Workshop cable layout transformation system
By designing the workshop cable layout and transformation system, and using the combined structure of wire rails and top cover to organize and mask the cable, the safety hazards caused by unreasonable cable layout in the workshop are solved, and effective protection of cables and improvement of the workshop's neatness is achieved.
Patent Information
- Application Number
- CN202421591740.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-08
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2034-07-08
AI Technical Summary
The lack of regulations on the cable layout of the workshop leads to safety hazards that exposed open wires are prone to scratches, trips and friction damage.
A workshop cable layout transformation system is designed, including several sets of wire rails and top covers. The wire rails are continuously connected and organized through a combined structure of wire seats, buckles and rollers. The top cover can detachably cover the cables to provide masking and protection.
By cooperating with the wire rails and the top cover, the cables in the workshop are organized and masked, the cleanliness of the workshop is improved, and the cables are effectively prevented and safety hazards are reduced.
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Figure CN222851948U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of cable laying, and in particular to a workshop cable layout modification system. Background Art
[0002] There are not many regulations on the layout and placement of cables in the workshop, and there are many exposed wires. This unreasonable line layout and connection usage poses safety hazards, which are manifested in the following aspects: 1. The cable surface is easily scratched by workpieces or debris, causing the conductive core of the cable to be exposed; 2. It is easy to trip the operator; 3. The cable is seriously damaged by friction with the ground.
[0003] In order to enable the workshop cable layout to be quickly modified, the present application proposes a workshop cable layout modification system, which can be used to layout and protect exposed open wires in the workshop. Utility Model Content
[0004] In order to improve the problems raised in the above background technology, the present application provides a workshop cable layout modification system.
[0005] The present application provides a workshop cable layout transformation system that adopts the following technical solutions:
[0006] A workshop cable layout modification system comprises several groups of line rails and top covers, wherein adjacent line rails in the several groups of line rails are connected to each other, and a continuous structure is formed between the several groups of line rails, and the top covers are detachably arranged on the outside of the several groups of line rails, the line rails comprise a bottom plate, a conductor seat, a first clip and a second clip, the conductor seat is fixedly connected to the top of the bottom plate, and the conductor seat is formed with several guide grooves extending along the length direction of the conductor seat and penetrating the conductor seat, the first clip and the second clip are respectively formed at two ends of the bottom plate along the length direction of the bottom plate, a convex column is formed on the top of the first clip, a limiting groove matched with the convex column is formed on the second clip, and a slot connected with the limiting groove is formed on the side of the second clip facing away from the bottom plate, and two adjacent groups of line rails respectively utilize the limiting cooperation of the convex columns and the limiting grooves of the two adjacent groups of line rails to connect and be continuous along the length direction.
[0007] Furthermore, the wire seat is configured as an elastic rubber seat, and a plurality of guide grooves formed on the wire seat all penetrate the bottom wall of the wire seat.
[0008] Furthermore, at least two mounting grooves are formed on the base plate, and a plurality of coaxially distributed rollers are arranged in each of the mounting grooves. The coaxially distributed rollers are rotatably connected to the base plate by a rotating shaft, and the top of each roller extends into a guide groove.
[0009] Furthermore, the shape of the limiting groove is set to be circular, the slot is set to be a rectangle with a width smaller than the diameter of the limiting groove, the length of the boss is adapted to the diameter of the limiting groove, and the width of the boss is adapted to the width of the slot.
[0010] Furthermore, the sum of the thicknesses of the first buckle and the second buckle is equal to the thickness of the bottom plate, and the upper surface of the protruding column extending into the limiting groove is flush with the top of the second buckle.
[0011] Furthermore, the top cover includes an upper shielding portion and two first side shielding portions, the two first side shielding portions are symmetrically formed at the bottom of the upper shielding portion, and the spacing between the two first side shielding portions is adapted to the width of the wire holder, the top cover also includes two second side shielding portions, the two second side shielding portions are symmetrically formed at the lower ends of the two first side shielding portions, respectively, the spacing between the two second side shielding portions is adapted to the width of the bottom plate, a chamber with an opening and an inward concave cavity is formed between the bottom wall of the upper shielding portion, the outer wall of the first side shielding portion, and the top wall of the second side shielding portion, and a plurality of threading holes that penetrate the first side shielding portions are formed on the first side shielding portion at intervals along its length direction.
[0012] The beneficial technical effect of the present application is that through the coordinated arrangement of the wire rail and the top cover, the cables scattered on the ground in the workshop can be arranged between the wire rail and the top cover, and the wire rail and the top cover can be used to cover a larger area of the laid cables, thereby improving the cleanliness of the workshop on the one hand, and better protecting the cables on the other hand. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a schematic diagram of the overall structure of the workshop cable layout transformation system of the embodiment of the present application;
[0014] Figure 2 It is a schematic diagram of the structure of the linear rail in the embodiment of the present application when connected and used;
[0015] Figure 3 yes Figure 2 Schematic diagram of the structure of a single set of linear rails;
[0016] Figure 4 yes Figure 3 Schematic diagram of the structure of the center rail at another angle;
[0017] Figure 5 It is a schematic diagram of the structure of the top cover in the embodiment of the present application.
