Auxiliary bundling structure for power distribution cabinet cable
By designing an auxiliary cable bundling structure for distribution cabinets, using clips, slots, sliders, and Velcro markers, the problem of cumbersome cable bundling in distribution cabinets is solved, enabling rapid cable bundling and positioning, and simplifying inspection and maintenance.
Patent Information
- Application Number
- CN202520009633.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-03
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-01-03
AI Technical Summary
The existing process of bundling, inspecting and maintaining cables in power distribution cabinets is cumbersome and difficult to manage and maintain efficiently.
Design an auxiliary cable management structure for distribution cabinets. Through the connection of buckles and slots, the sliding and rotation adjustment of sliders on toothed tracks, and the combination of Velcro marking tags, the cable can be quickly managed and positioned.
It enables rapid cable bundling and positioning, simplifies the inspection and maintenance process, and improves the efficiency and convenience of cable management.
Smart Images

Figure CN223693537U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a power distribution cabinet cable collection technology field, concretely relates to a kind of auxiliary collection structure for power distribution cabinet cable. BACKGROUND
[0002] In power system and various industries, commercial and household applications, power distribution cabinet is indispensable equipment, and the main function of power distribution cabinet is to distribute, control and protect power to meet the power demand of equipment, however, with the increase of power demand, the scale and complexity of power distribution cabinet are also increasing, which makes line management and maintenance very difficult.
[0003] The cable management frame of power distribution cabinet is a component for arranging and placing cables, and when arranging cables, the cables need to be bundled and fixed by a tie every certain interval according to the standard, to prevent the cables from deforming and affecting the connection stability with other electrical components in the later period, but after being bundled and fixed by a tie, the tie needs to be removed one by one for subsequent maintenance, to prevent the cables from being twisted together and difficult to be checked one by one, and after maintenance, the cables need to be re-arranged and then bundled and fixed by a tie, which is relatively cumbersome. SUMMARY
[0004] Therefore, the utility model provides a kind of auxiliary collection structure for power distribution cabinet cable, and the utility model can be connected to the cable for collection by the buckle of the card slot, which is convenient for operators to use.
[0005] To solve the above technical problems, the utility model provides a kind of auxiliary collection structure for power distribution cabinet cable, including power distribution cabinet body, the both sides cabinet wall in power distribution cabinet body are provided with a slide, the both sides in slide are provided with a tooth track, a plurality of sliding blocks are provided in slide, one side of sliding block close to terminal in power distribution cabinet body is provided with slide plate, the middle part of slide plate is equipped with recess, one side of recess is provided with fixed base, the other side of recess is provided with card slot, and a card band is arranged between fixed base and card slot.
[0006] One end of card band is hingedly connected with fixed base, and the end of card band close to card slot is provided with buckle matched with card slot, and the buckle is used to fix the connection between card band and card slot.
[0007] A plurality of clamping teeth are arranged in each tooth track, and the clamping teeth are used to clamp fixing teeth, and the end surface of clamping teeth is also used for sliding of the convex groove on both sides of sliding block, so that the sliding block can also slide on the clamping teeth, so that the sliding block can slide on the tooth track.
[0008] The inside of the sliding block is hollow, and a convex groove in sliding cooperation with the tooth track is arranged at both ends of the sliding block. The convex groove is used to open an opening, and is also used for sliding the sliding block on the tooth track. An opening is arranged on one side of each convex groove close to the clamping tooth. The opening facilitates the extension and retraction of the positioning tooth. A positioning tooth is arranged in each opening. The positioning tooth is used to be clamped between two perpendicular clamping teeth, so that the sliding block can be fixed between the two tooth tracks. A protrusion is arranged on the upper and lower surfaces of each positioning tooth. The protrusion is used to limit the positioning tooth, thereby shortening the distance between the positioning tooth and the upper and lower surfaces of the sliding block, and preventing the positioning tooth from falling off or breaking.
