Application areas

From the molecular level to industry, every step represents a leap in value.

Application areas

Providing material solutions for aerospace, electronic packaging, new energy, and other fields.

Petrochemicals

PBI (polybenzimidazole), a high‑temperature‑ and highly corrosion‑resistant specialty material, has a decomposition temperature exceeding 600°C and can operate stably at 310°C over extended periods. It is well suited to the demanding conditions of the entire petrochemical process, addressing the limitations of conventional materials. In oil extraction, PBI is employed in downhole high‑temperature, high‑pressure seals, logging‑tool housings, and fracturing temporary‑plugging components, ensuring operational safety and enhancing production efficiency.

Aerospace

PBI (polybenzimidazole) boasts exceptional thermal stability, high strength, radiation resistance, and lightweight properties. With a decomposition temperature exceeding 600°C, it can operate continuously at temperatures above 310°C, making it ideally suited to the extreme operating conditions of aerospace and defense applications. It provides critical material support for advanced equipment and is widely used in three core sectors.

Industrial sector

PBI (polybenzimidazole), a high-performance specialty polymer, boasts exceptional properties such as outstanding thermal stability—with a decomposition temperature exceeding 600°C—superior resistance to aggressive chemicals, high mechanical strength, and excellent electrical insulation. It is well-suited to demanding industrial conditions, addressing the common drawbacks of conventional materials—namely, rapid aging and premature failure—and finds extensive application across numerous critical industrial sectors, thereby underpinning safe and efficient operations in manufacturing.

Semiconductor field

PBI (polybenzimidazole), as a high-performance specialty polymer, boasts exceptional thermal stability, ultra-high purity, and outstanding resistance to strong corrosive environments. It is well-suited to the demanding operating conditions of semiconductor manufacturing, making it the material of choice for high-end equipment and critical components, thereby providing essential support for the industry’s move toward higher value-added applications. In core manufacturing processes—particularly in the etching stage—ultra‑high‑purity PBI is employed for chamber seals, lift pins, and other components, helping to minimize wafer contamination and improve yield.

Membrane material

PBI (polybenzimidazole), with its exceptional resistance to high temperatures and strong corrosive environments, as well as its gas‑separation and ion‑conductivity properties, has emerged as a core substrate for advanced functional membranes. PBI membranes are tailored to meet the demands of demanding applications, finding widespread use across diverse membrane‑based fields, addressing the limitations of conventional membrane materials, and underpinning the advancement of membrane technologies.

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