Carbon-carbon structural components exhibit excellent toughness, resistance to fracture, high-temperature tolerance, corrosion resistance, superior thermal shock performance, and resistance to acids, alkalis and resistance to friction and wear.
Carbon-carbon composite is an advanced high-temperature structural material. It combines low density with exceptional thermal stability, high strength and excellent thermal-shock resistance. It maintains reliable mechanical properties under ultra-high temperatures, featuring low thermal expansion and outstanding corrosion resistance. It can be precision-machined into customized shapes. Widely used in aerospace, vacuum furnaces and metallurgical industries for thermal components and high-temperature structural parts.
Carbon-carbon structural components exhibit excellent toughness, resistance to fracture, high-temperature tolerance, corrosion resistance, superior thermal shock performance, and resistance to acids, alkalis and resistance to friction and wear.
Carbon felt, a novel carbon-based high-temperature insulating material, boasts a unique set of superior properties. These include low thermal conductivity, low heat capacity,
low density, a minimal linear expansion coefficient, exceptional high-temperature resistance, strong thermal shock resistance, I robust chemical corrosion resistance, and high purity with no contamination. As a result, it has become the primary insulating material for crystalline silicon ingot furnaces.
Shuangjing Village, Ligezhuang Town, Jiaozhou City, Qingdao City, Shandong Province, China