Safe power supply sliding-contact bus

A sliding contact busbar, safe technology, applied in the busbar field, can solve the problems of inconvenient installation, construction and connection of multi-channel cables, failure to meet requirements, waste of production costs, etc., and achieve excellent shrinkage, beautiful appearance, and improved durability.

Inactive Publication Date: 2018-12-21
荣马电器有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] With the emergence of modern engineering facilities and equipment, the electricity consumption of all walks of life is increasing rapidly, especially the emergence of many high-rise buildings and large workshops. The traditional cables used as power transmission wires can no longer meet the requirements in large current transmission systems. The parallel use of multiple cables brings a lot of inconvenience to the site installation and construction connection
As a new type of distribution wire, the bus duct emerged as the times require, and the bus bar has become an indispensable part of the bus duct. There are still many hidden safety hazards in the sliding contact bus bar in the prior art, which brings great harm to the staff and users. It is very inconvenient, and the construction is difficult, the project is relatively large, and the production cost is wasted. In order to improve this situation, the present invention proposes a safe power supply sliding contact busbar

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0041] This embodiment provides a safety power supply sliding contact busbar. The outer surface of the sliding contact busbar body is covered with a layer of safety power supply protection layer. The safety power supply protection layer includes a flame retardant layer and an electric shock prevention layer. Ratio of flame retardant layer: anti-shock layer = 2:3 compounded, the flame-retardant layer and the anti-shock layer include the following components in terms of mass parts:

[0042] The flame retardant layer includes the following components in parts by mass: chloroprene rubber: 9 parts, tetraethyl orthosilicate: 10 parts, amino resin: 23 parts, neopentyl glycol: 10 parts, sodium pyrophosphate: 13 parts , diatom mud: 16 parts, montmorillonite powder: 18 parts, hydroxyethyl cellulose: 11 parts, flame retardant: 20 parts, film-forming aid: 8 parts, defoamer: 12 parts;

[0043] The anti-shock layer includes the following components in parts by mass: polyaryl ether sulfone k...

Embodiment 2

[0051] This embodiment provides a safety power supply sliding contact busbar. The outer surface of the sliding contact busbar body is covered with a layer of safety power supply protection layer. The safety power supply protection layer includes a flame retardant layer and an electric shock prevention layer. Ratio of flame retardant layer: anti-shock layer = 2:3 compounded, the flame-retardant layer and the anti-shock layer include the following components in terms of mass parts:

[0052] The flame retardant layer includes the following components in parts by mass: chloroprene rubber: 16 parts, tetraethyl orthosilicate: 18 parts, amino resin: 26 parts, neopentyl glycol: 18 parts, sodium pyrophosphate: 19 parts , diatom mud: 19 parts, montmorillonite powder: 23 parts, hydroxyethyl cellulose: 18 parts, flame retardant: 28 parts, film-forming aid: 10 parts, defoamer: 19 parts;

[0053] The anti-shock layer includes the following components in parts by mass: polyaryl ether sulfone...

Embodiment 3

[0061] This embodiment provides a safe power supply sliding contact busbar. The outer surface of the sliding contact busbar body is covered with a layer of safety power supply protection layer. The safety power supply protection layer includes a flame retardant layer and an electric shock prevention layer. The mass ratio flame retardant layer: anti-shock layer = 2:3 is compounded, and the flame-retardant layer and the anti-shock layer include the following components in terms of mass parts:

[0062] The flame retardant layer includes the following components in parts by mass: chloroprene rubber: 13 parts, tetraethyl orthosilicate: 15 parts, amino resin: 24 parts, neopentyl glycol: 15 parts, sodium pyrophosphate: 16 parts , diatom mud: 18 parts, montmorillonite powder: 20 parts, hydroxyethyl cellulose: 15 parts, flame retardant: 25 parts, film-forming aid: 9 parts, defoamer: 17 parts;

[0063] The anti-shock layer includes the following components in parts by mass: polyaryl eth...

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Abstract

The invention discloses a safe power supply sliding-contact bus. A flame retardant layer comprises the following components, by mass: 9 to 16 parts of neoprene, 10 to 18 parts of tetraethyl orthosilicate, 23 to 26 parts of amino resin, 10 to 18 parts of neopentyl glycol, 13 to 19 parts of sodium pyrophosphate, 16 to 19 parts of diatom ooze, 18 to 23 parts of montmorillonite powder, 11 to 18 partsof hydroxyethyl cellulose, 20 to 28 parts of flame retardants, 8 to 10 parts of film-forming auxiliary agents, and 12 to 19 parts of defoaming agents. An anti-electric shock layer includes the following components, by mass: 22 to 27 parts of phthalazinone ether sulfone ketone modified resin, 13 to 19 parts of micro silicon carbide powder, 10 to 15 parts of graphite fluoride, 20 to 29 parts of black silicon carbide, 8 to 11 parts of benzoyl peroxide, 11 to 19 parts of mixed rare earth chloride, 20 to 28 parts of sodium lignin sulfonate, 10 to 17 parts of sulfonated succinic acid, 22 to 29 partsof phosphatidylcholine bilayer, 12 to 19 parts of coupling agents, and 26 to 29 parts of flatting agents.

Description

technical field [0001] The invention relates to the technical field of busbars, in particular to a safe power supply sliding contact busbar. Background technique [0002] With the emergence of modern engineering facilities and equipment, the power consumption of all walks of life is increasing rapidly, especially the emergence of many high-rise buildings and large workshops. The traditional cables used as power transmission wires can no longer meet the requirements in large current transmission systems. The parallel use of multiple cables brings a lot of inconvenience to the site installation and construction connection. As a new type of distribution wire, the bus duct emerged as the times require, and the bus bar has become an indispensable part of the bus duct. There are still many hidden safety hazards in the sliding contact bus bar in the prior art, which brings great harm to the staff and users. It is very inconvenient, and the construction is difficult, the project is...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02G5/00C08L61/20C08L11/00C08L1/28C08K13/04C08K7/26C08K3/34C08K5/053C08K5/5415C08K5/521C08L81/06C08L97/00C08K13/06C08K5/14C08K3/04
Inventor 常加军李银生许伟王星王伟常鑫倪文龙陈明张万荣陆燕赵开封
Owner 荣马电器有限公司
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