Flexible-assembly wiring frame of laser cutting machine

The flexible cabling rack design solves the problem of difficult cable stacking and locating in traditional cabling racks, enabling neat cable routing and rapid maintenance, reducing labor intensity and costs, and improving installation efficiency and the aesthetics of the electrical system.

CN224083075UActive Publication Date: 2026-04-03SHENZHEN BOKE SYST TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Traditional cabling racks stack cables inside the rack, making them difficult to locate. Cable ties also increase labor intensity and are not easy to reuse, resulting in wasted costs.

Method used

The structure features a cover, frame, and vertically mounted cabling board, combined with movable cabling clips and cable clips, enabling flexible assembly and disassembly of cables. It utilizes vertical space to expand cable deployment, reduces cable stacking, and allows for quick installation and disassembly via hook-shaped clips.

Benefits of technology

It enables neat cable routing and quick cable location, reduces maintenance difficulty, saves labor and costs, and improves installation efficiency and the aesthetics of the electrical system.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a flexibly-assembled wiring frame of a laser cutting machine, and relates to the technical field of wiring. The wiring device comprises a cover, a frame body and wiring plates, the cover covers the top end of the frame body, a plurality of wiring plates are vertically installed in the frame body, each wiring plate comprises a wiring clamp and an installation frame, the wiring clamps are movably installed on the installation frames, the wiring clamps are used for clamping cables, and the installation frames are vertically installed at the bottom end of the frame body. The wiring frame has the beneficial effects that the wiring frame adopts the structure of the cover, the frame body and the wiring plate, the wiring plate can be vertically mounted, and a cable is clamped by the movable wiring clamp. By means of the design mode, the components can be flexibly assembled, disassembled and replaced, and later maintenance, upgrading and adjustment are facilitated.
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Description

Technical Field

[0001] This utility model relates to the field of wiring technology, specifically to a flexible assembly wiring rack for a laser cutting machine. Background Technology

[0002] Traditional cabling racks typically stack cables at the bottom of the rack after they enter, making it difficult to locate cables during maintenance. To prevent cable tangling, existing racks usually secure multiple cables with cable ties, which not only increases the workload for workers but also makes the ties and other securing tools unusable, resulting in wasted resources. Summary of the Invention

[0003] The purpose of this invention is to address the problem of cable tangling inside the wiring rack in the prior art by providing a flexible assembly wiring rack for laser cutting machines.

[0004] To achieve the above objectives, this utility model adopts the following technical solution: a flexible assembly laser cutting machine wiring rack, comprising a cover, a frame, and wiring boards. The cover is abutted on the top of the frame. Several wiring boards are vertically installed inside the frame. Each wiring board includes a wiring clamp and a mounting bracket. The wiring clamp is movably mounted on the mounting bracket and is used to hold cables. The mounting bracket is vertically installed at the bottom of the frame. The wiring rack adopts a structure of a cover, frame, and wiring boards, and the wiring boards can be installed vertically and hold cables via movable wiring clamps. This design allows for flexible assembly, disassembly, and replacement of components, facilitating later maintenance, upgrades, and adjustments.

[0005] The cabling board is installed vertically inside the rack, making full use of the vertical space and helping to expand the cable layout inside the rack and prevent stacking.

[0006] The cable clips are movable, meaning that the position of each cable clip can be adjusted as needed to flexibly accommodate different quantities and types of cables.

[0007] The design of the cabling rack makes cabling neater and the condition of cables easier to inspect and monitor. In case of problems, the relevant lines can be quickly located for repair or replacement.

[0008] Furthermore, the two ends of the frame are composed of several equally spaced wire clamping plates, and the top of the wire clamping plates is recessed to form a clamping groove.

[0009] The evenly spaced cable clips can directly secure cables between adjacent clips, eliminating the need for additional cable securing devices. This design simplifies cable installation and replacement, saving time and labor costs.

[0010] Furthermore, the bottom of the frame has several elongated holes, which are fixedly connected to the electrical cabinet by screws.

[0011] The elongated hole design allows for flexible adjustment of the screw fixing position. This design allows the frame to be finely adjusted during installation according to actual needs, ensuring a more precise and stable connection between the frame and the electrical cabinet, adapting to different installation conditions.

[0012] The elongated hole design offers a certain adjustment range, making it easier for installers to align the screw holes without needing to worry too much about alignment precision. This reduces the amount of adjustment work and difficulty during installation, thus speeding up the installation process.

[0013] Furthermore, the cover has hook-shaped latches on both sides that match the slots.

[0014] The hook-shaped latch and slot design allows for quick and easy installation and removal of the lid, requiring no additional tools. Simply align the hook with the slot and snap it on to install; to remove, simply release the hook to quickly remove the lid. This convenience greatly improves work efficiency.

