Anti-aging cable sheath material and preparation method thereof

A cable sheath and anti-aging technology, applied in the direction of circuits, electrical components, plastic/resin/wax insulators, etc., can solve the problem of cable sheath insulation, tensile strength and mechanical properties deterioration, affecting cable performance, and chemical stability Poor resistance and other problems, to achieve the effect of improving anti-aging performance, improving mechanical properties, and excellent aging resistance

Inactive Publication Date: 2017-10-10
HEFEI DAHU ELECTRIC WIRE & CABLE TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Traditional sheath materials often have problems such as poor flame retardancy, poor chemical stability, high temperature deformation, poor mechanical properties, and short service life, especially in areas with high temperature, rainy, ultraviolet rays, and strong ozone. cracks and other aging phenomena, and aging further accelerates the deterioration of the mechanical properties of the cable sheath such as insulation and tensile strength, which seriously affects the performance of the cable and brings a lot of inconvenience to actual use. Therefore, it is urgent to change the original sheath material formula , improve material properties to meet the diverse needs of the cable market

Method used

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  • Anti-aging cable sheath material and preparation method thereof

Examples

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Effect test

Embodiment 1

[0026] An anti-aging cable sheath material provided in this embodiment, the anti-aging cable sheath material includes the following raw materials in parts by weight: 64 parts of modified polyurethane resin, 13 parts of chlorinated polyethylene, cis-butene 22 parts of dibutyl diacid, 12 parts of organic nano-montmorillonite, 5 parts of phthalocyanine blue, 2 parts of chlorinated paraffin, 4 parts of anti-aging agent, 0.6 parts of coupling agent, 3.4 parts of ultraviolet absorber, 1.6 parts of plasticizer Part; Wherein, the modification method of described modified polyurethane resin is specifically as follows:

[0027] (1), the anionic polyurethane with sulfonic acid group in the side chain, the acetone solution with a mass concentration of 11% and the hydrochloric acid solution with a mass concentration of 9% are added in the reactor, the anionic polyurethane, acetone solution and hydrochloric acid solution The volume ratio of the amount used is 2:65:0.4, and it is heated. Whe...

Embodiment 2

[0041] An anti-aging cable sheath material provided in this embodiment, the anti-aging cable sheath material includes the following raw materials in parts by weight: 52 parts of modified polyurethane resin, 22 parts of chlorinated polyethylene, cis-butene 7 parts of dibutyl diacid, 19 parts of organic nano-montmorillonite, 2 parts of phthalocyanine blue, 5 parts of chlorinated paraffin, 1 part of anti-aging agent, 2.8 parts of coupling agent, 1.3 parts of ultraviolet absorber, 2.9 parts of plasticizer Part; Wherein, the modification method of described modified polyurethane resin is specifically as follows:

[0042] (1), the anionic polyurethane with sulfonic acid group in the side chain, the acetone solution with a mass concentration of 11% and the hydrochloric acid solution with a mass concentration of 9% are added in the reactor, the anionic polyurethane, acetone solution and hydrochloric acid solution The volume ratio of the amount used is 2:65:0.4, and it is heated. When ...

Embodiment 3

[0056] An anti-aging cable sheath material provided in this embodiment, the anti-aging cable sheath material includes the following raw materials in parts by weight: 57 parts of modified polyurethane resin, 19 parts of chlorinated polyethylene, cisbutene 11 parts of dibutyl diacid, 17 parts of organic nano-montmorillonite, 3 parts of phthalocyanine blue, 4 parts of chlorinated paraffin, 3 parts of anti-aging agent, 1.3 parts of coupling agent, 2.4 parts of ultraviolet absorber, 2.3 parts of plasticizer Part; Wherein, the modification method of described modified polyurethane resin is specifically as follows:

[0057] (1), the anionic polyurethane with sulfonic acid group in the side chain, the acetone solution with a mass concentration of 11% and the hydrochloric acid solution with a mass concentration of 9% are added in the reactor, the anionic polyurethane, acetone solution and hydrochloric acid solution The volume ratio of the amount used is 2:65:0.4, and it is heated. When...

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Abstract

The invention belongs to the technical field of an electric material and provides an anti-aging cable sheath material and a preparation method thereof. The cable sheath material comprises the following raw materials in parts by weight: 52-64 parts of modified polyurethane resin, 13-22 parts of chlorinated polyethylene, 7-22 parts of dibutyl maleate, 12-19 parts of organic nanometer montmorillonite, 2-5 parts of bocour blue, 2-5 parts of chlorinated paraffin, 1-4 parts of an anti-aging agent, 0.6-2.8 parts of a coupling agent, 1.3-3.4 parts of an ultraviolet light absorber and 1.6-2.9 parts of a plasticizer. The cable sheath material provided by the invention has an anti-aging property. The modified polyurethane resin is used as a main raw material, and the organic nanometer montmorillonite, bocour blue, chlorinated paraffin, anti-aging agent and ultraviolet light absorber are used as auxiliaries, so that the prepared cable sheath material has an excellent anti-aging property.

Description

technical field [0001] The invention belongs to the technical field of power materials, and in particular relates to an anti-aging cable sheath material and a preparation method thereof. Background technique [0002] The cable sheath is an indispensable intermediate structural part of the cable, which plays the role of protecting the cable, ensuring the safety of the cable, and isolating the copper wire from water, air and other media to avoid leakage. With the development of the economy, the places where cables need to be used have become diversified, and there are more stringent and diverse requirements for the performance indicators of cable sheath materials, such as insulation, tensile strength, service temperature, flame retardant performance and other indicators There are strict requirements. Traditional sheath materials often have problems such as poor flame retardancy, poor chemical stability, high temperature deformation, poor mechanical properties, and short servi...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08L75/04C08L23/28C08L91/06C08K13/04C08K7/00C08K3/34C08K5/103C08K5/11C08K5/18C08J3/24H01B3/30
CPCC08J3/24C08J2375/04C08J2423/28C08K2201/011C08L75/04C08L2201/08C08L2203/202C08L2205/035H01B3/302C08L23/286C08L91/06C08K13/04C08K7/00C08K3/346C08K5/103C08K5/11C08K5/18
Inventor 王月斌
Owner HEFEI DAHU ELECTRIC WIRE & CABLE TECH CO LTD
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