[0009] A rotating base is arranged in the middle of the bottom of each sliding block. The rotating base is used to fix the rotating column, so that the rotating column is fixed to the bottom of the sliding block. A rotating column is arranged at the upper end of the rotating base. The rotating column is used to drive the rotation of the corner device. A connecting block is arranged on both sides of the rotating column. The connecting block is used to connect the rotating column and the steering shaft. Each connecting block is the same height as the corresponding positioning tooth on the same side.
[0010] A steering shaft is arranged on one side of each connecting block close to the positioning tooth. The steering shaft is used to adjust the angle between the positioning tooth and the rotating column, thereby preventing the included angle of the protrusion from breaking the positioning tooth. One end of the steering shaft is movably connected with the positioning tooth.
[0011] A rotating shaft is rotatably arranged on the top of each rotating column. The rotating shaft is used to drive the rotation of the rotating column. A sealing ring is arranged on the top of the rotating shaft, penetrating through the top of the sliding block. The sealing ring is used to seal the position where the rotating shaft penetrates through the sliding block. A knob is arranged on the top of the rotating shaft. The knob is used to manually rotate the rotating shaft, so that the rotating shaft drives the rotating column to rotate.
[0012] A plurality of magic tapes are arranged on the side of each clamping band facing the terminal in the power distribution cabinet body. The magic tapes are used to adhere to the marker cards. A marker card is arranged on the side of each magic tape away from the clamping band. The marker card is used to mark the cable information.
[0013] Compared with the prior art, the present application has at least one of the following beneficial technical effects:
[0014] 1. The buckle is opened to separate the clamping groove from the buckle, so that the cable to be bundled is placed in the groove of the sliding plate, and then the buckle is connected with the clamping groove to bundle the cable, which is convenient for the operator to use.
[0015] 2. When the position of the sliding block needs to be adjusted, the height of the sliding block is slid to the required height, the knob is manually rotated to drive the rotating shaft to rotate the rotating column, so that the connecting block drives the steering shaft to move, so that the positioning tooth can extend and retract through the opening. When the positioning tooth extends out of the opening, it can be clamped between two clamping teeth, so that the sliding block stays at the required position for bundling the cable.
[0016] 3. The label is used to mark cable information, so that maintenance personnel can quickly find the corresponding cable location during subsequent maintenance. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the main structure of this utility model;
[0018] Figure 2 This utility model Figure 1 A magnified view of part A;
[0019] Figure 3 This is a side sectional view of the present invention;
[0020] Figure 4 This utility model Figure 3 A magnified view of part B;
[0021] Figure 5 This is a top sectional view of the present invention;
[0022] Figure 6 This utility model Figure 5 A magnified view of part C;
[0023] Figure 7 This is a side sectional view of the present invention;
[0024] Figure 8 This utility model Figure 7 A magnified view of part D.
[0025] Explanation of reference numerals in the attached drawings: 100, Distribution cabinet body; 101, Slide rail; 102, Tooth track; 103, Clamping tooth; 200, Slider; 201, Groove; 202, Opening; 203, Positioning tooth; 204, Protrusion; 205, Rotating base; 206, Rotating column; 207, Steering shaft; 208, Connecting block; 300, Slide plate; 301, Groove; 302, Fixed base; 303, Slot; 304, Clamping belt; 305, Buckle; 400, Rotating shaft; 401, Sealing ring; 402, Knob; 403, Velcro; 404, Marking plate. Detailed Implementation
[0026] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the following will be described in conjunction with the appendices of the embodiments of this utility model. Figures 1-8 The technical solutions of the embodiments of this utility model are clearly and completely described below. Obviously, 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 are within the protection scope of this utility model.
