Built-in winding insulating plate

By designing a winding and clamping assembly with a built-in wire-wrapping insulation board, the problem of the insulation board being unable to wind and arrange cables was solved, achieving tight winding and fixation of cables and improving the convenience of inspection and maintenance.

CN223743369UActive Publication Date: 2025-12-30SHENZHEN YIJIA ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202520019287.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-06
Publication Date
2025-12-30
Estimated Expiration
2035-01-06

AI Technical Summary

Technical Problem

Common insulating boards cannot effectively wrap and arrange the cables inside the equipment, making inspection and maintenance difficult.

Method used

A built-in winding insulation plate was designed, comprising a winding assembly and a clamping assembly. The winding and clamping of the cable are achieved through an adjusting bolt and screw hole structure, and the friction is reduced by using balls and bearings to ensure that the cable is tightly wound.

Benefits of technology

It enables tight winding and fixing of cables of different thicknesses, preventing loosening and improving the management efficiency of cables inside the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a built-in wire winding insulating plate, which relates to the insulating plate field, and comprises a plate body, the top of the plate body is uniformly provided with three groups of wire winding mechanisms, each wire winding mechanism comprises a wire winding assembly and two wire clamping assemblies, the two wire clamping assemblies are respectively arranged at two ends of the wire winding assembly, the wire winding assembly comprises a first fixing block, a baffle plate and a first adjusting bolt, a notch is formed in the middle of the bottom of the first fixing block, a through opening arranged on the first fixing block in a sleeving mode is formed in the center of the baffle, a transverse plate located in the notch is fixedly installed between the inner walls of the through opening, a through hole communicated with the notch is formed in the first fixing block, and a first screw hole is formed in the transverse plate. According to the cable winding device, cables with different thicknesses can be wound and wound by adjusting the positions of the baffles in the cable winding assembly, and after winding is completed, the cables can be clamped through the cable clamping assembly, so that the situation that the wound cables are loosened on the cable winding assembly is avoided.
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Description

Technical Field

[0001] This utility model relates to the field of insulating boards, specifically to an insulating board with built-in wire winding. Background Technology

[0002] Insulating boards are an important electrical material with excellent insulation and physical and mechanical properties. They are widely used in substations, power plants, power distribution rooms, laboratories, and live-line work in the field. Insulating boards are installed inside equipment. However, the numerous and randomly distributed cables inside the equipment make it very troublesome to inspect and maintain them later. Insulating boards cannot wrap and arrange the internal cables. Therefore, this application proposes an internally wound insulating board. Utility Model Content

[0003] In view of the problems existing in the above-mentioned built-in wound insulation board, this utility model is proposed.

[0004] Therefore, the purpose of this utility model is to provide a built-in wire-wound insulation board, which solves the problem that common insulation boards cannot be used to wind and arrange cables inside the equipment.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a built-in winding insulation board, comprising a board body, with three sets of winding mechanisms evenly arranged on the top of the board body. The winding mechanism includes a winding assembly and two clamping assemblies, with the two clamping assemblies located at both ends of the winding assembly. The winding assembly includes a first fixing block, a baffle, and a first adjusting bolt. A slot is provided at the middle position of the bottom of the first fixing block, and a through-hole is provided at the center of the baffle, which is fitted onto the first fixing block. A horizontal plate is fixedly installed between the inner walls of the through-hole and located within the slot. A through hole communicating with the slot is provided on the first fixing block, and a first screw hole is provided on the horizontal plate. A first adjusting bolt with a thread passing through the first screw hole is inserted into the through-hole. The bottom end of the first adjusting bolt is rotatably connected to the top of the board body, and a cover is provided on the top of the board body.

[0006] Preferably, the wire clamping assembly includes a second fixing block, a pressing plate, and a second adjusting bolt. The side of the second fixing block has a through wire hole, and the top of the inner wall of the wire hole has an inner groove. The pressing plate is located in the inner groove, and a clamping groove is formed at the bottom of the pressing plate. The top of the second fixing block has a second screw hole that communicates with the inner groove. The second adjusting bolt is threaded into the second screw hole, and the bottom end of the second adjusting bolt is rotatably connected to the top of the pressing plate.

[0007] Preferably, semi-circular grooves are provided at both ends of both sides of the horizontal plate, and a ball bearing is provided in each semi-circular groove. Two sliding grooves are provided on both sides of the inner wall of the groove, and the ball bearings on both sides of the horizontal plate are respectively located in the corresponding sliding grooves on both sides of the inner wall of the groove.

[0008] Preferably, the top of the plate has three first grooves, and a first bearing is fixedly installed in each of the three first grooves. The bottom end of the first adjusting bolt in the three winding assemblies is fixedly connected to the inner ring wall of the three first bearings respectively.

[0009] Preferably, a second groove is provided on the top of each extrusion plate, and a second bearing is fixedly installed in the second groove. The bottom end of the second adjusting bolt is fixedly connected to the inner ring wall of the second bearing on the top of the extrusion plate.