[0015] Furthermore, the wiring clamp is composed of a first wire plate and a second wire plate that are hinged together, and both the first wire plate and the second wire plate are provided with a plurality of mutually cooperating wire clamping grooves.

[0016] The hinged structure of the first and second cable trays simplifies the wiring process. Users can easily open the cable clips and place wires or cables into the clip grooves, avoiding the cumbersome steps of traditional wiring methods. The opening and closing of the cable clip structure makes wiring operations quick and efficient, especially when there are multiple cables or a dense network of wires.

[0017] The design of the cable clamping groove helps to achieve neat cable arrangement and avoids cable tangling or loosening. This helps to improve the internal cable layout of the equipment and also enhances the aesthetics and standardization of the overall electrical system.

[0018] Furthermore, a locking structure is provided at the top of the side adjacent to the first and second line plates. The locking structure is used to connect the first and second line plates. The back of the first line plate is provided with a mounting groove that is compatible with the mounting bracket.

[0019] The locking structure design effectively connects the first and second wiring boards tightly, preventing them from loosening or shifting during use and ensuring the structural stability of the wiring clip.

[0020] Furthermore, a locking groove is provided on the second line plate at a position corresponding to the locking structure.

[0021] Furthermore, the bottom of the frame has several fixing grooves that are adapted to the mounting bracket.

[0022] The mounting slots provide more secure connection points. These slots are spaced at regular intervals at the bottom of the frame, facilitating adjustments to the mounting positions as needed and effectively utilizing space. This design reduces wasted space and is particularly suitable for use in space-constrained environments, helping users better plan and utilize available space.

[0023] The advantages of this utility model after adopting the above technical solution are as follows: the wiring rack adopts a structure of a cover, a frame, and a wiring board, and the wiring board can be installed vertically and the cables are held by movable wiring clamps. This design allows for flexible assembly, disassembly, and replacement of components, facilitating later maintenance, upgrades, and adjustments.

[0024] The cabling board is installed vertically inside the rack, making full use of the vertical space and helping to expand the cable layout inside the rack and prevent stacking.

[0025] The cable clips are movable, meaning that the position of each cable clip can be adjusted as needed to flexibly accommodate different quantities and types of cables.

[0026] The design of the cabling rack makes cabling neater and the condition of cables easier to inspect and monitor. In case of problems, the relevant lines can be quickly located for repair or replacement. Attached Figure Description

[0027] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0028] Figure 1 This is a schematic diagram of the structure of this utility model.

[0029] Figure 2 This is a schematic diagram of the frame structure in this utility model. Figure 1 .

[0030] Figure 3 This is a schematic diagram of the frame structure in this utility model. Figure 2 .

[0031] Figure 4 This is a schematic diagram of the wiring board structure in this utility model. Figure 1 .

[0032] Figure 5 This is a schematic diagram of the wiring board structure in this utility model. Figure 2 .

[0033] Figure 6This is a schematic diagram of the structure of the first line plate in this utility model.

[0034] Explanation of reference numerals in the attached drawings: 1. Cover; 11. Hook-shaped clip; 2. Frame; 21. Cable clamping plate; 22. Slot; 23. Oblong hole; 24. Fixing slot; 3. Cable board; 3. Cable clamp; 31. First cable board; 311. Mounting slot; 3111. Second cable board; 312. Locking slot; 3121. Cable clamping groove; 313. Locking structure; 314. Cylinder; 3141. Clamping plate; 3142. Mounting bracket; 32. Detailed Implementation

[0035] See Figure 1-6 As shown, the technical solution adopted in this specific embodiment is: a flexible assembly laser cutting machine wiring rack, which consists of three parts: a cover 1, a frame 2, and a wiring board 3.

[0036] The frame 2 consists of several equally spaced cable clamping plates 21 at both ends, with the top of each cable clamping plate 21 recessed to form a groove 22. The bottom of the frame 2 has several elongated holes 23 and several fixing grooves 24. The frame 2 is fixedly connected to the electrical cabinet by screws passing through the elongated holes 23. The design of the elongated holes 23 allows for flexible adjustment of the screw fixing position, enabling the frame 2 to be finely adjusted during installation to adapt to different installation conditions.

[0037] The cover 1 has hook-shaped latches 11 on both sides that match the slots 22. The hook-shaped latches 11 and slots 22 are designed to work together. Simply align the hook-shaped latches 11 with the slots 22 and snap them on to complete the installation. This design allows for quick installation and removal of the cover 1. The operation is simple and does not require any additional tools, which greatly improves work efficiency.

[0038] The specific wiring board 3 includes a wiring clip 31 and a mounting bracket 32. The wiring clip 31 is movably mounted on the mounting bracket 32 ​​and is used to hold cables. The mounting bracket 32 ​​is vertically mounted in the fixing groove 24 at the bottom of the frame 2 by screws.

