Multifunctional intelligent tool car

By using RFID readers and RFID tags in tool carts, the problem of not being able to identify tool categories in existing technologies is solved, enabling refined tool management.

CN223719462UActive Publication Date: 2025-12-26SHANGHAI BALANSHI INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423319313.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-26
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing tool cabinets or tool carts cannot manage tools in a precise manner, make it difficult to identify tool categories, and are prone to tool loss and misplacement.

Method used

The system uses a one-to-one correspondence between RFID readers and RFID tags, combined with LED light-emitting components and a barcode scanner. The RFID reader identifies the location of the tool, the LED light-emitting components provide feedback on the placement status, and the barcode scanner acquires and verifies the tool information.

Benefits of technology

It enables refined management of tools by combining RFID readers and RFID tags, solving the problem of not being able to identify tool categories in existing technologies, thus achieving refined management of tools.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a multifunctional intelligent tool car, and relates to the technical field of tool cars. The trolley comprises a trolley body, a storage cabinet is arranged on the trolley body, a plurality of partition plates are arranged in the storage cabinet, the storage cabinet is divided into a plurality of compartments by the partition plates, a drawer is inserted into each compartment in a matched mode, and a containing groove used for containing tools is formed in each drawer; an RFID recognizer is arranged in the placing groove, the RFID recognizer is electrically connected with a controller, an RFID tag is arranged on the tool, and the RFID recognizer and the RFID tag are arranged in a one-to-one correspondence mode; a display device is further arranged on the vehicle body and electrically connected with the controller. The method has the advantage that fine management of tools can be facilitated.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of tool carts, in particular to a multifunctional intelligent tool cart. BACKGROUND

[0002] The existing tool cabinet or tool cart is relatively free to take and store tools, and there is no placement position for the tools. In addition, it is difficult to count and monitor the number and type of tools in the tool cabinet, which is not convenient for finding tools and is prone to tool loss.

[0003] In order to solve the above technical problems, the prior art provides a photosensitive sensor on the tool cabinet or tool cart to detect whether the tool is placed in place. The essence is to determine the position of the tool by blocking the light path of the photosensitive sensor by the tool itself.

[0004] However, the inventors have found in practice that the above scheme also has disadvantages, that is, the above scheme cannot identify the type of tool, and even if foreign matter enters the tool cart to block the light path of the photosensitive sensor, it will be considered as the tool being stored, and the fine management of the tool cannot be realized. CONTENT OF THE UTILITY MODEL

[0005] In order to facilitate the fine management of tools, the present application provides a multifunctional intelligent tool cart.

[0006] The multifunctional intelligent tool cart provided by the present application adopts the following technical scheme:

[0007] A multifunctional intelligent tool cart, comprising a vehicle body, a storage cabinet is arranged on the vehicle body, a plurality of partitions are arranged in the storage cabinet, the plurality of partitions separate the storage cabinet into a plurality of compartments, a drawer is inserted and connected in each compartment, and a placement slot for placing tools is arranged in the drawer; an RFID identifier is arranged in the placement slot, the RFID identifier is electrically connected with a controller, an RFID tag is arranged on the tool, and the RFID identifier and the RFID tag are arranged one by one; and a display device is further arranged on the vehicle body, and the display device is electrically connected with the controller.

[0008] By adopting the above technical scheme, when the tool is placed in the corresponding placement slot, the RFID identifier can identify the corresponding RFID tag and generate an identification success signal, and the controller receives the identification success signal to control the display device to display the information that the tool is correctly placed. When the tool is placed in the wrong placement slot, the RFID identifier identifies the non-corresponding RFID tag and generates an identification failure signal, and the controller receives the identification failure signal to control the display device to display the information that the tool is incorrectly placed, so that the position disorder of the tool during placement can be avoided, and the tool can be easily found and taken out later.

[0009] As preferred, the display device is arranged as an LED light-emitting assembly, which is electrically connected with the controller; the LED light-emitting assembly comprises the first indicator light and the second indicator light.

[0010] By adopting the above technical scheme, the tool position placement is correctly or failed feedback can be simply realized by using the LED light-emitting assembly; after the controller receives the recognition success signal, the first driving signal is directly output to the first indicator light, so as to control the first indicator light to emit light; after the controller receives the recognition failure signal, the second driving signal is directly output to the second indicator light, so as to control the second indicator light to emit light.