[0010] Preferably, three notches are provided on both sides of the cover. When the cover is located on top of the plate, the notches on both sides of the cover cover cover the corresponding clamping components respectively. A connecting groove is provided at the middle position of the top of both ends of the plate. A connecting plate is fixedly installed at the middle position of the bottom of both ends of the cover. Bolts are provided on the sides of the two connecting plates. The two bolts pass through the connecting plates and are threaded into the inner wall of the corresponding connecting groove.

[0011] The technical effects and advantages provided by this utility model in the above technical solution are as follows:

[0012] By adjusting the position of the baffle in the winding assembly, cables of different thicknesses can be wound and wound. After winding, the cable clamping assembly can hold the cable in place, thus preventing the wound cable from becoming loose. Attached Figure Description

[0013] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this utility model. For those skilled in the art, other drawings can be obtained based on these drawings.

[0014] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0015] Figure 2 This is a schematic diagram of the winding mechanism of this utility model;

[0016] Figure 3 This is a cross-sectional structural diagram of the winding mechanism of this utility model;

[0017] Figure 4 This is a schematic diagram of the winding assembly of this utility model.

[0018] Explanation of reference numerals in the attached figures:

[0019] 1. Plate; 2. Connecting groove; 3. Cover; 4. Connecting plate; 5. Bolt; 61. First fixing block; 62. Baffle; 63. First adjusting bolt; 64. Groove; 65. Horizontal plate; 66. Through hole; 67. First screw hole; 7. Wire clamping assembly; 71. Second fixing block; 72. Wire hole; 73. Inner groove; 74. Extrusion plate; 75. Second adjusting bolt; 8. Through opening; 9. Slide groove; 10. Ball bearing. Detailed Implementation

[0020] To enable those skilled in the art to better understand the technical solution of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings.

[0021] This utility model provides, for example Figure 1-4 The diagram shows a built-in wound insulation board, comprising a board body 1. Three sets of winding mechanisms are evenly arranged on the top of the board body 1. Each winding mechanism includes a winding assembly and two clamping assemblies 7, located at opposite ends of the winding assembly. Each winding assembly includes a first fixing block 61, a baffle 62, and a first adjusting bolt 63. A slot 64 is formed at the center of the bottom of the first fixing block 61. A through-hole 8, fitted onto the first fixing block 61, is formed at the center of the baffle 62. A horizontal plate 65, located within the slot 64, is fixedly installed between the inner walls of the through-hole 8. A through hole 66, communicating with the slot 64, is formed on the first fixing block 61. A horizontal plate 65 is fixedly installed within the slot 64 on the horizontal plate 65. The plate 65 has a first screw hole 67, and a first adjusting bolt 63 with a thread passing through the first screw hole 67 is inserted into the through hole 66. The bottom end of the first adjusting bolt 63 is rotatably connected to the top of the plate 1. The top of the plate 1 is provided with a cover 3, which can protect the top of the plate 1. When the first adjusting bolt 63 is turned so that it rotates with the first screw hole 67 on the horizontal plate 65, the horizontal plate 65 is moved in the groove 64 at the bottom of the first fixing block 61. In this way, the horizontal plate 65 can drive the baffle 62 to move, thereby adjusting the distance between the baffle 62 and the plate 1. This allows cables of different thicknesses to be wound and coiled.

[0022] In order to wind and coil the cable, such as Figure 3 and Figure 4 As shown, the cable clamping assembly 7 includes a second fixing block 71, a pressing plate 74, and a second adjusting bolt 75. The side of the second fixing block 71 has a through-hole 72, and the top of the inner wall of the hole 72 has an inner groove 73. The pressing plate 74 is located in the inner groove 73, and a clamping groove is formed at the bottom of the pressing plate 74. The top of the second fixing block 71 has a second screw hole that communicates with the inner groove 73. The second adjusting bolt 75 is threaded into the second screw hole. The bottom end of the second adjusting bolt 75 is rotatably connected to the top of the pressing plate 74. By turning the second adjusting bolt 75, the pressing plate 74 is pushed down, so that the pressing plate 74 can move into the hole 72 to clamp the cable.

[0023] To allow the first adjusting bolt 63 to more smoothly drive the horizontal plate 65 to move up and down within the slot 64 during rotation, such as... Figure 3 and Figure 4 As shown, semi-circular grooves are provided at both ends of the horizontal plate 65, and a ball bearing 10 is provided in each semi-circular groove. Two sliding grooves 9 are provided on both sides of the inner wall of the groove opening 64. The ball bearings 10 on both sides of the horizontal plate 65 are respectively located in the corresponding sliding grooves 9 on both sides of the inner wall of the groove opening 64. The ball bearings 10 can reduce the contact area between the two sides of the horizontal plate 65 and the inner wall of the groove opening 64, thereby reducing the friction between them and making the horizontal plate 65 easier to move.

