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Preparation method of insect-resistant high-temperature-resistant flame-retardant cable

A flame retardant cable and high temperature resistant technology is applied in the field of preparation of insect-proof and high-temperature resistant flame-retardant cables, which can solve the problems of troublesome manufacturing process, serious pollution, rupture, etc., and achieve good insect-proof ant biting, simple preparation process, and good flame retardant. performance effect

Inactive Publication Date: 2016-06-08
SUZHOU KEMAO ELECTRONICS MATERIALS TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Typical non-metallic materials include nylon and imitation nylon. Nylon has high hardness, good toughness and surface smoothness, and has a good effect of preventing rodents, insects and ants. However, its manufacturing process is troublesome and its manufacturing cost is relatively high. There are fewer applications in industrial use
The chemical control method is to add a certain amount of repellent or repellant to the material to achieve the effect of preventing rodents, insects and ants. However, many repellents are prohibited due to toxicity or serious environmental pollution.
Among the existing wire and cable products, wires and cables are prone to aging and deformation or even rupture under high temperature environment, which will also cause leakage and other incidents

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0018] S1: Add 40 parts of styrene-butadiene rubber, 30 parts of nitrile rubber, 10 parts of calcium stearate, 3 parts of nano-talc powder, 1 part of magnesium silicide, 8 parts of methacrylate and 7 parts of montmorillonite into the high-speed mixer , mixed at a temperature of 100°C for 8 minutes at a rate of 600r / min at high speed;

[0019] S2: Add 5 parts of esfenvalerate, 4 parts of fenthrin, 6 parts of isosorbide dinitrate and 10 parts of cetrimonium p-toluenesulfonate into the high-speed mixer, reduce the temperature to 70 ° C, and speed up to 800r / min stirring and mixing for 10min;

[0020] S3: Then add 9 parts of diethyl phenylethylmalonate and 5 parts of acetyl tributyl citrate, raise the temperature to 110° C., and mix for 5 minutes at a rate of 1000 r / min;

[0021] S4: The material is then transported to a cold roller machine, cooled to 35° C., and the insect-proof, high-temperature-resistant, flame-retardant cable can be obtained after discharging, drying, and gr...

Embodiment 2

[0027] S1: Add 50 parts of styrene-butadiene rubber, 40 parts of nitrile rubber, 14 parts of calcium stearate, 8 parts of nano-talc powder, 4 parts of magnesium silicide, 15 parts of methacrylate and 10 parts of montmorillonite into the high-speed mixer , mixed at a high speed of 900r / min for 12min at a temperature of 120°C;

[0028] S2: Add 9 parts of esfenvalerate, 8 parts of ethynethrin, 10 parts of isosorbide dinitrate and 15 parts of cetrimonium p-toluenesulfonate into the high-speed mixer, reduce the temperature to 80 °C, and increase the temperature at a rate of 1000r / min stirring and mixing for 15min;

[0029] S3: Then add 13 parts of diethyl phenylethylmalonate and 12 parts of acetyl tributyl citrate, raise the temperature to 125°C, and mix for 8 minutes at a speed of 1200r / min;

[0030] S4: The material is then transported to a cold roller machine, cooled to 45° C., and the insect-proof, high-temperature-resistant, flame-retardant cable can be obtained after discha...

Embodiment 3

[0036] S1: Add 45 parts of styrene-butadiene rubber, 40 parts of nitrile rubber, 11 parts of calcium stearate, 5 parts of nano-talc powder, 2 parts of magnesium silicide, 10 parts of methacrylate and 8 parts of montmorillonite into the high-speed mixer , mixed at a high speed of 700r / min at a temperature of 100°C for 8min;

[0037] S2: Add 6 parts of esfenvalerate, 5 parts of fenthrin, 7 parts of isosorbide dinitrate and 11 parts of cetrimonium p-toluenesulfonate into the high-speed mixer, reduce the temperature to 70 °C, and speed up to 800r / min stirring and mixing for 10min;

[0038] S3: Then add 10 parts of diethyl phenylethylmalonate and 7 parts of acetyl tributyl citrate, raise the temperature to 120° C., and mix for 6 minutes at a speed of 1100 r / min;

[0039] S4: The material is then transported to a cold roller machine, cooled to 35° C., and the insect-proof, high-temperature-resistant, flame-retardant cable can be obtained after discharging, drying, and granulation....

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PUM

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Abstract

The invention discloses an insect-resistant high-temperature-resistant flame-retardant cable which comprises the following components in parts by weight: 40-50 parts of styrene-butadiene rubber, 30-40 parts of nitrile-butadiene rubber, 10-14 parts of calcium stearate, 3-8 parts of nano talcum powder, 1-4 parts of magnesium silicide, 8-15 parts of methacrylate, 7-10 parts of montmorillonite, 5-9 parts of high fenvalerate, 4-8 parts of eneyne esbiothrin, 6-10 parts of isosorbide nitrate, 9-13 parts of diethyl phenyl ethyl malonate, 5-12 parts of acetyl tributyl citrate and 10-15 parts of cetrimide p-toluenesulfonate. The cable product has the advantages of favorable high temperature resistance and high flame retardancy, and has favorable control effect on insects and ants.

Description

technical field [0001] The invention belongs to the field of cable material preparation, and in particular relates to a method for preparing an insect-proof, high-temperature-resistant, flame-retardant cable. Background technique [0002] At present, wire and cable products have been widely used in electric power, construction, communication, manufacturing and other industries. However, because mice and insects need to grind their teeth, wires and cables are usually bitten by mice and insects; Accidents happen. Existing methods for preventing insects and termites include physical control and chemical control. Among them, physical control mainly uses the hardness, toughness and surface smoothness of the material to achieve the effect of preventing rodents, insects and ants. Typical non-metallic materials include nylon and imitation nylon. Nylon has high hardness, good toughness and surface smoothness, and has a good effect of preventing rodents, insects and ants. However, ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08L9/06C08L9/02C08K13/02C08K3/34C08K5/315C08K5/098C08K5/42H01B3/28
CPCC08K2201/011C08K2201/014C08L9/06C08L2201/02C08L2201/08C08L2203/202C08L2205/02H01B3/28C08L9/02C08K13/02C08K3/34C08K5/315C08K5/098C08K3/346C08K5/42
Inventor 邹黎清
Owner SUZHOU KEMAO ELECTRONICS MATERIALS TECH
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