[0011] As preferred, the first indicator light and the second indicator light are different in light-emitting color.

[0012] By adopting the above technical scheme, by setting the first indicator light and the second indicator light which are different in light-emitting color, the related technical personnel can quickly judge whether the matching result is successful or failed.

[0013] As preferred, the storage cabinet is further provided with a passive code scanning device, a plurality of tools are provided with two-dimensional codes, the two-dimensional codes include storage position information corresponding to the tools; the passive code scanning device comprises a fixed code scanning head arranged on the partition plate of the cabinet body, the fixed code scanning head is electrically connected with the controller, and the fixed code scanning head is used for scanning the two-dimensional code.

[0014] By adopting the above technical scheme, if the fixed scanning head does not scan the two-dimensional code, the fixed scanning head sends a matching failure signal to the controller; if the two-dimensional code scanned by the fixed scanning head does not match the position information of the tool corresponding to the placement slot, the fixed scanning head also sends a matching failure signal to the controller. If the two-dimensional code scanned by the fixed scanning head matches the position information of the tool corresponding to the placement slot, the fixed scanning head sends a matching success signal to the controller.

[0015] As preferred, the passive code scanning device further comprises an illumination assembly, the illumination assembly comprises one or more LED lights, and the illumination assembly is electrically connected with the controller.

[0016] By adopting the above technical scheme, by setting the illumination assembly, an additional light source can be provided to facilitate the scanning work of the fixed scanning head.

[0017] As preferred, the passive code scanning device further comprises a proximity switch sensor which is electrically connected with the controller, and the proximity switch sensor is installed on the inner wall of the top of the compartment; when the drawer is pulled open, the proximity switch sensor is not triggered; when the drawer is located in the compartment, the proximity switch sensor is triggered.

[0018] By adopting the technical scheme, when the drawer is located in the compartment, the side wall with the handle of the drawer is close to the proximity switch sensor, the proximity switch sensor is triggered, so that the proximity switch sensor can send a code scanning trigger signal to the controller. After the controller receives the code scanning trigger signal, the controller controls the light emitting assembly and the fixed scanning head to start working, thereby saving energy.

[0019] Preferably, the receiving cabinet is further provided with an active code scanning device, a plurality of tools are provided with two-dimensional codes, and the two-dimensional codes include storage location information corresponding to the tools; the active code scanning device comprises a code scanning gun arranged on the vehicle body, and the code scanning gun is electrically connected with the controller, and the code scanning gun is used for scanning the two-dimensional code.

[0020] By adopting the technical scheme, before storing the tool, the relevant staff first scans the two-dimensional code on the tool by using the code scanning gun to obtain the location information corresponding to the tool. The display screen displays the location information collected by the code scanning gun, so that the relevant staff can place the tool at the corresponding position according to the displayed location information.

[0021] Preferably, a track structure is additionally arranged between the side wall of the compartment and the drawer, the track structure comprises an outer track and an inner track, the outer track is mounted on two opposite side walls of the compartment in the insertion direction of the drawer, and the inner track is mounted on the outer side wall of the drawer corresponding to the position of the outer track.

[0022] By adopting the technical scheme, by arranging the track structure, the stability and smoothness of the drawer sliding can be improved.

[0023] In summary, the present application has at least one of the following beneficial technical effects:

[0024] 1. By using the one-to-one correspondence of the RFID identifier and the RFID tag, the position of the tool can be accurately identified, the tool can be prevented from being placed incorrectly, the correct storage of the tool can be ensured, and the accuracy of tool management is improved;

[0025] 2. By using the different color indicator lights of the LED light emitting assembly, the placement state of the tool can be intuitively fed back, the operator can timely find and correct the tool placement error, and the safety and reliability of tool management are improved;

[0026] 3. The introduction of active and passive code scanning devices further enhances the intelligent level of tool management. The active code scanning device reads the two-dimensional code on the tool through the code scanning gun, helping the operator to quickly find the correct storage position of the tool, improving the accuracy and speed of tool storage; the passive code scanning device automatically detects the storage state of the tool through the cooperation of the fixed code scanning head, light assembly and proximity switch sensor, timely discovers and alarms the tool misplacement, and ensures the orderly management of the tool. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 is a schematic diagram of the overall structure of embodiment 1 of the present application;

[0028] Figure 2 is a schematic diagram of part of the structure of embodiment 1 of the present application;

[0029] Figure 3 is a schematic diagram of part of the structure of embodiment 2 of the present application;

[0030] Figure 4 is a schematic diagram of part of the structure of embodiment 3 of the present application.

