Intelligent steel mesh management cabinet
By designing an intelligent steel mesh management cabinet, and utilizing photoelectric sensors and rapid positioning markers, the problem of misplacement in intelligent steel mesh storage is solved, realizing automated inbound and outbound operations and improving storage efficiency and accuracy.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HITECH SEMICON WUXI
- Filing Date
- 2025-06-20
- Publication Date
- 2026-06-16
AI Technical Summary
In the existing intelligent steel mesh storage process, managers need to manually scan and record the data, which can easily lead to misplacement and storage chaos, resulting in low efficiency and poor accuracy in warehousing.
The intelligent steel mesh management cabinet includes storage cabinets, cabinet panels, insert panels, quick positioning markers, and intelligent sensing modules. It identifies the position of the steel mesh through photoelectric sensors and automatically records the storage status. When the steel mesh is taken out of the warehouse, the quick positioning markers are used to quickly locate the position of the steel mesh, realizing automated storage and retrieval.
It improved the efficiency and accuracy of steel mesh entry and exit from the warehouse, achieved automated management, and reduced human error.
Smart Images

Figure CN224361842U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of storage, and in particular to the field of intelligent storage technology, specifically an intelligent steel mesh management cabinet. Background Technology
[0002] Currently, during the storage process of smart steel mesh, managers need to manually scan the barcode and record it in the warehouse. Then, the steel mesh is placed in a fixed area with a specific cabinet number. If a specific model of steel mesh needs to be retrieved, the manager needs to go to the cabinet in the specific area of that model of steel mesh, retrieve it, scan the barcode, and record it as out of the warehouse. To quickly retrieve and remove the steel mesh, the manager needs to remember a large amount of information, and there is a risk of misplacing or misplacing the mesh or missing the scanning step, which causes chaos in the storage and management of smart steel mesh. Summary of the Invention
[0003] In view of the shortcomings of the prior art described above, the purpose of this utility model is to provide an intelligent steel mesh management cabinet to solve the difficulties of the prior art.
[0004] To achieve the above and other related objectives, this utility model provides an intelligent steel mesh management cabinet, comprising:
[0005] Storage cabinet 1, the storage cabinet 1 is a hollow cavity 11 formed by four side walls, the cavity 11 has a retrieval opening 12 on one side, and the bottom of the storage cabinet 1 is equipped with casters 13 by bolts.
[0006] Cabinet panel 14, several cabinet panels 14 are provided, and several cabinet panels 14 are welded to the inner side wall of the storage cabinet 1. The cabinet panels 14 divide the cavity 11 into several storage cavities 15.
[0007] Insert plate 2, several insert plates 2 are provided, and several insert plates 2 are respectively provided at the bottom of storage cavity 15. The insert plates 2 are connected to the side wall of storage cabinet 1 by bolts.
[0008] Quick positioning marker 3 is respectively set on the top of storage cabinet 1 and the bottom of insert plate 2;
[0009] The intelligent sensing module 4 is installed on the side of the storage cabinet 1 away from the retrieval port 12.
[0010] According to the preferred embodiment, one side of the insert plate 2 is closely attached to the inner wall of the storage cabinet 1 on the side away from the retrieval port 12.
[0011] According to the preferred embodiment, the length of the insert plate 2 is less than the length of the cabinet plate 14 and the storage cabinet 1.
[0012] According to the preferred embodiment, the top of the insert plate 2 is provided with a dozen or so insert plate slots 21 at equal intervals.
[0013] According to the preferred scheme, quick location marker 3:
[0014] Cabinet positioning label plate 31, the cabinet positioning label plate 31 is inverted T-shaped, and the bottom of the cabinet positioning label plate 31 is bolted to the center of the top of the storage cabinet 1;
[0015] The slot serial number 32 is provided in dozens of ways. The dozens of slot serial numbers 32 are attached at equal intervals to the bottom of the insert plate 2 near the retrieval port 12. The slot serial number 32 is located directly below the corresponding insert plate slot 21.
[0016] According to the preferred embodiment, the intelligent sensing module 4 includes:
[0017] The scanning lens 41 is connected to the top of the equally spaced insert plate 2 near the retrieval port 12 by bolts. The scanning lens 41 is located on one side of the top of the corresponding insert plate slot 21.
[0018] The sensor magnetic suction collection slot 42 is opened on the outer wall of the storage cabinet 1 on the side of the storage cavity 15 away from the retrieval port 12. The sensor magnetic suction collection slot 42 is located above the insertion plate 2. The bottom of the sensor magnetic suction collection slot 42 is provided with sensor embedded through holes 46 at equal intervals.
