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Silica gel components have high and low temperature resistance, maintain good elasticity in the temperature range of -70℃ to +260℃, and have the advantages of ozone resistance, weather resistant aging, suitable for the sealing gasliner in thermal machinery. Because of no toxicity can be made of the…
Silica gel components have high and low temperature resistance, maintain good elasticity in the temperature range of -70℃ to +260℃, and have the advantages of ozone resistance, weather resistant aging, suitable for the sealing gasliner in thermal machinery. Because of no toxicity can be made of thermal insulation, insulation products and medical silicone products, at the same time with waterproof, flame retardant, high temperature resistance, conductive, wear resistance, oil resistance and other excellent performance, in line with the European Union environmental protection standards.

use

Automobile air conditioning, fitness equipment, machinery, electronics, plumbing, electronic and electrical, lighting, household appliances, audio equipment, mechanical equipment, metal profiles, production line sanitary ware, electrical appliances, medical equipment and communication equipment, etc.

The tear strength of hot sulfurized solid silicone rubber ranges from 9 to 55 kN/m. The tensile strength of hot sulfurized solid silicone rubber ranges from 4.0-12.5MPa.

Aging causes of silica gel electronic components


1, the effect of heat, increase the temperature can cause the thermal cracking or thermal crosslinking of silicone rubber products. But the basic function of heat is activation. Increasing the diffusion rate of oxygen and activating oxidation reaction can accelerate the oxidation reaction rate of rubber, which is a universal aging phenomenon -- thermal oxygen aging.


2, the role of oxygen, oxygen in rubber with rubber molecules free base chain locking reaction, molecular chain fracture or excessive crosslinking, causing the performance of silicone rubber products to change. Oxidation is one of the important causes of rubber aging.


3, the cause of light, the shorter the wave, the greater the energy. It is the high energy ultraviolet rays that damage the rubber. Uv can not only directly cause the break and crosslinking of rubber molecular chains, but also generate free groups due to the absorption of light energy, which can trigger and accelerate the oxidation chain reaction process. The external light acts as a heating agent. Another feature of the use of light (as opposed to heat) is that it is mainly produced on the surface of the rubber. The two sides of the sample with high glue content will appear mesh cracks, namely the so-called "outer light crack".


4, the role of ozone, ozone chemical reactive oxygen species is much higher, more destructive, it is also the molecular chain fracture, but the effect of ozone on rubber with rubber deformation or not and different. As for the deformation of rubber (mainly unsaturated rubber), and the stress direction of direct cracks, namely the so-called "ozone cracking"; When acting on the deformed rubber, only the surface of the oxide film is formed without cracking.


5, the role of water, the role of water has two aspects: silicone rubber products in the wet air rain or soak in water, easy to destroy, this is because the water-soluble substances in the rubber and water tsuen and other components were dissolved by water extraction. Caused by hydrolysis or absorption. Especially under the alternating action of water immersion and atmospheric exposure, the destruction of rubber will be accelerated. But in some cases, water on rubber has no damage effect, and even has the effect of delaying aging.


6, the role of mechanical stress, under the repeated action of mechanical stress, will make the rubber molecular chain break to generate free tsuen, lead to oxidation chain reaction, the formation of chemical process. Mechanical chain breaking and mechanical activation oxidation process. Which is dominant depends on the conditions in which it is present. In addition, it is easy to cause ozone cracking under the action of stress.


7, other reasons are chemical media, variable metal ions, high-energy radiation, electricity and biology.


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