[0027] likeFigures 1-8 As shown in the figure: the embodiment provides an auxiliary collection structure for the power distribution cabinet cable, comprising a power distribution cabinet body 100, a slide 101 is arranged on each of the two side cabinet walls in the power distribution cabinet body 100, the slide 101 is fixedly connected with the inner wall of the power distribution cabinet body 100 through bolts, a tooth track 102 is arranged on each of the two sides of the slide 101, a plurality of sliding blocks 200 are arranged in the slide 101, the surface of the sliding block 200 is in sliding fit with the slide 101, a sliding plate 300 is arranged on the side of the sliding block 200 close to the wiring terminal in the power distribution cabinet body 100, the sliding plate 300 is weldable, heat-fusible or fixedly connected with the sliding block 200 through bolts, a recess 301 is arranged in the middle of the sliding plate 300, the recess 301 is used for filling the cable, a fixed base 302 is arranged on one side of the recess 301, the fixed base 302 is fixedly connected with the sliding plate 300 through bolts, a clamping groove 303 is arranged on the other side of the recess 301, the clamping groove 303 is fixedly connected with the sliding plate 300 through bolts, a clamping belt 304 is arranged between the fixed base 302 and the clamping groove 303, and the clamping belt 304 is made of flexible insulating material.
[0028] In use, the buckle 305 is opened to separate the clamping groove 303 from the buckle 305, the cable to be collected is placed in the recess 301 of the sliding plate 300, and then the buckle 305 is aligned with the clamping groove 303 for connection. When the position of the sliding block 200 needs to be adjusted, the sliding block 200 is slid to the required height, the knob 402 is manually rotated to drive the rotating shaft 400 and the rotating column 206 to rotate, so that the connecting block 208 drives the steering shaft 207 to move, so that the positioning tooth 203 can be extended and retracted through the opening 202. When the positioning tooth 203 extends out of the opening 202, it can be clamped between the two clamping teeth 103, so that the sliding block 200 stays at the required position for cable collection.
[0029] The embodiment provides an auxiliary collection structure for the power distribution cabinet cable,
[0030] As shown in the figure: Figure 2 , 6 As shown in the figure: one end of the clamping belt 304 is hingedly connected with the fixed base 302, one end of the clamping belt 304 close to the clamping groove 303 is provided with a buckle 305 matched with the clamping groove 303, and the buckle 305 and the clamping belt 304 can be fixedly connected through bolts. The buckle 305 is used to fix the connection between the clamping belt 304 and the clamping groove 303.
[0031] The effect is that the buckle 305 is used to fix the connection between the clamping belt 304 and the clamping groove 303, so that the cable can be limited and fixed.
[0032] As shown in the figure: Figure 4 , 6As shown in Figure 8: Each toothed channel 102 is provided with several locking teeth 103. The locking teeth 103 are square. The locking teeth 103 are welded or heat-fused to the slide rail 101 through the toothed channel 102. The locking teeth 103 are used to lock the positioning teeth 203. The end face of the locking teeth 103 is also used for the sliding of the protrusions 201 on both sides of the slider 200, so that the slider 200 can also slide on the locking teeth 103, so that the slider 200 can slide on the toothed channel 102.
[0033] Its effect is that the end face of the locking tooth 103 is used for the sliding of the protrusions 201 on both sides of the slider 200, so that the slider 200 can also slide on the locking tooth 103, and thus the slider 200 can slide on the tooth path 102.
[0034] like Figure 4 , 6 As shown in Figure 8: The slider 200 has a hollow interior design. Both the left and right ends of the slider 200 are connected to a groove 201 that slides with the toothed track 102. The groove 201 is welded or heat-fused to the slider 200. The surface of the groove 201 is polished. The groove 201 is used to open the opening 202. The groove 201 is also used for the slider 200 to slide on the toothed track 102. Each groove 201 has an opening 202 on the side near the locking tooth 103. The opening 202 facilitates the extension and retraction of the positioning tooth 203. Each opening 202 has a positioning tooth 203. The vertical distance between the locking teeth 103 is the same as the height of the positioning tooth 203. Each positioning tooth 203 has a protrusion 204 on its upper and lower surfaces. The positioning tooth 203 fits into the protrusion 204.
