Automatic chemical appliance management cabinet

Through the hopper assembly and gate control assembly of the automated tool management cabinet, the precise access of tools is achieved, the problem of misappropriation and misplacement in the existing technology is solved, and the operation efficiency and safety are improved.

CN223253845UActive Publication Date: 2025-08-22ZHUHAI UNITECH POWER TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422659833.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-08-22
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

There are problems such as misappropriation and misplacement and time-consuming search in the management of existing power safety tools, which leads to inconvenient operation.

Method used

An automated tool management cabinet is designed, including a hopper assembly and a gate control assembly. Through the control component, the target tool is identified and the storage compartment is controlled to move to the material retrieval port, and the drive structure and door panel structure are combined to achieve accurate access.

Benefits of technology

It realizes precise access to tools and equipment, avoids mis-take and misplacement, improves space utilization and operation efficiency, and enhances safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic chemical appliance management cabinet which comprises a cabinet body, a hopper assembly, a door control assembly and a control assembly, the cabinet body is provided with a plurality of material taking openings used for storing and taking tools, the hopper assembly is detachably arranged in the cabinet body, the hopper assembly comprises a plurality of object placing lattices used for placing the tools, and the door control assembly is connected with the door control assembly. The door control assembly comprises a driving structure and a door plate structure, the driving structure can drive the door plate structure to move, the door plate structure can move to shield or expose the corresponding material taking opening in the state that the storage cells rotate to the corresponding material taking opening, and the control assembly is electrically connected with the hopper assembly and the door control assembly. The control assembly can control the driving structure to move to drive the door plate structure to move so as to shield or expose the target material taking opening. According to the technical scheme, the tools can be accurately stored and taken, and the phenomenon that the tools are taken and placed by mistake is avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of tool management cabinets, in particular to an automatic tool management cabinet. Background Art

[0002] Insulated tools are widely used in live operations and work in my country's power industry. Existing technologies primarily manage power safety tools in two formats: tool warehouses and tool management cabinets. However, both management methods are prone to tools being misplaced or misplaced when operators access them, making it difficult for operators to access tools and leading to time-consuming subsequent searches and collections. Utility Model Content

[0003] The embodiment of the present utility model provides an automatic tool management cabinet, which can facilitate accurate storage and retrieval of tools and avoid the phenomenon of wrongly taking or misplacing tools.

[0004] The present invention provides an automated tool management cabinet, which includes a cabinet body, a hopper assembly, a door control assembly, and a control assembly. The cabinet body is provided with a plurality of material extraction ports for storing and retrieving tools. The hopper assembly is detachably arranged inside the cabinet body. The hopper assembly includes a plurality of storage compartments for placing tools, and the storage compartments can be moved to corresponding material extraction ports. The door control assembly is arranged inside the cabinet body. The door control assembly includes a drive structure and a door panel structure. The drive structure can drive the door panel structure to move. When the storage compartments are rotated to corresponding material extraction ports, the door panel structure can move to cover or expose the corresponding material extraction ports. The control assembly is electrically connected to the hopper assembly and the door control assembly. The control assembly can control the movement of the drive structure to drive the door panel structure to move, so as to cover or expose the target material extraction port.

[0005] The technical solution of the present utility model is to set a hopper assembly and a door control assembly in an automated tool management cabinet. The hopper assembly includes multiple storage compartments that can hold a variety of different tools, separating different types of tools, which is beneficial to improving the space utilization rate in the cabinet. The door control assembly includes a drive structure and a door panel structure. The drive structure can drive the door panel structure to move. When the operator takes the tool, the storage compartment can rotate to the corresponding material extraction port, and the door panel structure moves to expose the corresponding material extraction port of the storage compartment. The control assembly is electrically connected to the hopper assembly and the door control assembly. The control assembly can control the movement of the drive structure to drive the door panel structure to move, so as to cover or expose the target material extraction port, making it easier for the operator to take the tool, and facilitating the accurate storage and retrieval of tools, thereby avoiding the phenomenon of taking or placing the wrong tool.