[0019] Integrated block 43 is magnetically embedded in sensor magnetic collection slot 42. Photoelectric sensors 44 are equally spaced on integrated block 43. The bottom of photoelectric sensors 44 is inserted into sensor embedded through hole 46. The photoelectric sensors 44 are located directly above the corresponding insert card slot 21.
[0020] The control motherboard 45 is bolted to the outer wall of the storage cabinet 1 on the side of the storage cavity 15 away from the retrieval port 12. The control motherboard 45 is located below the sensor magnetic collection slot 42.
[0021] According to a preferred embodiment, the photoelectric sensor 44 and the barcode scanning lens 41 are connected to the control motherboard 45 on one side.
[0022] This utility model employs a storage cabinet, cabinet panel, insert plate, quick positioning marker, and intelligent sensing module. During the warehousing process, simply locate an empty insert plate slot on any storage cabinet, insert the steel mesh to be stored into the slot along the insert plate. After the steel mesh is fully inserted, the photoelectric sensor in the intelligent sensing module detects the insertion and, via the control motherboard, pneumatically scans the QR code or barcode on the steel mesh, recording its storage location and marking it as stored. For retrieval, the manager locates the required steel mesh model, finds its storage location, and quickly finds the corresponding cabinet number, layer, and slot sequence number using the quick positioning marker. The specific steel mesh can then be retrieved. During retrieval, the photoelectric sensor detects the steel mesh disappearing and controls the motherboard to erase the original stored status of the steel mesh from the insert plate slot, achieving the following beneficial effects:
[0023] (1) Improved the efficiency of steel mesh entering and leaving the warehouse and the accuracy of taking it out of the warehouse;
[0024] (2) Achieve automated inbound and outbound operations.
[0025] The preferred embodiments of the present invention will be described in more detail below with reference to the accompanying drawings, so as to facilitate an understanding of the features and advantages of the present invention. Attached Figure Description
[0026] Figure 1 The diagram shown is a three-dimensional structural schematic of this utility model;
[0027] Figure 2 This is a three-dimensional structural schematic diagram from another perspective of the present invention;
[0028] Figure 3 The diagram shown is an enlarged three-dimensional structural schematic of the integrated block and photoelectric sensor in this utility model.
[0029] Figure 4 The diagram shown is an enlarged three-dimensional structural schematic of the magnetic suction container slot for sensors in this utility model.
[0030] Figure 5 The diagram shown is an enlarged three-dimensional structural schematic of the insert plate in this utility model.
[0031] Label Explanation
[0032] 1. Storage cabinet; 11. Cavity; 12. Retrieval opening; 13. Casters; 14. Cabinet panel; 15. Storage cavity;
[0033] 2. Insertion board; 21. Insertion board slot;
[0034] 3. Quick positioning markers; 31. Cabinet positioning marker plate; 32. Slot serial number;
[0035] 4. Intelligent sensing module; 41. Barcode scanning lens; 42. Sensor magnetic suction collection slot; 43. Integrated circuit; 44. Photoelectric sensor; 45. Control motherboard; 46. Sensor embedded through hole; Detailed Implementation
[0036] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. The same reference numerals in the drawings represent the same components. It should be noted that the described embodiments are only some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the described embodiments of this utility model without creative effort are within the scope of protection of this utility model.
[0037] Compared to the embodiments shown in the accompanying drawings, feasible embodiments within the scope of protection of this utility model may have fewer components, have other components not shown in the drawings, different components, components arranged differently, or components with different connections, etc. Furthermore, two or more components shown in the drawings may be implemented in a single component, or a single component shown in the drawings may be implemented as multiple separate components.
[0038] Unless otherwise defined, the technical or scientific terms used herein shall have the ordinary meaning understood by one of ordinary skill in the art to which this invention pertains. The terms “first,” “second,” and similar terms used in this patent application specification and claims do not indicate any order, quantity, or importance, but are merely used to distinguish different components. Similarly, “an” or “a” and similar terms do not necessarily indicate a quantity limitation. Terms such as “comprising” or “including” mean that the element or object preceding the word encompasses the element or object listed following the word and its equivalents, without excluding other elements or objects. Terms such as “connected” or “linked” are not limited to physical or mechanical connections, but can include electrical connections, whether direct or indirect. Terms such as “upper,” “lower,” “left,” and “right” are used only to indicate relative positional relationships; these relative positional relationships may change accordingly when the absolute position of the described object changes.