[0035] Its effect is as follows: the positioning tooth 203 is used to lock between two vertical locking teeth 103, so that the slider 200 can be fixed between two tooth channels 102. The protrusion 204 is used to limit the positioning tooth 203, thereby shortening the distance between the positioning tooth 203 and the upper and lower surfaces of the slider 200, thereby preventing the positioning tooth 203 from falling off or breaking.
[0036] like Figure 4 , 6As shown in Figure 8: A rotating base 205 is centrally located at the bottom of each slider 200. The rotating base 205 is fixed to the bottom of the slider 200 by bolts. A rotation damper is installed inside the rotating base 205 to control the rotation angle of the rotating column 206 and to limit its movement. The rotating base 205 is used to fix the rotating column 206, and the rotating column 206 is mechanically connected to the rotating base 205, fixing the rotating column 206 to the bottom of the slider 200. A rotating column 206 is located at the upper end of the rotating base 205. The rotating column 206 is used for… To drive the corner mechanism to rotate, a connecting block 208 is provided on both the left and right sides of the rotating column 206. The rotating column 206 and the connecting block 208 can be welded or heat-fused to each other. The connecting block 208 is heat-fused or welded to the rotating column 206. The connecting block 208 is used to connect the rotating column 206 to the steering shaft 207. Each connecting block 208 is at the same height as the corresponding positioning tooth 203 on the same side. A steering shaft 207 is provided on the side of each connecting block 208 near the positioning tooth 203. One end of the steering shaft 207 is movably connected to the positioning tooth 203.
[0037] Its effect is as follows: a steering knuckle is provided on the steering shaft 207 for angle adjustment. The steering shaft 207 is used to adjust the angle between the positioning tooth 203 and the rotating column 206, thereby preventing the included angle of the protrusion 204 from breaking the positioning tooth 203.
[0038] like Figure 3 , 4 As shown in Figures 5, 6, and 8: Each rotating column 206 has a rotating shaft 400 rotatably mounted on its top. The rotating shaft 400 is welded or heat-fused to the rotating column 206. The rotating shaft 400 is used to drive the rotating column 206 to rotate. A sealing ring 401 is provided at the top of the rotating shaft 400 where it passes through the top of the slider 200. The inner ring of the sealing ring 401 is polished to allow the rotating shaft 400 to rotate. The sealing ring 401 is used to seal the part where the rotating shaft 400 passes through the slider 200. A knob 402 is provided at the top of the rotating shaft 400, and the knob 402 is bolted to the rotating shaft 400 for fixation.
[0039] Its effect is as follows: the knob 402 is used to manually rotate the shaft 400, thereby causing the shaft 400 to drive the rotating column 206 to rotate, thereby causing the shaft 400 to drive the rotating column 206 to rotate, thereby causing the connecting block 208 to drive the steering shaft 207 to move, thereby allowing the positioning tooth 203 to extend and retract through the opening 202.
[0040] like Figure 1 , 2, 5, 6 are shown: each card tape 304 is provided with a plurality of magic tape 403 on the side of the terminal of the power distribution cabinet body 100, the magic tape 403 is used for bonding the label card 404, the magic tape 403 is welded and fixed with the surface of the card tape 304, each magic tape 403 is provided with a label card 404 away from the card tape 304, the label card 404 can be bonded with the magic tape 403, the label card 404 is used for marking cable information, and the label card 404 can adopt transparent acrylic plate inside which can be filled with writing cards.
[0041] The effect is that the label card 404 is used for marking cable information, so that maintenance personnel can quickly find the corresponding cable position during subsequent maintenance.
