Insulating board for high-altitude operation

By designing a multi-layer structure of high-altitude work insulating plates, the problem of insufficient stability and anti-slip properties of equipment in live-altitude operations is solved, and the safety and stability of high-altitude operations are improved.

CN113178296BActive Publication Date: 2025-07-04SHANDONG JINZHONGYUAN TECH DEV CO LTD
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Patent Information

Application Number
CN202110627457.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-06-05
Publication Date
2025-07-04
Estimated Expiration
2041-06-05

AI Technical Summary

Technical Problem

In high-altitude live operations, existing equipment is difficult to ensure the safety and stability of operators, especially in terms of the stability and anti-slip properties of high-altitude mounted equipment.

Method used

A high-altitude insulating plate is designed, adopting a multi-layer structure, including anti-slip insulating layer, rubber plate, curved plate, aluminum alloy plate and carbon fiber plate. Through the design of fixing and connecting belts, the mounting stability is increased and the surface is anti-slip.

Benefits of technology

It improves safety and stability during high altitude operations, ensures that the mounted equipment is not easy to loosen, provides firm support and anti-slip performance, and enhances the safety guarantee of operators.

✦ Generated by Eureka AI based on patent content.

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    Figure CN113178296B_ABST
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Abstract

Insulating board for high-altitude work, including an insulating board and fixing straps. It is characterized in that the fixing straps are located at both ends of the insulating board. The outer end surface of the insulating board is covered with an anti-slip insulating layer. Inside the insulating board, there is a rubber board, below which there is a bending board, below which there is an aluminum alloy board, and below which there is a carbon fiber board. The rubber board, bending board, and aluminum alloy board are symmetrically mirrored up and down with the carbon fiber board as the center. The solution of the present invention adds a high-altitude mounting device and ensures that the mounted rope body can be stable and will not become loose during mounting. And there is a bending support plate in the insulating board, which ensures the firmness of the insulating board body when a person stands at high altitude. And an anti-slip surface treatment is carried out, increasing safety.
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Description

Technical Field

[0001] The present invention relates to the technical field of auxiliary equipment for live working at high altitudes, and particularly relates to an insulating board for high-altitude work. Background Art

[0002] In daily life, in order to reduce the impact of power repairs on people's daily lives, live working is required in necessary situations. Although live working can reduce the losses that may be caused by power outages, it poses a certain threat to the personal safety of maintenance operators. In addition to strictly following the operating procedures for live working to carry out circuit maintenance operations, corresponding live working tools also need to be equipped to ensure the personal safety of live working personnel. And in some specific environments, high-altitude work is required, and when mechanical equipment cannot reach the conditions, it can only be achieved through a high-altitude bearing board. Summary of the Invention

[0003] The present invention provides an insulating board for high-altitude work to solve the technical problems presented in the above background art.

[0004] The insulating board for high-altitude work includes an insulating board and fixing belts. It is characterized in that the fixing belts are located at both ends of the insulating board. The outer surface of the insulating board is coated with an anti-slip insulating layer. Inside the insulating board, there is a rubber board, below the rubber board there is a bending board, below the bending board there is an aluminum alloy board, and below the aluminum alloy board there is a carbon fiber board. The rubber board, bending board, and aluminum alloy board are vertically mirror-symmetrical with the carbon fiber board as the center. There is a binding strap at the top of the fixing belt. A connecting belt is connected between the binding strap and the insulating board. The connecting belt is arranged in a V shape. The connecting belt is cross-bound to the insulating board. The binding strap and the connecting belt are connected by a rotating shaft. The binding strap is divided into an inserting strap and a buckling strap. The inserting strap and the buckling strap are arranged opposite to each other according to the position of the connecting belt. There is a connecting rod between the rotating shafts. Auxiliary belts are arranged between the connecting rod and the insulating board in an arranged manner. The auxiliary belts are cross-arranged. At the connection of the auxiliary belts and the insulating board, there is a tensile rubber.

[0005] Preferably, for the insulating board for high-altitude work, it is characterized in that the lower end of the binding strap is a diamond-shaped belt, and at least two support steel plates are provided in the middle of the diamond-shaped belt.

[0006] Preferably, for the insulating board for high-altitude work, it is characterized in that the diamond-shaped belt and the binding strap are connected by a steel ring.

[0007] Preferably, for the insulating board for high-altitude work, it is characterized in that the top end of the buckling strap of the binding strap is a Japanese character buckle.

[0008] Preferably, for the insulating board for high-altitude work, it is characterized in that an extension part is provided at the place where the lower end of the inserting strap of the binding strap passes through the steel ring. A pressing buckle is provided at the end of the extension part. The extension part is fixedly connected to the inserting strap.

[0009] Preferably, for the insulating board used in working at height, it is characterized in that the rubber board, the bending board and the aluminum alloy board of the insulating board are filled with silica gel.