[0006] According to the aforementioned embodiments of the present invention, the control component is capable of identifying the target tool and the target storage compartment where the target tool is located, controlling the target storage compartment to move to the target access port, and controlling the opening of the corresponding door panel structure to expose the target access port. In the technical solution of the present invention, the control component is capable of not only identifying the target tool and the target storage compartment where the target tool is located, controlling the target storage compartment to move to the target access port, but also controlling the opening of the door panel structure based on the target tool and the target storage compartment to expose the target access port, thereby facilitating accurate access to tools and preventing the misplacement of tools.

[0007] According to the aforementioned embodiment of the present invention, the door panel structure includes a plurality of door panels, the material taking port is blocked or exposed by at least one door panel, and the control component can control the opening position and height of the door panels.

[0008] According to the aforementioned embodiment of the present invention, the door control assembly includes a plurality of drive structures, each of which can respectively control the opening position and height of a corresponding door panel.

[0009] According to the aforementioned embodiment of the present invention, the door panel structure includes a plurality of visualization door panels.

[0010] According to the aforementioned embodiments of the present invention, each storage compartment includes a mounting portion. The mounting portion is located outside the compartment cavity, and the compartment is removably mounted inside the cabinet via the mounting portion. By providing a mounting portion outside the cavity of each compartment, the present invention allows for the replacement of different compartments according to different storage needs, thereby satisfying the placement requirements of different tools and instruments.

[0011] According to the aforementioned embodiment of the present invention, the door control assembly further includes a position limiting portion. When the drive structure drives the door panel structure to a preset position, the position limiting portion can emit an in-position signal, causing the control assembly to control the drive structure to stop driving the door panel structure. The present invention's technical solution utilizes a position limiting portion in the door control assembly. When the door panel structure, driven by the drive structure, reaches a preset position, the position limiting portion can emit an in-position signal, causing the drive structure to stop driving the door panel structure.

[0012] According to the aforementioned embodiment of the present invention, the door control assembly further includes an anti-pinch portion. The anti-pinch portion is disposed on opposite sides of the material dispensing port. When the drive structure drives the door panel structure to move, the anti-pinch portion can emit a foreign object sensing signal, and the control assembly can control the drive structure to stop driving the door panel structure to move. The technical solution of the present invention provides an anti-pinch portion in the door control assembly. When the door panel structure moves to close the door, the anti-pinch portion can sense the presence of a foreign object in the material dispensing port and emit a foreign object sensing signal, causing the drive structure to stop driving the door panel structure to move, thereby preventing objects or operators from being accidentally clamped.

[0013] According to the aforementioned embodiment of the present invention, the automatic industrial tool management cabinet also includes: a transmission assembly, which is connected to the hopper assembly and can drive the target storage compartment to move to the target material extraction port; the transmission assembly includes a second drive part and a second transmission part, the second drive part can drive the second transmission part to move, and the second transmission part is connected to the hopper assembly and can drive the storage compartment to move to the material extraction port.

[0014] According to the aforementioned embodiment of the present invention, the automated tool management cabinet further includes a workbench disposed on a side of the cabinet facing the external environment, on which a target tool can be placed. The workbench also includes an identification unit capable of identifying the target tool and issuing an identification signal, which can be transmitted to the control component. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.

[0016] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the automatic industrial tool management cabinet of the present utility model;

[0017] Figure 2 This is a schematic cross-sectional view of an embodiment of an automated industrial tool management cabinet according to the present invention;

[0018] Figure 3 This is a structural diagram of an embodiment of a hopper assembly of an automatic industrial tool management cabinet of the present utility model;

[0019] Figure 4 This is a structural diagram of another embodiment of the hopper assembly of the automatic industrial tool management cabinet of the present utility model;

[0020] Figure 5 This is a structural diagram of another embodiment of the hopper assembly of the automatic industrial tool management cabinet of the present utility model;

[0021] Figure 6 This is a structural diagram of another embodiment of the hopper assembly of the automatic industrial tool management cabinet of the present utility model;

[0022] Figure 7 This is a schematic diagram of the door control component structure of an embodiment of the automatic industrial tool management cabinet of the present utility model;

[0023] Figure 8This is a schematic diagram of the first step of collecting tools in an embodiment of the automated tool management cabinet of the present utility model;

[0024] Figure 9 This is a schematic diagram of the second step of collecting tools in an embodiment of the automated tool management cabinet of the present utility model;

[0025] Figure 10 This is a schematic diagram of the process of collecting tools in an embodiment of the automated tool management cabinet of the present utility model.