[0018] Figure numerals: 10, linear rail; 11, bottom plate; 111, mounting groove; 12, wire holder; 13, guide groove; 14, first buckle; 15, second buckle; 16, boss; 17, connecting hole; 18, limit groove; 181, slot; 19, roller; 191, rotating shaft; 20, top cover; 21, upper shielding part; 22, first side shielding part; 23, threading hole; 24, second side shielding part. DETAILED DESCRIPTION
[0019] The technical solution of the present application will be described clearly and completely below in conjunction with the accompanying drawings. Obviously, the described embodiments are part of the embodiments of the present application, rather than all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present application.
[0020] The present application embodiment discloses a workshop cable layout modification system. Figure 1 The workshop cable layout transformation system includes several groups of rails 10 and a top cover 20. The adjacent rails 10 in the several groups of rails 10 are connected to each other, and a continuous structure is formed between the several groups of rails 10, so that cables can be laid on the several continuous groups of rails 10 and laid along the direction in which the several groups of rails 10 are connected and extended. The top cover 20 is detachably arranged on the outside of the several groups of rails 10, and the top cover 20 can be used to cover and protect the laid cables.
[0021] See also Figures 2 to 4The line rail 10 may include a bottom plate 11, a conductor holder 12, a first buckle 14, a second buckle 15, and a plurality of rollers 19. The conductor holder 12 is fixedly connected to the top of the bottom plate 11, and the conductor holder 12 may be made of an elastic rubber material. A plurality of guide grooves 13 are formed on the conductor holder 12, and the guide grooves 13 extend along the length direction of the conductor holder 12 and penetrate the conductor holder 12. The laid cables can be placed through the guide grooves 13, so that the conductor holder 12 can be used to arrange the cables neatly. At least two mounting grooves 111 are formed on the bottom plate 11, and a plurality of coaxially distributed rollers 19 are arranged in each mounting groove 111, and the coaxially distributed rollers 19 are rotatably connected to the bottom plate 11 by a rotating shaft 191. Each guide groove penetrates the bottom wall of the conductor holder 12, and the top of each roller 19 extends upward into a guide groove 13, so that when the user needs to pull the cable out from the end of the device, the rotation of the roller 19 can be used to assist the removal of the cable. The first clip 14 and the second clip 15 are respectively formed at both ends of the bottom plate 11 along the length direction of the bottom plate 11. The two adjacent groups of linear rails 10 can be connected and continuous by using the first clip 14 and the second clip 15 adjacent to each other. A boss 16 is formed on the top of the first clip 14, and a limiting groove 18 that matches the boss 16 is formed on the second clip 15. A slot 181 that communicates with the limiting groove 18 is formed on the side of the second clip 15 that faces away from the bottom plate 11. The boss 16 can be inserted into the adjacent limiting groove 18 from the slot 181 and clamp the inner wall of the limiting groove 18. The two adjacent groups of linear rails 10 respectively use the limiting cooperation of the boss 16 and the limiting groove 18 to connect the two adjacent groups of linear rails 10 and be continuous along the length direction.
[0022] In this embodiment, the shape of the limiting groove 18 is set to be circular, and the slot 181 is set to be a rectangle with a width smaller than the diameter of the limiting groove 18. The length of the boss 16 is adapted to the diameter of the limiting groove 18, and the width of the boss 16 is adapted to the width of the slot 181. When connecting two sets of linear rails 10, one set of linear rails 10 can be rotated 90 degrees, and then the boss 16 in the set of linear rails 10 can be inserted from the slot 181 into the limiting groove 18 of the other set of linear rails 10, and then the set of linear rails 10 is rotated 90 degrees and the two sets of linear rails 10 are parallel, so that the boss in the set of linear rails 10 can clamp the inner wall of the limiting groove 18 in the other set of linear rails 10.
[0023] In this embodiment, the sum of the thicknesses of the first clip 14 and the second clip 15 is equal to the thickness of the base plate 11, and the upper surface of the protrusion 16 extending into the limiting groove 18 is flush with the top of the second clip 15, so that the two sets of linear rails 10 can be aligned at the top after being connected.
[0024] See also Figure 5The top cover 20 may include an upper shielding portion 21, two first side shielding portions 22, and two second side shielding portions 24. The two first side shielding portions 22 are symmetrically formed at the bottom of the upper shielding portion 21, and the spacing between the two first side shielding portions 22 is adapted to the width of the wire holder 12, so that when the top cover 20 is installed, the two first side shielding portions 22 can be inserted downward from both sides of the wire holder 12 in the wire rail 10, and the upper shielding portion 21 and the two first side shielding portions 22 are used to shield and protect the cables. The two second side shielding portions 24 are symmetrically formed at the lower ends of the two first side shielding portions 22, respectively, and the spacing between the two second side shielding portions 24 is adapted to the width of the bottom plate 11, so that when the top cover 20 is installed, the two second side shielding portions 24 can be inserted downward from both sides of the bottom plate 11 in the wire rail 10, and the two second side shielding portions 24 are used to shield and protect the wire rail 10. The top cover 20 can adopt an integral structure or a segmented structure. When adopting a segmented structure, multiple segments of the top cover 20 can be assembled into one by welding or bonding, and the length of the overall top cover 20 can be adapted to the length of several groups of linear rails 10.