[0039] This utility model proposes an intelligent steel mesh management cabinet for use in steel mesh storage processes. This utility model does not limit the specifications and types of steel mesh to be stored, but the structure of the storage cabinet 1, cabinet panel 14, insert plate 2, quick positioning mark 3 and intelligent sensing module 4 is particularly suitable for intelligent and rapid storage and retrieval of steel mesh.
[0040] Overall, the intelligent steel mesh management cabinet proposed in this utility model mainly includes: a storage cabinet 1, a cabinet panel 14, a plug panel 2, a quick positioning marker 3, and an intelligent sensing module 4. (See also...) Figure 1 It shows the arrangement of storage cabinet 1, cabinet panel 14, insert panel 2, quick positioning marker 3 and intelligent sensing module 4.
[0041] The intelligent steel mesh management cabinet proposed in this utility model only requires finding an empty slot 21 on any storage cabinet 1 during the warehousing process. The steel mesh to be stored is then inserted into the slot 21 along the insert plate 2. After the steel mesh is fully inserted, the photoelectric sensor 44 in the intelligent sensing module 4 recognizes the insertion and, through the control motherboard 45, controls the barcode scanner 41 to pneumatically photograph the QR code or barcode on the steel mesh, recording the storage location and marking the steel mesh as stored. During retrieval, the manager queries the storage location of the steel mesh based on its model and quickly locates the corresponding cabinet number, layer, and slot sequence number 32 using the quick positioning identifier 3. The specific steel mesh can then be retrieved. During retrieval, the photoelectric sensor 44 recognizes the disappearance of the steel mesh and controls the motherboard 45 to remove the original stored status of the steel mesh from the insert plate slot 21, achieving automated warehousing and retrieving without requiring specific steel meshes to be stored in specific locations, thus improving the efficiency and accuracy of steel mesh warehousing and retrieving.
[0042] The aforementioned storage cabinet 1 consists of a hollow cavity 11 formed by four side walls. A retrieval opening 12 is provided on one side of the cavity 11. Universal wheels 13 are bolted to the bottom of the storage cabinet 1, allowing the storage cabinet 1 to freely change position.
[0043] The cabinet panel 14 is provided in several parts. The cabinet panel 14 is welded to the inner wall of the storage cabinet 1. The cabinet panel 14 divides the cavity 11 into several storage cavities 15. The cabinet panel 14 can maximize the use of the space of the cavity 11 by dividing the cabinet into layers.
[0044] Several insert plates 2 are provided, and the insert plates 2 are respectively set at the bottom of the storage cavity 15. The insert plates 2 are connected to the side wall of the storage cabinet 1 by bolts. One side of the insert plate 2 is close to the inner side wall of the storage cabinet 1 away from the retrieval port 12. The length of the insert plate 2 is less than the length of the cabinet plate 14 and the storage cabinet 1, so that there is a space for lifting during the process of retrieving the steel mesh, thereby improving the stability of retrieval. The top of the insert plate 2 has a dozen or so insert plate slots 21 at equal intervals, so that a dozen or so steel meshes of different models can be stored on one insert plate 2 at the same time.
[0045] The aforementioned quick positioning marks 3 are respectively set on the top of the storage cabinet 1 and the bottom of the insertion plate 2. The quick positioning marks 3 include: cabinet positioning mark plate 31 and slot serial number 32. The cabinet positioning mark plate 31 is in the shape of an inverted T. The bottom of the cabinet positioning mark plate 31 is set at the top center of the storage cabinet 1 by bolts. The cabinet positioning mark plate 31 can quickly locate the storage cabinet 1 with the mark in the storage warehouse. Dozens of slot serial numbers 32 are set. Dozens of slot serial numbers 32 are set at equal intervals by pasting on the bottom of the insertion plate 2 near the retrieval port 12. The slot serial number 32 is located directly below the corresponding insertion plate slot 21. The slot serial number 32 can facilitate managers to quickly find the slot.