[0026] Description of Figure Numbers:

[0027] Cabinet-100, hopper assembly-200, door control assembly-300, control assembly-400, transmission assembly-500, workbench-600, frame assembly-700;

[0028] Material taking port 110, storage compartment 210, mounting portion 220, drive structure 310, door panel structure 320, position limiting portion 330, anti-pinch portion 340;

[0029] First driving unit 311, first transmission unit 312, door panel 321;

[0030] Guide part-3121, sliding part-3122, synchronous belt-3123;

[0031] Insulated boots-S1, insulating gloves-S2, ground wire-S3.

[0032] The realization of the purpose, functional features and advantages of the present invention will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION

[0033] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described 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.

[0034] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present invention are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.

[0035] In addition, the descriptions of "first," "second," etc. in this utility model are for descriptive purposes only and should not be understood as indicating or implying their relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined as "first" or "second" may explicitly or implicitly include at least one of such features. In addition, the technical solutions between the various embodiments can be combined with each other, but this must be based on the fact that they can be implemented by ordinary technicians in this field. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such combination of technical solutions does not exist and is not within the scope of protection required by this utility model.

[0036] The embodiment of the present utility model provides an automatic tool management cabinet, which can facilitate accurate storage and retrieval of tools and avoid the phenomenon of wrongly taking or misplacing tools.

[0037] like Figures 1 to 2 As shown, an embodiment of the present invention provides an automated tool management cabinet, which includes: a cabinet body 100, a hopper assembly 200, a door control assembly 300 and a control assembly 400. The cabinet body 100 is provided with a plurality of material extraction ports 110 for storing and retrieving tools. The hopper assembly 200 is detachably arranged inside the cabinet body 100. The hopper assembly 200 includes a plurality of storage compartments 210 for placing tools. The storage compartments 210 can be moved to corresponding material extraction ports 110. The door control assembly 300 is arranged inside the cabinet body 100. The door control assembly 300 includes a drive structure 310 and a door panel structure 320. The drive structure 310 can drive the door panel structure 320 to move. When the storage compartment 210 rotates to the corresponding material extraction port 110, the door panel structure 320 can move to cover or expose the corresponding material extraction port 110. The control component 400 is electrically connected to the hopper component 200 and the door control component 300 . The control component 400 can control the movement of the driving structure 310 to drive the door panel structure 320 to move, so as to cover or expose the target material taking port 110 .

[0038] The technical solution of the present invention is to set a hopper assembly 200 and a door control assembly 300 in the automated tool management cabinet. The hopper assembly 200 includes multiple storage compartments 210, which can hold a variety of different tools and separate different types of tools, which is beneficial to improving the space utilization in the cabinet 100. The door control assembly 300 includes a drive structure 310 and a door panel structure 320. The drive structure 310 can drive the door panel structure 320 to move. When the operator takes the tool, the storage compartment 210 can rotate to the corresponding material extraction port 110, and the door panel structure 320 moves to expose the material extraction port 110 corresponding to the storage compartment 210. The control assembly 400 is electrically connected to the hopper assembly 200 and the door control assembly 300. The control assembly 400 can control the movement of the drive structure 310 to drive the door panel structure 320 to move, so as to cover or expose the target material extraction port 110, which is convenient for the operator to take the tool, and is conducive to the accurate storage and retrieval of the tool, and avoids the phenomenon of taking or placing the tool incorrectly.