[0025] In this embodiment, a cavity with an opening and a concave interior is formed between the bottom wall of the upper shielding portion 21, the outer wall of the first side shielding portion 22, and the top wall of the second side shielding portion 24. The first side shielding portion 22 is provided with a plurality of threading holes 23 that penetrate the first side shielding portion 22 at intervals along its length direction, so that when the cables arranged on the rail 10 need to be connected to the equipment, their ends can be passed through the adjacent threading holes 23. In addition, temporary cables can be arranged in the cavity formed between the upper shielding portion 21, the first side shielding portion 22, and the second side shielding portion 24, and the upper shielding portion 21 can be used to shield and protect them.
[0026] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.
Claims
1. A workshop cable layout transformation system, characterized in that: The invention comprises a plurality of groups of linear rails (10) and a top cover (20), wherein adjacent linear rails (10) in the plurality of groups of linear rails (10) are connected to each other and a continuous structure is formed between the plurality of groups of linear rails (10), and the top cover (20) is detachably arranged on the outside of the plurality of groups of linear rails (10). The linear track (10) comprises a bottom plate (11), a conductor seat (12), a first fastener (14) and a second fastener (15); the conductor seat (12) is fixedly connected to the top of the bottom plate (11), and the conductor seat (12) is formed with a plurality of guide grooves (13) extending along the length direction of the conductor seat (12) and penetrating the conductor seat (12); the first fastener (14) and the second fastener (15) are respectively formed on the bottom plate (11) along the length direction of the bottom plate (11); At both ends, a convex column (16) is formed on the top of the first buckle (14), a limiting groove (18) matched with the convex column (16) is formed on the second buckle (15), and a slot (181) connected with the limiting groove (18) is formed on the side of the second buckle (15) facing away from the bottom plate (11), and the two adjacent groups of linear rails (10) respectively utilize the limiting cooperation of the convex columns (16) and the limiting groove (18) of the two groups, so that the two adjacent groups of linear rails (10) are connected and continuous along the length direction.
2. The workshop cable layout modification system according to claim 1 is characterized in that: The wire seat (12) is configured as an elastic rubber seat, and a plurality of guide grooves (13) formed on the wire seat (12) all penetrate the bottom wall of the wire seat (12).
3. The workshop cable layout modification system according to claim 2 is characterized in that: At least two installation grooves (111) are formed on the bottom plate (11), and a plurality of coaxially distributed rollers (19) are arranged in each of the installation grooves (111). The coaxially distributed rollers (19) are rotatably connected to the bottom plate (11) via a rotating shaft (191), and the top of each roller (19) extends into a guide groove (13).
4. The workshop cable layout modification system according to claim 1 is characterized in that: The shape of the limiting groove (18) is set to be circular, and the slot (181) is set to be a rectangle with a width smaller than the diameter of the limiting groove (18).
5. The workshop cable layout modification system according to claim 4 is characterized in that: The length of the boss (16) is matched to the diameter of the limiting groove (18), and the width of the boss (16) is matched to the width of the slot (181).
6. The workshop cable layout modification system according to claim 4 or 5, characterized in that: The sum of the thicknesses of the first buckle (14) and the second buckle (15) is equal to the thickness of the bottom plate (11), and the upper surface of the protruding column (16) extending into the limiting groove (18) is flush with the top of the second buckle (15).
7. The workshop cable layout modification system according to claim 6 is characterized in that: The top cover (20) comprises an upper shielding portion (21) and two first side shielding portions (22), the two first side shielding portions (22) being symmetrically formed at the bottom of the upper shielding portion (21), and the spacing between the two first side shielding portions (22) being adapted to the width of the wire holder (12).
8. The workshop cable layout modification system according to claim 7 is characterized in that: The top cover (20) further comprises two second side shielding portions (24), the two second side shielding portions (24) being symmetrically formed at the lower ends of the two first side shielding portions (22), respectively, and the spacing between the two second side shielding portions (24) being adapted to the width of the bottom plate (11).
9. The workshop cable layout modification system according to claim 8 is characterized in that: A cavity with an opening and a concave interior is formed between the bottom wall of the upper shielding portion (21), the outer wall of the first side shielding portion (22), and the top wall of the second side shielding portion (24), and a plurality of threading holes (23) penetrating the first side shielding portion (22) are formed on the first side shielding portion (22) at intervals along its length direction.