[0046] The aforementioned intelligent sensing module 4 is installed on the side of the storage cabinet 1 away from the retrieval opening 12. The intelligent sensing module 4 includes: a barcode scanning lens 41, a sensor magnetic suction collection slot 42, an integrated block 43, and a control main board 45. The barcode scanning lens 41 is bolted to the top of the equally spaced insert plate 2 on the side near the retrieval opening 12. The barcode scanning lens 41 is located on one side of the top of the corresponding insert plate slot 21. The sensor magnetic suction collection slot 42 is opened on the outer wall of the storage cabinet 1 on the side of the storage cavity 15 away from the retrieval opening 12. The sensor magnetic suction collection slot 42 is located above the insert plate 2, and the bottom of the sensor magnetic suction collection slot 42 is... The sensor is embedded through hole 46 at equal intervals. The integrated block 43 is magnetically embedded in the sensor magnetic collection slot 42. The photoelectric sensor 44 is embedded through the integrated block 43 at equal intervals. The bottom of the photoelectric sensor 44 is inserted into the sensor embedded through hole 46. The photoelectric sensor 44 is located directly above the corresponding insert card slot 21. The control motherboard 45 is set on the outer wall of the storage cabinet 1 on the side away from the retrieval port 12 of the storage cavity 15 by bolts. The control motherboard 45 is located below the sensor magnetic collection slot 42. The side of the electric sensor and the barcode scanning lens 41 is connected to the control motherboard 45.
[0047] The above embodiments are merely illustrative of the principles and effects of this utility model and are not intended to limit the scope of this utility model. Any person skilled in the art can modify or alter the above embodiments without departing from the spirit and scope of this utility model. Therefore, all equivalent modifications or alterations made by those skilled in the art without departing from the spirit and technical concept disclosed in this utility model should still be covered by the claims of this utility model.
Claims
1. An intelligent steel mesh management cabinet, characterized in that, include: Storage cabinet (1), the storage cabinet (1) is a hollow cavity (11) formed by four side walls, the cavity (11) has a retrieval opening (12) on one side, and the bottom of the storage cabinet (1) is equipped with casters (13) by bolts; Cabinet panel (14), several cabinet panels (14) are provided, and several cabinet panels (14) are welded to the inner side wall of the storage cabinet (1). The cabinet panels (14) divide the cavity (11) into several storage cavities (15). Insert plate (2), several insert plates (2) are provided, and several insert plates (2) are respectively provided at the bottom of the storage cavity (15). The insert plates (2) are connected to the side wall of the storage cabinet (1) by bolts; Quick positioning markers (3) are respectively set on the top of the storage cabinet (1) and the bottom of the insert plate (2); The intelligent sensing module (4) is installed on the side of the storage cabinet (1) away from the retrieval port (12).
2. The intelligent steel mesh management cabinet according to claim 1, characterized in that, The insert plate (2) is attached to the inner wall of the storage cabinet (1) on the side away from the retrieval port (12).
3. The intelligent steel mesh management cabinet according to claim 2, characterized in that, The length of the insert plate (2) is less than the length of the cabinet plate (14) and the storage cabinet (1).
4. The intelligent steel mesh management cabinet according to claim 3, characterized in that, The top of the insert plate (2) has a dozen or so insert plate slots (21) spaced at equal intervals.
5. The intelligent steel mesh management cabinet according to claim 4, characterized in that, The rapid positioning identifier (3): Cabinet positioning label plate (31), the cabinet positioning label plate (31) is in the shape of an inverted T, and the bottom of the cabinet positioning label plate (31) is set at the top center of the storage cabinet (1) by bolt connection; The slot serial number (32) is provided in dozens of places. The dozens of slot serial numbers (32) are set at equal intervals by pasting on the bottom of the side of the insert plate (2) near the retrieval port (12). The slot serial number (32) is located directly below the corresponding insert plate slot (21).
6. The intelligent steel mesh management cabinet according to claim 5, characterized in that, The intelligent sensing module (4) includes: The scanning lens (41) is connected to the top of the equally spaced insert plate (2) near the retrieval port (12) by bolts. The scanning lens (41) is located on one side of the top of the corresponding insert plate slot (21). The sensor magnetic suction collection slot (42) is located on the outer wall of the storage cabinet (1) on the side away from the retrieval port (12) of the storage cavity (15). The sensor magnetic suction collection slot (42) is located above the insert plate (2). Sensor embedded through holes (46) are provided at equal intervals at the bottom of the sensor magnetic suction collection slot (42). An integrated block (43) is magnetically embedded in a sensor magnetic mounting slot (42). Photoelectric sensors (44) are equally spaced on the integrated block (43). The bottom of the photoelectric sensor (44) is inserted into a sensor embedded through hole (46). The photoelectric sensor (44) is located directly above the corresponding insert slot (21). The control motherboard (45) is bolted to the outer wall of the storage cabinet (1) on the side away from the retrieval port (12) of the storage cavity (15). The control motherboard (45) is located below the sensor magnetic collection slot (42).
7. The intelligent steel mesh management cabinet according to claim 6, characterized in that, The photoelectric sensor (44) and the barcode scanner (41) are connected to the control motherboard (45) on one side.