[0039] like Figures 1 to 2 As shown, the control component 400 can identify the target tool and the target storage compartment 210 where the target tool is located, control the target storage compartment 210 to move to the target material extraction port 110, and control the opening of the corresponding door panel structure 320 to expose the target material extraction port 110. In the technical solution of the present invention, the control component 400 can not only identify the target tool and the target storage compartment 210 where the target tool is located, control the movement of the target storage compartment 210 to the target material extraction port 110, but also control the opening of the door panel structure 320 to expose the target material extraction port 110 based on the target tool and the target storage compartment 110, thereby facilitating the accurate storage and retrieval of tools and avoiding the phenomenon of misplacing tools.

[0040] Specifically, the door control component 300 can adjust the opening position and height of the door panel structure 320 according to the instructions issued by the control component 400. The door panel structure 320 has a variety of opening heights, such as half open, fully open, one third open, etc. The control component 400 can identify the target tool and issue a corresponding identification instruction, and pass the identification instruction to the door control component 300. The door control component 300 controls the opening height of the door panel structure 320 according to the identification instruction.

[0041] Furthermore, the door panel structure 320 includes a plurality of door panels 321, and the material taking port 110 is covered or exposed by at least one door panel 321. The control component 400 can control the opening position and height of each door panel 321 according to the storage compartment where the target tool is located. Figure 7As shown, the door panel structure 320 includes a plurality of visual door panels 321, and the material extraction port 110 is blocked or exposed by at least one visual door panel 321. The technical solution of the present invention facilitates the operator to visually observe the operating status of the hopper assembly 200 through the door panel 321 by setting the visual door panel 321. In this embodiment, the door panel structure 320 includes up to four visual up and down lifting door panels 321. The door panel 321 can be made of a transparent acrylic panel, or can be set as an intelligent dimming door panel 321 to meet different visualization requirements, so that the operator can observe the operating status of the hopper assembly 200 inside the cabinet 100. The door control assembly 300 includes a plurality of drive structures 310, and each drive structure 310 can respectively control the opening position and height of the corresponding door panel 321.

[0042] In this embodiment, the control component 400 includes a host computer, which is an integrated host with identity authentication functions, including but not limited to card swiping, face recognition, fingerprint recognition, etc. The host computer can identify the identity of the operator, control the transmission component and the door control component 300, and can also guide and prompt the operator. After the operator swipes the card or fingerprint authentication, the control component 400 automatically reads the list of tools to be collected, and controls the hopper component 200 to rotate the target storage compartment 210 to the corresponding material extraction port 110 according to the type and storage location of the tools. At the same time, the drive structure 310 of the door control component 300 controls the door panel structure 320 to automatically open. After the operator completes the use, the door control component 300 automatically closes the material extraction port 110 to ensure safety and achieve accurate access to tools. The operator does not need to manually search and open and close the door panel structure 320 throughout the process, avoiding the misplacement or misplacement of tools caused by manual operation, thereby improving work efficiency and access accuracy.

[0043] like Figures 3 to 6 As shown, each storage compartment 210 is further provided with a mounting portion 220. The mounting portion 220 is located outside the cavity of the storage compartment 210, and the storage compartment 210 is removably mounted inside the cabinet 100 via the mounting portion 220. The technical solution of the utility model provides a mounting portion 220 outside the cavity of each storage compartment 210, and the storage compartment 210 is removably mounted inside the cabinet 100 via the mounting portion 220, so that different storage compartments 210 can be replaced according to different placement needs to meet the placement requirements of different tools.

[0044] In this embodiment, if Figures 3 to 6As shown, the mounting portion 220 can be connected in the form of a screw-threaded hole. By providing threaded holes in the storage compartment 210 and the cabinet body 100, respectively, and matching the screws with the threaded holes, the storage compartment 210 can be detachably mounted inside the cabinet body 100. In other embodiments, the mounting portion 220 can also adopt a snap-fit ​​structure, and a groove that matches the snap-fit ​​structure is provided inside the cabinet body 100 to enable the storage compartment 210 to be detachably connected to the interior of the cabinet body 100. This application does not limit the method of detachable connection between the storage compartment 210 and the cabinet body 100.

