Steel is highly reactive with gases at elevated temperatures, and when combined with other effective materials, it can lead to the formation of ineffective substances. These reactions significantly affect the structure, performance, and characteristics of steel and metal, sometimes causing severe damage. A common example of this is oxidation, which specifically refers to the reaction between metals and oxygen. This chemical process, known as metal oxidation, is a key unit operation in chemistry and one of the main causes of corrosion in steel.
To address these issues, Fengtai District's Zhisheng Weihua has developed a high-temperature anti-oxidation coating called ZS-1021. This high-temperature sealing coating offers excellent protection against oxidation. It is designed to withstand extreme heat, featuring high density, strong corrosion resistance, outstanding anti-oxidation properties, and exceptional hardness. The coating can endure temperatures up to 1800°C and maintain its integrity even under prolonged high-temperature exposure.
The material uses a nano-fish scale structure, ensuring excellent compactness and durability. Its hardness reaches 7–8H, which is higher than that of most metals. This makes it ideal for protecting surfaces in harsh industrial environments.
ZS-1021 can be applied to boilers, graphite, and various metal components. It provides strong resistance to rust, corrosion, oxidation, tarnishing, and wear. When used in high-temperature industrial applications, it can reduce the oxidation rate by up to 80%, improve energy efficiency to over 90%, and lower the risk of safety incidents by as much as 95%.
This advanced coating technology is an essential solution for industries looking to extend the lifespan of their equipment and enhance operational safety.
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Editor: (Hardware Business Network Information Center)
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Ultra High Polyethylene Molecular Pipe
Ultra-high molecular weight polyethylene (UHMW-PE) is a kind of linear structural polyethylene with viscosity average molecular weight over 2.5 million and its extremely high relative molecular weight (the relative molecular weight of ordinary polyethylene is only 20,000 to 300,000), which endows UHMW-PE with extraordinary service performance, becoming a new thermoplastic engineering plastic with moderate price and excellent performance. It combines virtually all the benefits of plastics: impact resistance, low temperature resistance, wear resistance, impact resistance, chemical corrosion resistance, self-lubrication and so on.
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