[0031] Reference signs: 1, vehicle body; 11, display device; 111, first indicator light; 112, second indicator light; 113, display screen; 2, storage cabinet; 21, partition; 22, compartment; 3, drawer; 31, bearing plate; 311, mounting groove; 32, side plate; 33, placing groove; 34, fixed baffle; 35, handle; 4, track structure; 41, inner track; 42, outer track; 5, RFID identifier; 6, passive code scanning device; 61, fixed code scanning head; 62, light assembly; 63, proximity switch sensor; 7, code scanning gun. DETAILED DESCRIPTION

[0032] The following will be described in detail in combination with the accompanying Figures 1-4 The present application will be further described in detail.

[0033] Embodiment 1:

[0034] Referring to Figure 1 and Figure 2 A multifunctional intelligent tool cart includes a vehicle body 1, and a plurality of storage cabinets 2 are arranged on the vehicle body 1, and each storage cabinet 2 is internally provided with a plurality of partitions 21. The plurality of partitions 21 separate the storage cabinet 2 into a plurality of compartments 22, and each compartment 22 is internally inserted and cooperated with a drawer 3, and tools are placed inside the drawer 3. An RFID identifier 5 is arranged in the drawer 3, and an RFID tag corresponding to the RFID identifier 5 is arranged on the tool, and the RFID identifier 5 is used to identify the RFID tag, so that the storage of the tool can be more conveniently and efficiently realized, so as to facilitate the subsequent use of the tool.

[0035] The storage cabinet 2 is in the shape of a cuboid, and the height direction of the storage cabinet 2 is perpendicular to the moving direction of the vehicle body 1. The partition plate 21 is in the shape of a rectangular plate, and a plurality of partition plates 21 are arranged in parallel in the height direction of the storage cabinet 2 in the storage cabinet 2, and the plurality of partition plates 21 are arranged equidistantly in the length direction of the storage cabinet 2 in the storage cabinet 2. The drawer 3 is in the shape of a cuboid, the top of the drawer 3 is provided as an open surface, and the side of the drawer 3 opposite to the open surface is provided as a bearing plate 31, and the other side adjacent to the bearing plate 31 is provided as a side plate 32, and the outer side of the drawer 3 is provided with a handle 35. A plurality of fixed baffles 34 are vertically arranged on the bearing plate 31, and a placing groove 33 is formed between adjacent fixed baffles 34 and between the fixed baffle 34 and the side plate 32, and a plurality of tools are respectively placed in the corresponding placing grooves 33. Preferably, the shape of the placing groove 33 and the shape of the tool are matched in size, which can to some extent reduce the probability of misplacement of special-shaped tools. For example, for a screwdriver, the fixed baffle 34 can be provided in the shape of an elongated strip, and for a wrench, the fixed baffle 34 can be provided in the shape of an arc to adapt to the shape of different tools. In addition, the fixed baffle 34 can be made of metal material to increase its durability and stability.

[0036] Furthermore, a track structure 4 is additionally arranged between each compartment 22 side wall and the drawer 3, and the track structure 4 includes an outer track 42 and an inner track 41. The outer track 42 is mounted on two opposite side walls in the drawer 3 insertion direction in the compartment 22, and the inner track 41 is mounted on the outer side wall of the drawer 3 corresponding to the position of the outer track 42. By arranging the track structure 4, the smoothness and stability of the use of the drawer 3 can be increased.

[0037] The RFID tag is arranged inside the tool, and the RFID identifier 5 is arranged in the drawer 3. The bearing plate 31 is provided with a mounting groove 311 corresponding to the placing groove 33, and the RFID identifier 5 is placed in the mounting groove 311, so as to be able to identify the tools placed in different placing grooves 33. Specifically, the mounting position of the fixed baffle 34 can be arranged according to the number and size of the tools, so as to ensure that when the tool is placed in the placing groove 33, the RFID identifier 5 can identify the RFID tag on the tool.