[0045] In this embodiment, if Figures 3 to 6 As shown, a multi-layered and multi-grid storage compartment 210 can be provided in the hopper assembly 200, and each layer of the storage compartment 210 is provided with a mounting portion 220, which facilitates the replacement of different storage compartments 210 to meet the placement requirements of different tools. The hopper assembly 200 can be randomly matched and divided according to the different types and sizes of the tools stored. For example, the storage compartment 210 can be divided into horizontal storage compartments 210, vertical storage compartments 210, or large storage compartments 210, small storage compartments 210. The door control assembly 300 can control the opening position and height of the door panel structure 320 according to the actual position and size of the storage compartment 210, which not only enables the accurate collection or return of tools, but also facilitates the efficient use of the space within the hopper assembly 200, thereby improving the space utilization rate within the cabinet 100.

[0046] like Figure 7 As shown, the door control assembly 300 further includes a position limiting portion 330. When the drive structure 310 drives the door panel structure 320 to a preset position, the position limiting portion 330 can emit an in-position signal, causing the control assembly 400 to control the drive structure 310 to stop driving the door panel structure 320. The present invention provides a position limiting portion 330 in the door control assembly 300. When the door panel structure 320, driven by the drive structure 310, moves to a preset position, the position limiting portion 330 can emit an in-position signal, causing the drive structure 310 to stop driving the door panel structure 320.

[0047] In this embodiment, the position-limiting portion 330 includes two sets of infrared sensors and a light shielding plate fixed to the door panel structure 320. When the door panel structure 320, driven by the drive structure 310, reaches a preset position, the light shielding plate blocks the infrared sensors. The infrared sensors then emit a position-reaching signal, and the control assembly 400 controls the drive structure 310 to emit a stop signal, causing the door panel structure 320 to stop moving. In other embodiments, the position-limiting portion 330 may also include a travel switch to detect the operating position of the door panel structure 320. This application does not limit the form of the position-limiting portion 330.

[0048] like Figure 1As shown, the door control assembly 300 also includes: an anti-pinch portion 340. The anti-pinch portion 340 is arranged on opposite sides of the feeding port 110. When the driving structure 310 drives the door panel structure 320 to move, the anti-pinch portion 340 can send a foreign object sensing signal, and the control assembly 400 can control the driving structure 310 to stop driving the door panel structure 320 to move. The technical solution of the present utility model is to set the anti-pinch portion 340 in the door control assembly 300. In the process of the door panel structure 320 moving to close the door, the anti-pinch portion 340 can sense the presence of foreign objects (such as the operator's hands or tools) at the feeding port 110 and send a foreign object sensing signal, so that the driving structure 310 stops driving the door panel structure 320 to move, thereby avoiding objects or operators from being accidentally clamped, greatly improving operational safety, and reducing potential injury risks while ensuring equipment automation, thereby complying with industrial safety standards.

[0049] In this embodiment, the anti-pinch portion 340 includes a pair of light beams distributed on both sides of the feeding port 110. When the door panel structure 320 moves upward to close the door, if the light beams sense the presence of an object at the feeding port 110 and send a foreign object sensing signal, the control component 400 controls the driving structure 310 to send a stop signal, and the door panel structure 320 stops moving, thereby preventing objects or people from being accidentally pinched by the door panel.

[0050] like Figure 7 As shown, the drive structure 310 includes a first drive unit 311 and a first transmission unit 312. The first drive unit 311 is capable of driving the first transmission unit 312 to move. The first transmission unit 312 is connected to the door panel structure 320 and is capable of driving the door panel structure 320 to move. In this embodiment, the first transmission unit 312 includes a guide portion 3121, a sliding portion 3122, and a timing belt 3123. The control assembly 400 is capable of controlling the movement of the drive shaft of the first drive unit 311. The drive shaft drives the sliding portion 3122 to slide on the guide portion 3121 via the timing belt 3123.

