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Wear-resisting and mouse-biting-resisting cable material for automobile cable

A technology for automobile cables and cable materials, applied in the direction of rubber insulators, organic insulators, etc., can solve the problems of automobile circuit short circuit, cable short circuit, broken skin, cracks, etc., and achieve the effect of improving flame retardant performance and preventing fire.

Inactive Publication Date: 2018-09-04
HEFEI PULFI WIRE TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Because the car is often in motion, it has high requirements for the wear resistance of the cable. Otherwise, during long-term use, the friction between the cable and the body parts of the car may cause cracks and cracks, which may There is a risk of short circuits in automotive circuits, but conventional abrasion-resistant cables are relatively inflexible
In addition, during outdoor parking in winter, because the temperature of the car is higher than that of the outside world, mice will enter the car to keep warm. When these mice move around in the front of the car or in the compartment, they may bite the cables in the car body and cause a short circuit in the cables. and equipment damage
At present, there is no cable material for automotive cables with good wear resistance and rat bite resistance.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0021] A wear-resistant and anti-rat-biting cable material for automobile cables. According to the mass parts, the raw materials of the cable material include: 20 parts of chlorinated styrene, 8 parts of ethylene-octene copolymer, 12 parts of nitrile rubber, ternary 20 parts of ethylene propylene rubber, 15 parts of polyurethane elastomer, 15 parts of toxic modified kaolin, 3 parts of talcum powder, 2 parts of reinforcing agent, 10 parts of flame retardant, 2 parts of synergistic flame retardant, 1 cross-linking modifier 0.4 parts of benzoic acid denatured tonin, 3 parts of ethanol, 4 parts of silane coupling agent, and 1 part of antioxidant.

[0022] In this example, the preparation method of toxic modified kaolin is: dissolving tetramethylene disulfone tetramine and dicoumarin in acetone to obtain a mixed solution, and then calcining kaolin in a high-temperature kiln at a temperature of 450°C After cooling for 2 hours, immerse in 10% hydrochloric acid solution for 1 hour, th...

Embodiment 2

[0026] A wear-resistant and anti-rat-biting cable material for automobile cables. According to the parts by mass, the raw materials of the cable material include: 30 parts of chlorinated styrene, 12 parts of ethylene-octene copolymer, 16 parts of nitrile rubber, ternary 25 parts of ethylene propylene rubber, 20 parts of polyurethane elastomer, 17 parts of toxic modified kaolin, 5 parts of talcum powder, 5 parts of reinforcing agent, 15 parts of flame retardant, 4 parts of synergistic flame retardant, 3 parts of crosslinking modifier 0.9 parts of benzoic acid denatured tonin, 5 parts of ethanol, 7 parts of silane coupling agent, and 2 parts of antioxidant.

[0027] In this example, the preparation method of toxic modified kaolin is: dissolving tetramethylene disulfone tetramine and dicoumarin in acetone to obtain a mixed solution, and then calcining kaolin in a high-temperature kiln at a temperature of 550°C After cooling for 3 hours, immerse in 15% hydrochloric acid solution f...

Embodiment 3

[0031] A wear-resistant and anti-mouse-biting cable material for automobile cables. According to the parts by mass, the raw materials of the cable material include: 25 parts of chlorinated styrene, 10 parts of ethylene-octene copolymer, 14 parts of nitrile rubber, ternary 23 parts of ethylene propylene rubber, 18 parts of polyurethane elastomer, 16 parts of toxic modified kaolin, 4 parts of talcum powder, 3 parts of reinforcing agent, 13 parts of flame retardant, 3 parts of synergistic flame retardant, 2 parts of crosslinking modifier 0.7 parts of benzoic acid denatured toning, 4 parts of ethanol, 6 parts of silane coupling agent, and 1.5 parts of antioxidant.

[0032]In this example, the preparation method of toxic modified kaolin is as follows: dissolving tetramethylene disulfone tetramine and dicoumarin in acetone to obtain a mixed solution, and then calcining kaolin at a temperature of 500°C in a high-temperature kiln After cooling for 2.5 hours, immerse in 13% hydrochlori...

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PUM

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Abstract

The invention relates to the technical field of cable wires and in particular relates to a wear-resisting and mouse-biting-resisting cable material for an automobile cable. The cable material is prepared from the following raw materials: chlorinated styrene, an ethylene-octene copolymer, nitrile butadiene rubber, an ethylene-propylene-diene monomer, a polyurethane elastomer, toxic modified kaolin,talcum powder, a reinforcing agent, a flame retardant, a synergistic flame retardant, a crosslinking modifying agent, denatonium benzoate, ethanol, a silane coupling agent and an antioxidant, whereina mouse poisoning component is doped into the toxic modified kaolin; the flame retardant is aluminum hydroxide or magnesium hydroxide; the synergistic flame retardant is a mixture of decabromodiphenyl ethane and antimony trioxide; the reinforcing agent is white carbon black; the crosslinking modifying agent is prepared from dicumyl peroxide and triallylpolyisocyanurate according to the equal massratio. The cable material has excellent wear-resisting performance and mouse-biting-resisting performance and strong flexibility and is very suitable for being used as the cable material of the automobile cable.

Description

technical field [0001] The invention relates to the technical field of cables and wires, in particular to a wear-resistant and rat-resistant cable material for automotive cables. Background technique [0002] With the continuous advancement of science and technology, more and more safety electronic devices and digital electronic devices have begun to be applied to cars. These devices have improved car safety performance and entertainment performance, making cars more functional and entertaining. the user's driving experience. The assembly and use of various electronic devices is inseparable from the design of automotive circuits, which include various cables hidden in the car body. [0003] Because the car is often in motion, it has high requirements for the wear resistance of the cable. Otherwise, during long-term use, the friction between the cable and the body parts of the car may cause cracks and cracks, which may There is a risk of short circuits in the car's circuits...

Claims

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Application Information

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IPC IPC(8): C08L23/16C08L25/18C08L23/08C08L9/02C08L75/04C08K13/06C08K9/04C08K3/34C08K3/22C08K5/03C08K3/36H01B3/28
CPCC08L23/16C08K2003/2224C08K2003/2227C08L25/18C08L2203/202C08L2205/035C08L2312/00H01B3/28C08L23/0815C08L9/02C08L75/04C08K13/06C08K9/04C08K3/346C08K3/34C08K3/22C08K3/2279C08K5/03C08K3/36
Inventor 刘勇
Owner HEFEI PULFI WIRE TECH CO LTD
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