[0038] The RFID identifier 5 is electrically connected with a controller, and the controller shell is provided as a single-chip microcomputer or the like. The top of the vehicle body 1 is further provided with a display device 11, which is controlled to be connected to the controller. In the embodiment of the application, the display device 11 includes first and second indicator lights 111 and 112, and in the embodiment, the first and second indicator lights 111 and 112 are both provided as LED lights. The light-emitting colors of the first and second indicator lights 111 and 112 are different, for example, the first indicator light 111 can be provided as green, and the second indicator light 112 can be provided as red; or the first and second indicator lights 111 and 112 can be respectively provided as other combinations of colors with great distinction, so as to achieve the purpose of being easy to identify. The connection pins of the first and second indicator lights 111 and 112 are directly connected to the control pins of the single-chip microcomputer, or connected to the control pins of the single-chip microcomputer through an interface expansion chip.

[0039] Preferably, the display device 11 further includes a display screen 113, and the display screen 113 is signal-connected with the controller, for displaying tool storage and lending information. When the stored tools are disordered or lost, the display screen 113 can output alarm information.

[0040] When the tool is placed into the corresponding placing groove 33, the RFID identifier 5 can identify the corresponding RFID tag and generate an identification success signal, and the controller outputs a first driving signal to the first indicator light 111 after receiving the identification success signal, so as to control the first indicator light 111 to emit light. When the tool is placed into the wrong placing groove 33, the RFID identifier 5 identifies the non-corresponding RFID tag and generates an identification failure signal, and the controller outputs a second driving signal to the second indicator light 112 after receiving the identification failure signal, so as to control the second indicator light 112 to emit light. Based on the above scheme, the position disorder of the tool during placement can be avoided, and the tool is convenient to find and place later.

[0041] The implementation principle of the multifunctional intelligent tool vehicle in the embodiment 1 of the application is as follows: by using the one-to-one correspondence of the RFID identifier 5 and the RFID tag, the position of the tool can be accurately identified, the tool can be prevented from being placed incorrectly, the correct homing of the tool is ensured, and the accuracy of tool management is improved; by using the different color indicator lights LEDLED of the LED light-emitting assembly, the placement state of the tool can be intuitively fed back, the operator can timely find and correct the tool placement error, and the safety and reliability of tool management are improved.

[0042] Embodiment 2:

[0043] Reference Figure 3The structure is basically same as that of the embodiment 1, and the difference is that the passive code scanning device 6 is further included in the embodiment, and a plurality of tools are provided with two-dimensional codes, and the two-dimensional codes include the storage location information corresponding to the tools. The passive code scanning device 6 includes a fixed code scanning head 61, a light assembly 62 and a proximity switch sensor 63 arranged on the partition plate 21 of the cabinet body, and the fixed code scanning head 61, the light assembly 62 and the proximity switch sensor 63 are electrically connected with the controller. The proximity switch sensor 63 is arranged on the side wall of the compartment 22 away from the bottom plate of the drawer 3, and the proximity switch sensor 63 is arranged close to the opening surface of the compartment 22.

[0044] When the drawer 3 is pulled open, at this time, the side wall of the drawer 3 with the handle 35 is away from the proximity switch sensor 63, and the proximity switch sensor 63 is not triggered. When the drawer 3 is located in the compartment 22, at this time, the side wall of the drawer 3 with the handle 35 is close to the proximity switch sensor 63, and the proximity switch sensor 63 is triggered, so that the proximity switch sensor 63 can send a code scanning trigger signal to the controller.

[0045] The light assembly 62 includes one or more LED lamps, and one LED lamp is taken as an example for description in the embodiment. The light assembly 62 and the fixed scanning head 61 are arranged on the side wall of the compartment 22 provided with the proximity switch sensor 63, and the fixed scanning head 61 is located directly above the placing groove 33, and the light assembly 62 is arranged close to the fixed scanning head 61. When the controller receives the code scanning trigger signal, the controller controls the light assembly 62 and the fixed scanning head 61 to start working, the light assembly 62 is used to provide light source to facilitate the scanning work of the fixed scanning head 61, and the fixed scanning head 61 scans the tool in the placing groove 33. If the fixed scanning head 61 does not scan the two-dimensional code, the fixed scanning head 61 sends a matching failure signal to the controller; if the two-dimensional code scanned by the fixed scanning head 61 does not match the location information of the tool corresponding to the placing groove 33, the fixed scanning head 61 also sends a matching failure signal to the controller; the controller receives the matching failure signal and directly outputs a second driving signal to the second indicator lamp 112, so as to control the second indicator lamp 112 to emit light. If the two-dimensional code scanned by the fixed scanning head 61 matches the location information of the tool corresponding to the placing groove 33, the fixed scanning head 61 sends a matching success signal to the controller, and the controller receives the matching success signal and directly outputs a first driving signal to the first indicator lamp 111, so as to control the first indicator lamp 111 to emit light.