[0051] In this embodiment, the first drive unit 311 includes a first motor. The control assembly 400 provides an operating signal to the first motor. The rotating output shaft of the first motor drives the sliding portion 3122 to slide up and down on the guide portion 3121 via the synchronous belt 3123, allowing the door panel structure 320 to be raised or lowered to cover or expose the material discharging opening 110. The guide portion 3121 is a guide rail that provides precise guidance for the movement of the sliding portion 3122. In other embodiments, the first drive unit 311 may also include hydraulic, pneumatic, or other forms of motion. This application does not limit the drive form of the first drive unit 311.

[0052] like Figure 2As shown, the automated tool management cabinet further includes: a transmission assembly 500, which is connected to the hopper assembly 200 and is capable of driving the target storage compartment 210 to move to the target material extraction port 110; the transmission assembly 500 includes a second drive unit and a second transmission unit, the second drive unit being capable of driving the second transmission unit to move, and the second transmission unit being connected to the hopper assembly 200 and capable of driving the storage compartment 210 to move to the material extraction port 110. In this embodiment, the second drive unit includes a second motor, and the second transmission unit includes a drive chain, a track groove, etc. When the control assembly 400 issues a command to the second motor, the second motor starts and drives its output shaft to rotate, and the rotational power is transmitted to the drive chain. The drive chain is connected between the rotating output shaft of the second motor and the hopper assembly 200. When the second motor rotates, the drive chain also moves, thereby transmitting power to the hopper assembly 200 connected to the drive chain, so that the hopper assembly 200 can move in the track groove, which is conducive to the smooth movement of the hopper assembly 200, thereby facilitating the precise positioning and motion control of the hopper assembly 200.

[0053] like Figures 1 to 2 As shown, the automated tool management cabinet further includes a workbench 600, which is disposed on the side of the cabinet 100 facing the external environment, and on which a target tool can be placed. In this embodiment, the workbench 600 also has an identification unit, which is electrically connected to the control component 400. The identification unit can identify the target tool and emit an identification signal, which can be transmitted to the control component 400.

[0054] like Figure 1 As shown, the automated tool management cabinet further includes a frame assembly 700. The frame assembly 700 is disposed within the cabinet 100 and can be customized according to the type and quantity of tools to be managed. Providing frame assemblies 700 of different sizes within the cabinet 100 facilitates meeting the needs of different tool types and quantities, and facilitates unified management of multiple tools.

[0055] like Figures 8 to 10 As shown, the specific working steps of the automatic industrial tool management cabinet are described below, taking insulating boots S1, insulating gloves S2, and ground wire S3 as an example.

[0056] When the operator applies for tools and equipment in the control component 400, the control component 400 will identify the operator. After the identification is passed, it will automatically associate the operation ticket and read the list of tools and equipment to be collected. At this time, the storage compartment 210 where the insulating boots S1 and insulating gloves S2 are located will rotate to the material extraction port 110 under the drive of the transmission component 500, and the door control component 300 will control the door panel 321 corresponding to the storage compartment 210 where the insulating boots S1 and insulating gloves S2 are located to fully open. Figures 8 and 9As shown, the insulating boots S1 are located on the door panel 321 No. 1, and the insulating gloves S2 are located on the door panel 321 No. 3. Moreover, since the insulating boots S1 and the insulating gloves S2 need to be placed in the large storage compartment 210, the control component 400 can control the door panel structure 320 to be fully opened.

[0057] After the operator removes the insulating boots S1 and insulating gloves S2, which are separated and stored in the hopper assembly 200, they place them on the workbench 600 and automatically read the tool tags. Upon receiving the read signal, the control assembly 400 compares the tool tags with the list of tools to be collected. For example, in this embodiment, if the ground wire S3 has not yet been collected, the control assembly 400 controls the closing of door panels 1 and 3, and the hopper assembly 200 continues to rotate the ground wire S3 to the material dispensing port 110. Furthermore, since the ground wire S3 needs to be placed in the horizontal storage compartment 210, the control assembly 400 controls the opening of door panels 1 and 2, respectively, to partially open. The operator removes the ground wire S3 from the storage compartment 210 and places it on the workbench 600, automatically reading the tool tags. If the control assembly 400 determines that all tools have been collected, it closes the door panels 321 and generates a record of the relevant operation.

