemented using existing technologies, which will not be described in detail here.

[0036] It should be noted that the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

Claims

1. A tool management cabinet, comprising multiple RFID cards, a controller, a card reader electrically connected to the controller and used for sensing the RFID cards, multiple electromagnetic locks electrically connected to the controller, multiple LED lights electrically connected to the controller, multiple touch screens electrically connected to the controller, multiple temperature and humidity sensors electrically connected to the controller, and multiple heaters electrically connected to the controller, wherein the electromagnetic locks are retractably equipped with locking rods, characterized in that, Also includes: The main cabinet has multiple rows of secondary cabinets spaced vertically. Each secondary cabinet has a receiving cavity for storing tools and a door for covering the receiving cavity. The controller is located in the main cabinet. Each tool has an RFID card. The outer side of the door has an LED light and a touch screen. Each receiving cavity has a card reader, a temperature and humidity sensor, and a heater. An electromagnetic lock is located on the side wall of the receiving cavity. The door has a lock hole for locking the locking rod of the electromagnetic lock. A trigger plate is vertically mounted on the bottom wall of the receiving cavity, wherein a triggering mechanism is provided between the bottom surface of the trigger plate and the bottom wall of the receiving cavity to trigger the card reader, the LED light and the electromagnetic lock to be energized.

2. The tool management cabinet according to claim 1, characterized in that, The bottom surface of the trigger plate is disposed on the bottom wall of the receiving cavity by a compression spring.

3. The tool management cabinet according to claim 2, characterized in that, A first lifting groove is provided on one side of the bottom wall of the receiving cavity, and a second lifting groove is provided on the other side of the bottom wall of the receiving cavity, wherein the two ends of the trigger plate are respectively slidably disposed in the first lifting groove and the second lifting groove.

4. The tool management cabinet according to claim 3, characterized in that, One end of the trigger plate is provided with a first positioning through hole, and the other end of the trigger plate is provided with a second positioning through hole. One side of the bottom wall of the receiving cavity is also provided with a first slide rod in the first lifting slide groove, and the other side of the bottom wall of the receiving cavity is also provided with a second slide rod in the second lifting slide groove. The first slide rod passes through the first positioning through hole, and the second slide rod passes through the second positioning through hole.

5. The tool management cabinet according to claim 3, characterized in that, The receiving cavity is rectangular, and the trigger plate is rectangular. The width of both ends of the trigger plate is greater than the width of the receiving cavity, and the width of both ends of the trigger plate is less than the distance between the first lifting slide and the second lifting slide.

6. The tool management cabinet according to claim 2, characterized in that, The triggering mechanism includes a first conductor and a second conductor, wherein the first conductor is disposed on the bottom surface of the trigger plate, the second conductor is disposed on the bottom wall of the receiving cavity, and the first conductor extends with a downwardly disposed first extension portion, and the second conductor extends with an upwardly disposed second extension portion corresponding to the first extension portion. When the first extension portion and the second extension portion are in contact and connected, the first conductor, the second conductor, the card reader, the LED light, the electromagnetic lock, and the controller form a conductive circuit.