[0010] Preferably, for the insulating board used in working at height, it is characterized in that the aluminum alloy board and the carbon fiber board are in an adhesion state, and a bending board is arranged inside the carbon fiber board, and the bending board is also made of carbon fiber material.

[0011] Preferably, for the insulating board used in working at height, it is characterized in that the bending board in the insulating board is a bending board made of fiberglass material.

[0012] Preferably, for the insulating board used in working at height, it is characterized in that the anti-slip insulating layer wrapped around the periphery of the insulating board is provided with anti-slip corrugations. Beneficial effects: The solution of the present invention adds a high-altitude hanging device, and ensures that the hanging rope body can be stable and will not loosen when hanging, and a bending support plate is arranged in the insulating board, which ensures the firmness of the insulating board body when a person stands at height, and a non-slip surface treatment is carried out, increasing the safety. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is a structural diagram of the insulating board of the present invention;

[0014] Figure 2 It is a front view of the present invention;

[0015] Figure 3 It is a rear view of the present invention;

[0016] Figure 4 It is a side view of the present invention;

[0017] Figure 5 It is a top view of the insulating board of the present invention;

[0018] Figure 6 It is a side view of the buckle of the present invention

[0019] In the figure: anti-slip insulating layer 1, rubber board 2, bending board 3, aluminum alloy board 4, carbon fiber board 5, binding band 6, connecting band 7, rotating shaft 8, inserting band 9, buckling band 10, connecting rod 11, auxiliary band 12, tensile rubber 13, support steel plate 14, steel ring 15, buckle 16. DETAILED DESCRIPTION OF THE INVENTION

[0020] The implementation process of the present invention will be described in detail below with reference to the drawings. The described embodiments are part of the embodiments of the present invention, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0021] In the description of the present invention, it should also be noted that unless otherwise clearly specified and defined, the terms "set", "installed", "connected", and "coupled" should be understood in a broad sense. For example, it can be a fixed connection, a bolt connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0022] As Figures 1-6 shown in the insulating board for high-altitude work, including an insulating board and a fixing belt, characterized in that the fixing belt is located at both ends of the insulating board, the outer end surface of the insulating board is coated with an anti-slip insulating layer 1, a rubber board 2 is provided inside the insulating board, a bending board 3 is provided below the rubber board 2, an aluminum alloy board 4 is provided below the bending board 3, a carbon fiber board 5 is provided below the aluminum alloy board 4, the rubber board 2, the bending board 3 and the aluminum alloy board 4 are symmetrically arranged up and down with the carbon fiber board 5 as the center. There is a binding belt 6 at the top of the fixing belt, a connecting belt 7 is connected between the binding belt 6 and the insulating board, the connecting belt 7 is arranged in a V shape, the connecting belt 7 is cross-bound to the insulating board, and the binding belt 6 and the connecting belt 7 are connected by a rotating shaft 8. The binding belt 6 is divided into an inserting belt 9 and a buckling belt 10, the inserting belt 9 and the buckling belt 10 are arranged opposite to each other according to the position of the connecting belt 7, a connecting rod 11 is arranged between the rotating shafts 8, and auxiliary belts 12 are arranged between the connecting rod 11 and the insulating board in an array, the auxiliary belts 12 are cross-arranged, and a tensile rubber 13 is provided at the connection between the auxiliary belts 12 and the insulating board.

[0023] Further, the lower end of the binding belt 6 is a diamond-shaped belt, and at least two support steel plates 14 are provided in the middle of the diamond-shaped belt.

[0024] Further, the diamond-shaped belt and the binding belt 6 are connected by a steel ring 15.

[0025] Further, the top end of the buckling belt 10 of the binding belt 6 is a Japanese character buckle.

[0026] Further, an extension part is provided at the place where the lower end of the inserting belt 9 of the binding belt 6 passes through the steel ring 15, a pressing buckle 16 is provided at the end of the extension part, and the extension part is fixedly connected to the inserting belt 9.

[0027] Further, the rubber board 2, the bending board 3 and the aluminum alloy board 4 in the insulating board are filled with silica gel.

[0028] Further, the aluminum alloy board 4 and the carbon fiber board 5 are in a bonded state, and a bending board 3 is provided inside the carbon fiber board 5, and the bending board 3 is also made of carbon fiber.

[0029] Further, the bending board 3 in the insulating board is a bending board 3 made of fiberglass.

[0030] Further, the anti-slip insulating layer 1 wrapped around the periphery of the insulating board is provided with anti-slip corrugations.