[0058] The technical solution of the present invention can open different storage compartments 210 according to the tools to be used, and the door control component 300 can control the opening position and height of the door panel structure 320 according to the actual position and size of the storage compartment 210, which is conducive to limiting the operator to only take out or return tools in specific storage compartments 210. There is no need for the operator to make a selection during the whole process, which is conducive to avoiding the occurrence of human error in taking or placing tools.

[0059] The above description is only a preferred embodiment of the present invention and does not limit the patent scope of the present invention. All equivalent structural transformations made by using the contents of the present invention specification and drawings under the inventive concept of the present invention, or direct / indirect application in other related technical fields are included in the patent protection scope of the present invention.

Claims

1. An automatic industrial tool management cabinet, characterized in that: The automatic industrial tool management cabinet includes: A cabinet body, wherein the cabinet body is provided with a plurality of material taking openings for storing and retrieving tools; A hopper assembly, the hopper assembly being detachably disposed inside the cabinet, the hopper assembly comprising a plurality of compartments for placing tools, the compartments being movable to corresponding material extraction ports; a door control assembly, the door control assembly being disposed inside the cabinet, the door control assembly comprising a drive structure and a door panel structure, the drive structure being capable of driving the door panel structure to move, and the door panel structure being capable of moving to cover or expose the corresponding material taking opening when the storage compartment is rotated to the corresponding material taking opening; and A control component is electrically connected to the hopper component and the door control component. The control component can control the movement of the driving structure to drive the door panel structure to move, so as to cover or expose the target material taking port.

2. The automatic industrial tool management cabinet according to claim 1, characterized in that: The control component can identify a target tool and a target storage compartment where the target tool is located, and can control the target storage compartment to move to the target material extraction port, and control the opening of the corresponding door panel structure to expose the target material extraction port.

3. The automatic tool management cabinet according to claim 1, characterized in that: The door panel structure includes a plurality of door panels, the material taking port is blocked or exposed by at least one of the door panels, and the control component can control the opening position and height of the door panels.

4. The automatic industrial tool management cabinet according to claim 3, characterized in that: The door control assembly includes a plurality of drive structures, each of which can respectively control the opening position and height of the corresponding door panel.

5. The automatic tool management cabinet according to claim 3, characterized in that: The door panel structure includes a plurality of visual door panels.

6. The automated industrial tool management cabinet according to claim 1, wherein: Each of the storage compartments comprises: a mounting portion, the mounting portion being located outside the cavity of the storage compartment, and the storage compartment being detachably arranged inside the cabinet through the mounting portion.

7. The automated industrial tool management cabinet according to claim 1, wherein: The door control component also includes: The limiting part can send an in-position signal when the driving structure drives the door panel structure to move to a preset position, and the control component can control the driving structure to stop driving the door panel structure to move.

8. The automatic industrial tool management cabinet according to claim 2, characterized in that: The door control component also includes: The anti-pinch part is arranged on opposite sides of the material taking port. When the driving structure drives the door panel structure to move, the anti-pinch part can send a foreign object sensing signal, and the control component can control the driving structure to stop driving the door panel structure to move.

9. The automated tool management cabinet according to claim 2, wherein: The automatic industrial tool management cabinet also includes: a transmission assembly connected to the hopper assembly and capable of driving the target storage compartment to move to the target material extraction port; The transmission assembly includes a second driving part and a second transmission part. The second driving part can drive the second transmission part to move. The second transmission part is connected to the hopper assembly and can drive the storage compartment to move to the material extraction port.

10. The automated industrial tool management cabinet according to claim 1, wherein: The automatic industrial tool management cabinet also includes: A workbench is provided on the side of the cabinet facing the external environment, and a target tool can be placed on the workbench. The workbench also has an identification unit, which is electrically connected to the control component. The identification unit can identify the target tool and send an identification signal, and the identification signal can be transmitted to the control component.