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Ozone resistance of fluorosilicone

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The ozone resistance of fluorosilicone (fluorosilicone rubber) is very outstanding. The following is a detailed analysis of the ozone resistance of fluorosilicone:


1. Overview of ozone resistance
Ozone is one of the common gases in the aging process of elastomers, which has a significant destructive effect on the performance of elastomers. However, fluorosilicone shows good ozone resistance in both dynamic and static tests, and is not prone to cracking or cracking even in environments with high ozone concentrations.

2. Ozone resistance performance
The ozone resistance of fluorosilicone is mainly reflected in its ability to maintain good physical and mechanical properties when exposed to ozone environment for a long time. This is due to the stability and chemical inertness of the molecular chain structure of fluorosilicone, which makes it less susceptible to attack and damage by ozone.

3. Ozone resistance test
In order to verify the ozone resistance of fluorosilicone, special ozone resistance tests are usually carried out. In these tests, fluorosilicone samples are placed in an environment containing a certain concentration of ozone, and their performance changes over a certain period of time are observed. The test results show that fluorosilicone can maintain good performance stability in an ozone environment without obvious aging.

4. Application examples of ozone resistance
The ozone resistance of fluorosilicone makes it widely used in many fields. For example, in the field of aerospace, fluorosilicone is used to manufacture seals and pipes on aircraft, which need to withstand the test of harsh environments such as ozone at high altitudes. In addition, in the automotive industry, fluorosilicone is also used to manufacture various seals and hoses to ensure the normal operation of automobiles under various harsh road conditions and climatic conditions.

5. Comparison with other materials
Compared with ordinary silicone rubber, fluorosilicone has better ozone resistance. Ordinary silicone rubber is prone to aging in ozone environment, such as cracking and cracking, while fluorosilicone can maintain good performance stability. This makes fluorosilicone have higher application value in occasions where it needs to be exposed to ozone environment for a long time.

In summary, fluorosilicone has excellent ozone resistance and can maintain good physical and mechanical properties when exposed to ozone environment for a long time. This feature makes fluorosilicone have broad application prospects and important strategic significance in aerospace, automotive industry and other fields.

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