[0042] Working principle: when the position of the sliding block 200 needs to be adjusted, the height required is slid by sliding the sliding block 200, the rotating knob 402 is manually rotated to drive the rotating shaft 400 to rotate the rotating column 206, so that the rotating shaft 400 drives the rotating column 206 to rotate, so that the connecting block 208 drives the steering shaft 207 to move, so that the positioning teeth 203 can be telescopic through the opening 202, and the positioning teeth 203 can be clamped between the two clamping teeth 103 when the opening 202 is extended, so that the sliding block 200 stays at the required position, and then the buckle 305 is opened to separate the clamping groove 303 from the buckle 305, so that the cable to be bundled is placed in the recess 301 of the sliding plate 300, and then the buckle 305 is aligned with the clamping groove 303 to bundle the cable, which is convenient for the operator to use.
[0043] In addition, it should be noted that, in the description of the present application, unless otherwise specified and limited, the terms "mounting", "connecting" and "connecting" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected, it can be mechanically connected, or it can be electrically connected, it can be directly connected, or it can be indirectly connected through an intermediate medium, and it can be the communication between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0044] The above is the preferred embodiment of the present application, and it should be pointed out that for ordinary skilled in the art, without departing from the principle of the present application, some improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present application.
Claims
1. An auxiliary grommet structure for power distribution cabinet cables comprising a power distribution cabinet body (100) characterized by: The power distribution cabinet body (100) is provided with a slide (101) on both sides of the cabinet wall, both sides of the slide (101) are provided with a tooth track (102), a plurality of sliding blocks (200) are arranged in the slide (101), one side of the sliding block (200) close to the wiring terminal in the power distribution cabinet body (100) is provided with a sliding plate (300), the middle of the sliding plate (300) is provided with a groove (301), one side of the groove (301) is provided with a fixed base (302), the other side of the groove (301) is provided with a clamping groove (303), and a clamping belt (304) is arranged between the fixed base (302) and the clamping groove (303).
2. An auxiliary cable routing structure for an electrical switchgear cabinet as claimed in claim 1, characterized in that: One end of the clamping belt (304) is hingedly connected with the fixed base (302), and one end of the clamping belt (304) close to the clamping groove (303) is provided with a clasp (305) matched with the clamping groove (303).
3. An auxiliary cable routing structure for an electrical switchgear cabinet as claimed in claim 2, characterized in that: A plurality of clamping teeth (103) are arranged in each tooth track (102).
4. An auxiliary cable routing structure for an electrical switchgear cabinet as claimed in claim 3, characterized in that: The sliding block (200) is designed to be hollow, and a convex groove (201) slidably matched with the tooth track (102) is arranged at the left and right ends of the sliding block (200), one side of each convex groove (201) close to the clamping tooth (103) is provided with an opening (202), and a positioning tooth (203) is arranged in each opening (202). The upper and lower surfaces of each positioning tooth (203) are provided with a protruding block (204).
5. An auxiliary cable routing structure for an electrical switchgear cabinet as claimed in claim 4, characterized in that: A rotating base (205) is arranged in the middle of the bottom of each sliding block (200), a rotating column (206) is arranged at the upper end of the rotating base (205), a connecting block (208) is arranged at the left and right sides of the rotating column (206), and each connecting block (208) is the same height as the corresponding positioning tooth (203) on the same side.
6. An auxiliary cable routing structure for an electrical switchgear cabinet as claimed in claim 5, characterized in that: One side of each connecting block (208) close to the positioning tooth (203) is provided with a steering shaft (207), and one end of the steering shaft (207) is movably connected with the positioning tooth (203).
7. An auxiliary cable routing structure for an electrical switchgear cabinet as claimed in claim 6, characterized in that: A rotating shaft (400) is rotatably arranged at the top of each rotating column (206), a sealing ring (401) is arranged at the top of the rotating shaft (400) penetrating through the top of the sliding block (200), and a knob (402) is arranged at the top of the rotating shaft (400).
8. An auxiliary cable routing structure for an electrical switchgear cabinet as claimed in claim 7, characterized in that: A plurality of magic tapes (403) are arranged on one side of each clamping belt (304) facing the wiring terminal in the power distribution cabinet body (100), and a mark card (404) is arranged on one side of each magic tape (403) away from the clamping belt (304).