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Protective material for communication cables

A technology for protective materials and communication cables, used in rubber insulators, organic insulators, etc., can solve the problems of poor compatibility, decreased mechanical properties, waterproof performance and insulation performance, and it is difficult to form bonds and bonds at the interface, so as to reduce the surface energy, Effects of long service life, enhanced compatibility and ease of dispersion

Inactive Publication Date: 2019-06-11
刘向东
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Inorganic halogen-free flame retardants have strong polarity and hydrophilicity, while polyolefins are non-polar materials, the compatibility between the two is poor, and it is difficult to form a good bond and bond at the interface, especially magnesium hydroxide Magnesium hydroxide has excellent flame retardancy, smoke suppression, anti-dripping, anti-acid and other functions, and has been widely used. However, magnesium hydroxide has strong polarity, and its thermal expansion coefficient is different from that of resin. When it is processed and molded, it will expand with heat and contract with cold. The phase interface forms fine cracks, which will lead to the decline of the mechanical performance, waterproof performance and insulation performance of the material. Therefore, the surface modification of magnesium hydroxide must be carried out to make magnesium hydroxide have better comprehensive performance in polyolefin. It has good fluidity at high temperature and high strength and toughness at service temperature, and does not change the impact resistance of polyolefin profiles

Method used

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Embodiment Construction

[0007] The following will be further described in conjunction with specific embodiments, but the following specific embodiments should not be construed as limiting the subject invention. Various modifications and variations that can be obviously made by those skilled in the art on the basis of the present invention should all fall within the scope of the present invention.

[0008] A protective material for communication cables, prepared from the following raw materials in parts by weight (kg): foam rubber 50, antimony trioxide 13, glass fiber 69, magnesium hydroxide 14, decabromobiphenyl acid 0.6, titanate Coupling agent 1021.3, CPE flame retardant 5, polyvinylidene 3, vinyl acetate 2, wollastonite powder 2, ceramsite 3, neoprene 4, light magnesium oxide 10100.4, appropriate amount of deionized water;

[0009] The communication cable protective material is prepared by the following specific steps: (1) After drying magnesium hydroxide and treating it with a mixed colloid mill ...

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Abstract

The invention discloses a protective material for communication cables. The protective material is prepared from the following raw materials, in parts by weight: 50-55 parts of foam rubber, 13-15 parts of antimony trioxide, 9-12 parts of glass fibers 6, 14-16 parts of magnesium hydroxide, 0.6-0.8 part of decabromobiphenyl acid, 1.3-2 parts of a titanate coupling agent 102, 5-8 parts of a CPE flameretardant, 3-5 parts of polyvinylidene fluoride, 2-4 parts of vinyl acetate, 2-3 parts of wollastonite powder, 3-4 parts of ceramsite, 4-5 parts of chloroprene rubber, 0.4-0.6 part of light magnesiumoxide 1010, and an appropriate amount of deionized water. The optical fiber material provided by the invention has excellent oil resistance, high strength, good comprehensive performance and long service life.

Description

technical field [0001] The invention relates to the technical field of optical fiber sheathing materials, in particular to a communication cable protective material and a preparation method thereof. Background technique [0002] With the rapid development of the data communication industry, optical fiber is being widely used as the carrier of data transmission. The laying forms of optical fiber are buried and overhead, and with the transformation of urban network lines, most of them have been transferred underground. In order to prevent underground optical fibers and optical cables from being bitten or corroded by insects, sheath materials for optical fibers and optical cables have emerged as the times require. At present, polyolefin is mainly used as the sheath material of optical fiber and optical cable, which has the characteristics of light weight, high bending strength, small friction coefficient, good sealing performance, and corrosion resistance. However, this kind o...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08L21/00C08L27/16C08L11/00C08L23/28C08K13/06C08K9/04C08K3/22C08K7/14C08K3/34H01B3/28
Inventor 刘向东
Owner 刘向东
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