[0024] To facilitate the adjustment of the position of baffle 62, such as Figure 3 and Figure 4 As shown, the top of the plate 1 has three first grooves, and a first bearing is fixedly installed in each of the three first grooves. The bottom end of the first adjusting bolt 63 in the three winding assemblies is fixedly connected to the inner ring wall of the three first bearings respectively. Under the action of the first bearings, the first adjusting bolt 63 will be more stable when rotating.

[0025] In order to clamp the cable passing through the wire hole 72, such as Figure 2 and Figure 3 As shown, the top of the extrusion plate 74 is provided with a second groove, and a second bearing is fixedly installed in the second groove. The bottom end of the second adjusting bolt 75 is fixedly connected to the inner ring wall of the second bearing on the top of the extrusion plate 74. By turning the second adjusting bolt 75, the extrusion plate 74 is pushed to move out of the inner groove 73, so that the extrusion plate 74 moves into the wire hole 72 and clamps and fixes the cable passing through the wire hole 72, so that the wound cable will not become loose.

[0026] Finally, in order to wind up the tangled thread, such as Figure 1 As shown, three notches are provided on both sides of the cover 3. When the cover 3 is located on top of the plate 1, the notches on both sides of the cover 3 cover the corresponding clamping components 7 respectively. A connecting groove 2 is provided at the middle position of the top of both ends of the plate 1. A connecting plate 4 is fixedly installed at the middle position of the bottom of both ends of the cover 3. Bolts 5 are provided on the sides of the two connecting plates 4. The two bolts 5 penetrate the connecting plate 4 and are threaded into the inner wall of the corresponding connecting groove 2.

[0027] The above description only illustrates certain exemplary embodiments of the present invention. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. A built-in wire-wound insulation panel comprising a panel body (1), characterized in that: The top of the plate body (1) is uniformly provided with three groups of winding mechanisms, the winding mechanism comprises a winding assembly and two wire clamping assemblies (7), the two wire clamping assemblies (7) are respectively located at both ends of the winding assembly, the winding assembly comprises a first fixed block (61), a baffle (62) and a first adjusting bolt (63), a notch (64) is formed at the middle position of the bottom of the first fixed block (61), a through hole (8) is formed at the center of the baffle (62) and is sleeved on the first fixed block (61), a horizontal plate (65) is fixedly installed in the notch (64) between the inner walls of the through hole (8), a through hole (66) is formed in the first fixed block (61) and is communicated with the notch (64), a first screw hole (67) is formed in the horizontal plate (65), the first adjusting bolt (63) is inserted into the through hole (66) and penetrates the first screw hole (67), the bottom end of the first adjusting bolt (63) is rotatably connected to the top of the plate body (1), and the top of the plate body (1) is provided with a cover body (3).

2. An internally wire wrapped insulation plate according to claim 1, characterized in that: The wire clamping assembly (7) comprises a second fixed block (71), an extrusion plate (74) and a second adjusting bolt (75), a through wire hole (72) is formed in the side surface of the second fixed block (71), an inner groove (73) is formed at the top of the inner wall of the wire hole (72), the extrusion plate (74) is located in the inner groove (73), a clamping groove is formed at the bottom of the extrusion plate (74), a second screw hole is formed in the top of the second fixed block (71) and is communicated with the inner groove (73), the second adjusting bolt (75) is screwedly inserted into the second screw hole, and the bottom end of the second adjusting bolt (75) is rotatably connected to the top of the extrusion plate (74).

3. An internal wire wrapping insulation panel according to claim 1, wherein: Half-circular grooves are formed at both ends of the two sides of the horizontal plate (65), and a ball (10) is arranged in each half-circular groove, two sliding grooves (9) are formed in the inner walls of the two sides of the notch (64), and the balls (10) on the two sides of the horizontal plate (65) are located in the corresponding sliding grooves (9) on the two sides of the inner wall of the notch (64).

4. An internal wire wrapping insulation panel according to claim 1, wherein: Three first recesses are formed in the top of the plate body (1), and a first bearing is fixedly installed in each of the three first recesses, and the bottom ends of the first adjusting bolts (63) of the three groups of winding assemblies are fixedly connected with the inner ring walls of the three first bearings.

5. An internally wire wrapped insulation plate as defined in claim 2, wherein: Second recesses are formed in the top of the extrusion plate (74), and a second bearing is fixedly installed in each of the second recesses, and the bottom end of the second adjusting bolt (75) is fixedly connected with the inner ring wall of the second bearing on the top of the extrusion plate (74).

6. An internally wire wrapped dielectric board as defined in claim 1 wherein: Three recesses are formed in the two sides of the cover body (3), when the cover body (3) is located on the top of the plate body (1), the recesses on the two sides of the cover body (3) cover the corresponding wire clamping assemblies (7), an adapter groove (2) is formed at the middle position of the top of the plate body (1), an adapter plate (4) is fixedly installed at the middle position of the bottom of the cover body (3), a bolt (5) is arranged on the side surface of each of the two adapter plates (4), and the two bolts (5) penetrate the adapter plate (4) and are screwedly inserted into the inner walls of the corresponding adapter grooves (2).