[0039] The wiring clamp 31 consists of a first wire plate 311 and a second wire plate 312 that are hinged together. Both the first wire plate 311 and the second wire plate 312 have several cooperating wire-clamping grooves 313. The design of the wire-clamping grooves 313 helps to achieve neat cable arrangement and avoid cable tangling or loosening. This helps to improve the cable layout inside the equipment and also enhances the aesthetics and standardization of the overall electrical system. A locking structure 314 is provided at the top of the side adjacent to the first wire plate 311 and the second wire plate 312. The locking structure 314 is used to connect the first wire plate 311 and the second wire plate 312. In this embodiment, the locking structure 314 includes a cylinder 3141 vertically mounted on the first wire plate 311 and a clamping plate 3142 hinged to the top of the cylinder 3141. The design of the locking structure 314 can effectively and tightly connect the first wire plate 311 and the second wire plate 312, preventing them from loosening or shifting during use and ensuring the structural stability of the wiring clamp 31. The back of the first line plate 311 is provided with a mounting groove 3111 that is compatible with the mounting bracket 32. The second line plate 312 is provided with a locking groove 3121 at a position corresponding to the locking structure 314.

[0040] The working principle of this utility model is as follows: The frame 2 is placed inside the electrical cabinet and secured with screws. The cable is then passed through the gap between two adjacent cable clamps 21 into the frame 2. A corresponding cable clip 31 is selected based on the cable specifications. The mounting bracket 32 ​​is first secured to the frame 2 with screws, and then the selected cable clip 31 is inserted into the mounting bracket 32 ​​for installation. After the cable clip 31 is installed, the clamping plate 3142 is rotated to disconnect the first cable plate 311 from the second cable plate 312. The cable is then placed into the clamping groove 313, and the first cable plate 311 and the second cable plate 312 are joined together using the locking structure 314. After all cables are laid, the hook-shaped clip 11 is aligned with the slot 22 and gently snapped on to complete the installation of the cable rack. In traditional cabling racks, cables are stacked at the bottom of the rack after entering the rack 2. This makes it very troublesome to find the cables when maintenance is needed. This utility model changes the stacked cables at the bottom of the rack 2 to a vertical arrangement by using a cabling board 3. This way, when performing cable maintenance, you can easily find the corresponding cable by simply lifting the corresponding cabling clip 31.

[0041] The above description is only used to illustrate the technical solution of this utility model and is not intended to limit it. Any other modifications or equivalent substitutions made by those skilled in the art to the technical solution of this utility model, as long as they do not depart from the spirit and scope of the technical solution of this utility model, should be covered within the scope of the claims of this utility model.

Claims

1. A flexible assembled laser cutting machine wiring rack characterized by: Including cover (1), frame (2) and wiring board (3), the cover (1) covers the top end of frame (2), a plurality of wiring boards (3) are vertically installed in the frame (2), the wiring board (3) includes wiring clip (31) and mounting bracket (32), the wiring clip (31) is movably mounted on the mounting bracket (32), the wiring clip (31) is used for clamping cable, and the mounting bracket (32) is vertically installed at the bottom end of the frame (2).

2. A flexible assembled laser cutting machine wiring rack according to claim 1, characterized in that: The both ends of the frame (2) are composed of a plurality of equally spaced line clamping plates (21), and the top end of the line clamping plate (21) is recessed inward to form a clamping groove (22).

3. A flexible assembled laser cutting machine wiring rack according to claim 1, characterized in that: The bottom of the frame (2) has a plurality of long circular holes (23), which are fixedly connected with the electrical cabinet by screws.

4. The flexible assembled laser cutting machine wiring rack of claim 1, wherein: The cover (1) is provided with a hook-shaped clamping hook (11) on both sides, which is matched with the clamping groove (22).

5. A flexible assembled laser cutting machine wiring rack according to claim 1, characterized in that: The wiring clip (31) is composed of a first line plate (311) and a second line plate (312) hinged to each other, and a plurality of line clamping grooves (313) are arranged on the first line plate (311) and the second line plate (312).

6. A flexible assembled laser cutting machine wiring rack according to claim 5, characterized in that: The first line plate (311) and the second line plate (312) are provided with a locking structure (314) on one side of the top end, the locking structure (314) is used for connecting the first line plate (311) and the second line plate (312), and the first line plate (311) is provided with a mounting groove (3111) matched with the mounting bracket (32) on the back.

7. A flexible assembled laser cutting machine wiring rack according to claim 6, characterized in that: The second line plate (312) is provided with a locking groove (3121) corresponding to the locking structure (314).

8. A flexible assembled laser cutting machine wiring rack according to claim 6, characterized in that: The bottom of the frame (2) has a plurality of fixing grooves (24) matched with the mounting bracket (32).