[0031] An insulating board for high-altitude work, comprising an insulating board and a fixing belt. The fixing belt is located at both ends of the insulating board. The outer end surface of the insulating board is wrapped with an anti-slip insulating layer 1. A rubber board 2 is provided inside the insulating board. A bending board 3 is provided below the rubber board 2. An aluminum alloy board 4 is provided below the bending board 3. A carbon fiber board 5 is provided below the aluminum alloy board 4. The rubber board 2, the bending board 3 and the aluminum alloy board 4 are symmetrically arranged up and down with the carbon fiber board 5 as the center. There is a binding belt 6 at the top of the fixing belt. A connecting belt 7 is connected between the binding belt 6 and the insulating board. The connecting belt 7 is arranged in a V shape. The connecting belt 7 is cross-bound to the insulating board. The binding belt 6 and the connecting belt 7 are connected by a rotating shaft 8. The binding belt 6 is divided into an inserting belt 9 and a buckling belt 10. The inserting belt 9 and the buckling belt 10 are arranged opposite to each other according to the position of the connecting belt 7. A connecting rod 11 is provided between the rotating shafts 8. Auxiliary belts 12 are arranged between the connecting rod 11 and the insulating board. The auxiliary belts 12 are cross-arranged. A tension rubber 13 is provided at the connection between the auxiliary belts 12 and the insulating board. The lower end of the binding belt 6 is a diamond-shaped belt. At least two support steel plates 14 are provided in the middle of the diamond-shaped belt. The diamond-shaped belt and the binding belt 6 are connected by a steel ring 15. The top end of the buckling belt 10 of the binding belt 6 is a day-shaped buckle. An extension part is provided at the lower end of the inserting belt 9 of the binding belt 6 passing through the steel ring 15. A pressing buckle 16 is provided at the end of the extension part. The extension part is fixedly connected to the inserting belt 9. The rubber board 2, the bending board 3 and the aluminum alloy board 4 in the insulating board are filled with silica gel. The aluminum alloy board 4 and the carbon fiber board 5 are in a sticky state. And a bending board 3 is provided inside the carbon fiber board 5. The bending board 3 is also made of carbon fiber. The bending board 3 in the insulating board is a bending board made of fiberglass. The anti-slip insulating layer 1 wrapped around the periphery of the insulating board is provided with anti-slip corrugations. The safety and stability are ensured by passing the inserting belt 9 of the binding belt 6 through the day-shaped buckle of the buckling belt 10 and then pressing and fixing through the pressing buckle 16.

[0032] The above-described embodiments of the present invention do not constitute a limitation to the protection scope of the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the claims of the present invention.

Claims

1. Insulating board for high-altitude work, comprising an insulating board and a fixing strap, characterized in that The fixing belts are located at both ends of the insulating plate. The outer end of the insulating plate is covered with an anti-slip insulating layer (1). A rubber plate (2) is provided inside the insulating plate. A curved plate (3) is provided below the rubber plate (2). An aluminum alloy plate (4) is provided below the curved plate (3). A carbon fiber plate (5) is provided below the aluminum alloy plate (4). The rubber plate (2), the curved plate (3) and the aluminum alloy plate (4) are mirror-symmetrical with the carbon fiber plate (5) as the center. A binding belt (6) is provided at the top of the fixing belt. A connecting belt (7) is connected between the binding belt (6) and the insulating plate. The connecting belt (7) is arranged in a herringbone shape. The connecting belt (7) is cross-bound to the insulating plate. The binding belt (6) and the connecting belt (7) are connected via a rotating shaft (8). The binding belt (6) is divided into an inserting belt (9) and a buckle belt (10). The inserting belt (9) and the buckle belt (10) are arranged relative to each other according to the position of the connecting belt (7); a connecting rod (11) is arranged between the rotating shaft (8); an auxiliary belt (12) is arranged between the connecting rod (11) and the insulating plate; the auxiliary belts (12) are arranged crosswise; a tensile rubber (13) is provided at the connection between the auxiliary belt (12) and the insulating plate; the lower end of the binding belt (6) is a diamond-shaped belt; at least two supporting steel plates (14) are provided in the middle of the diamond-shaped belt; the top of the buckle belt (10) of the binding belt (6) is a Japanese buckle; an extension portion is provided at the lower end of the inserting belt (9) of the binding belt (6) passing through the steel ring (15); a pressing buckle (16) is provided at the end of the extension portion; the extension portion is fixedly connected to the inserting belt (9); and silicone is filled between the rubber plate (2), the bending plate (3) and the aluminum alloy plate (4) of the insulating plate.

2. The insulating board for high-altitude work according to claim 1, wherein The diamond-shaped belt and the binding belt (6) are connected via a steel ring (15).

3. The insulating board for high-altitude work according to claim 1, wherein The aluminum alloy plate (4) and the carbon fiber plate (5) are in an adhered state, and a bending plate (3) is provided inside the carbon fiber plate (5), and the bending plate (3) is also made of carbon fiber material.

4. The insulating board for high-altitude work according to claim 1, wherein The curved plate (3) in the insulating plate is a curved plate (3) made of glass fiber reinforced plastic.

5. The insulating board for high-altitude operation according to claim 1, characterized in that The anti-slip insulating layer (1) covering the outer periphery of the insulating plate is provided with anti-slip corrugations.

Citation Information

Patent Citations

  • Insulating plate for high-altitude operation

    CN216133713U