Polysiloxane microsphere damping chlorinated butyl rubber composite material and preparation method thereof

A technology of chlorinated butyl rubber and polysiloxane, which is applied in the field of polysiloxane microsphere damping chlorinated butyl rubber composite materials and its preparation, can solve the problems of inability to increase the damping temperature range and single damping mechanism, etc. Achieve the effect of easy conduction and diffusion, increase cross-link density, and improve damping effect

Active Publication Date: 2017-05-31
SHANGHAI UNIV OF ENG SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This patent only focuses on using the hydrogen bond between octyl triazone and chlorobutyl rubber to improve the dam

Method used

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  • Polysiloxane microsphere damping chlorinated butyl rubber composite material and preparation method thereof
  • Polysiloxane microsphere damping chlorinated butyl rubber composite material and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0038] Measure 60g of n-octane and 10g of Span 85, and stir well. Measure 3g of water and add 2ml of ammonia water, stir well. The above mixture was added into a 250mL three-neck flask, and stirring was started at a stirring rate of 300r / min for 1h. Add 10g of methyltrimethoxysilane (MTMS) dropwise, the stirring rate is 500r / min, and the stirring time is 36h, until the reaction is complete, the reactant is suction filtered, and the product obtained by suction filtration is put into an oven for drying to obtain polysiloxane Microspheres. The above-mentioned dried polysiloxane microspheres were sieved by using a 10-mesh sieve for 1 hour, and the obtained polysiloxane microspheres were used as fillers for the modified chlorinated butyl rubber.

[0039] Put 100g of chlorobutyl rubber, 2g of stearic acid, 1g of nano-zinc oxide, 1g of accelerator M, 2g of anti-aging agent A, 1g of light magnesium oxide, 5g of polysiloxane microspheres and 1g of sulfur into the kneading according t...

Embodiment 2

[0043] Measure 70g of n-octane and 15g of Span 85, and stir well. Measure 40g of water and add 3ml of ammonia water, stir evenly. The above mixture was added into a 250mL three-neck flask, and stirring was started at a stirring rate of 400r / min for 2h. Add 20g of methyltrimethoxysilane (MTMS) dropwise, the stirring rate is 650r / min, and the stirring time is 30h, until the reaction is complete, the reactant is filtered by suction, and the product obtained by suction filtration is put into an oven for drying to obtain polysiloxane Microspheres. The above-mentioned dried polysiloxane microspheres were sieved with a 400-mesh screen for 1.5 hours, and the obtained polysiloxane microspheres were used as fillers for the modified chlorobutyl rubber.

[0044]Put 100g of chlorobutyl rubber, 2g of stearic acid, 1g of nano-zinc oxide, 1g of accelerator M, 2g of anti-aging agent A, 1g of light magnesium oxide, 5g of polysiloxane microspheres and 1g of sulfur into the kneading according t...

Embodiment 3

[0048] Measure 80g of n-octane and 20g of Span 85, and stir well. Measure 50g of water and add 4ml of ammonia water, stir evenly. The above mixture was added into a 250mL three-necked flask, and stirring was started at a stirring rate of 500r / min for 1h. Add 30g of methyltrimethoxysilane (MTMS) dropwise, the stirring rate is 800r / min, and the stirring time is 24h, until the reaction is complete, the reactant is suction filtered, and the product obtained by suction filtration is put into an oven for drying to obtain polysiloxane Microspheres. The above-mentioned dried polysiloxane microspheres were sieved by using a 600-mesh screen for 2 hours, and the obtained polysiloxane microspheres were used as fillers for the modified chlorobutyl rubber.

[0049] Put 100g of chlorobutyl rubber, 2g of stearic acid, 1g of nano-zinc oxide, 1g of accelerator M, 2g of anti-aging agent A, 1g of light magnesium oxide, 5g of polysiloxane microspheres and 1g of sulfur into the kneading according...

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Abstract

The invention relates to a polysiloxane microsphere damping chlorinated butyl rubber composite material and a preparation method thereof. The polysiloxane microsphere damping chlorinated butyl rubber composite material is prepared from the following components of 100 parts of chlorinated butyl rubber, 1 to 3 parts of vulcanizing agent, 1 to 3 parts of accelerant, 2 to 4 parts of stearic acid, 1 to 2 parts of nanometer zinc oxide, 2 to 4 parts of anti-aging agent, 1 to 3 parts of light-weight magnesium oxide, and 5 to 20 parts of polysiloxane microsphere; the components are added into a mixing mill to mix according to a formula, so as to obtain the polysiloxane microsphere damping chlorinated butyl rubber composite material. Compared with the prior art, the polysiloxane microsphere damping chlorinated butyl rubber composite material has the advantages that the chlorinated butyl rubber is modified by the polysiloxane microsphere, the damping temperature range is obviously widened, and the damping property, mechanic property and heat conduction property are improved.

Description

technical field [0001] The invention relates to a polysiloxane composite material, in particular to a polysiloxane microsphere damping chlorinated butyl rubber composite material and a preparation method thereof. Background technique [0002] The rapid development of modern industry makes mechanical equipment tend to be high-speed, and a series of problems related to machinery such as vibration and noise also arise. These problems not only accelerate the fatigue damage of the mechanical structure, shorten its service life, but also to a certain extent Will pollute the environment and endanger human health. Therefore, it is very important to develop high-efficiency damping materials with excellent performance, improve their damping and vibration reduction effects, and improve the operating environment of mechanical equipment. [0003] Chlorobutyl rubber is widely used in shock absorption, damping and other fields. With the development of cutting-edge technologies such as th...

Claims

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Application Information

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IPC IPC(8): C08L11/00C08L83/04C08K13/02C08K5/09C08K3/22C08K5/47C08K5/18
CPCC08G77/06C08K2201/003C08K2201/011C08L11/00C08L2205/18C08L2312/00C08L83/04C08K13/02C08K5/09C08K2003/2296C08K2003/222C08K5/47C08K5/18
Inventor 王锦成杨思远南子婧
Owner SHANGHAI UNIV OF ENG SCI
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