[0046] Embodiment 3:

[0047] The structure of the embodiment 1 is basically the same, and the difference is that the embodiment further comprises a active scanning code device, a plurality of tools are provided with a two-dimensional code, and the two-dimensional code comprises the storage location information corresponding to the tool. The active scanning code device comprises a code scanning gun 7, the code scanning gun 7 is arranged on the vehicle body 1, and the code scanning gun 7 is in signal connection with the tool vehicle controller. In the embodiment, the display device 11 is arranged as a display screen 113, the display screen 113 can be used to display the location information acquired by the code scanning gun 7 and can have a touch function and the like.

[0048] Before storing the tool, the relevant staff first scans the two-dimensional code on the tool by using the code scanning gun 7 to acquire the location information corresponding to the tool. The code scanning gun 7 displays the acquired location information on the display device 11 through the controller, so that the relevant staff can place the tool on the corresponding location according to the displayed location information.

[0049] The above are preferred embodiments of the application, and are not used to limit the protection scope of the application, so that: any equivalent changes made according to the structure, shape, principle of the application should be covered within the protection scope of the application.

Claims

1. A multi-functional smart tool cart, characterized by: The utility model provides a kind of tool storage cabinet, including vehicle body (1), and vehicle body (1) is provided with storage cabinet (2), multiple partitions (21) are built-in in the storage cabinet (2), multiple the partition (21) is isolated into multiple compartments (22) by the storage cabinet (2), and the drawer (3) is inserted and is cooperated in each the compartment (22), and the drawer (3) is provided with the placing slot (33) for placing tool;RFID recognizer (5) is provided in the placing slot (33), and the controller is electrically connected with the RFID recognizer (5), and RFID tag is provided on the tool, and the RFID recognizer (5) and the RFID tag are set one by one correspondingly;Display device (11) is further provided on the vehicle body (1), and the display device (11) is electrically connected with the controller.

2. The multi-functional smart tool cart of claim 1, wherein: The display device (11) is set as LED light emitting component, and the LED light emitting component is electrically connected with the controller;The LED light emitting component includes first indicator light (111) and second indicator light (112).

3. The multi-functional smart tool cart of claim 2, wherein: The first indicator light (111) and the second indicator light (112) are different in light-emitting color.

4. The multi-functional smart tool cart of claim 1, wherein: The storage cabinet (2) is further provided with passive code scanning device (6), and two-dimensional code is provided on multiple tools, and the two-dimensional code includes the storage position information corresponding to the tool;The passive code scanning device (6) includes fixed code scanning head (61) arranged on the cabinet partition (21), and the fixed code scanning head (61) is electrically connected with the controller, and the fixed code scanning head (61) is used to scan the two-dimensional code.

5. The multi-functional smart tool cart of claim 4, wherein: The passive code scanning device (6) further includes illumination assembly (62), and the illumination assembly (62) includes one or more LED lamps, and the illumination assembly (62) is electrically connected with the controller.

6. The multi-functional smart tool cart of claim 5, wherein: The passive code scanning device (6) further includes proximity switch sensor (63) electrically connected with the controller, and the proximity switch sensor (63) is installed on the inner wall of the top of the compartment (22);When the drawer (3) is pulled open, the proximity switch sensor (63) is not triggered;When the drawer (3) is located in the compartment (22), the proximity switch sensor (63) is triggered.

7. The multi-functional smart tool cart of claim 1, wherein: The storage cabinet (2) is further provided with active code scanning device, and two-dimensional code is provided on multiple tools, and the two-dimensional code includes the storage position information corresponding to the tool;The active code scanning device includes code scanning gun (7) arranged on the vehicle body (1), and the code scanning gun (7) is electrically connected with the controller, and the code scanning gun (7) is used to scan the two-dimensional code, and the display device (11) is set as display screen (113).

8. The multi-functional smart tool cart of claim 1, wherein: Track structure (4) is additionally provided between the sidewall of the compartment (22) and the drawer (3), and the track structure (4) includes outer track (42) and inner track (41), the outer track (42) is installed on the two opposite sidewalls in the compartment (22) along the drawer (3) insertion direction, and the inner track (41) is installed on the outer sidewall of the drawer (3) corresponding to the position of the outer track (42).