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With its unique repeating Si-N unit structure, IOTA 9108 demonstrates outstanding comprehensive performance while maintaining low viscosity and easy processing characteristics. This material features short curing times and flexible curing methods, adapting to various production environment requirements. More importantly, it exhibits excellent adhesion to multiple substrates, including metals, ceramics, and graphite, providing an ideal solution for the protection and reinforcement of complex structures.
When faced with extreme high-temperature environments, IOTA 9108 truly reveals its extraordinary value. After pyrolysis under mild conditions, it efficiently transforms into SiCN ceramics resistant to temperatures up to 1500℃, with high ceramic yield and stable, reliable performance. This characteristic makes it an invaluable material in fields such as aerospace, energy and power, and high-end manufacturing.
Against the backdrop of the new materials revolution and industrial upgrading, IOTA 9108, with its unique multifunctionality and exceptional performance, is becoming an important force driving technological innovation. It not only meets traditional high-temperature protection needs but also provides critical material support for the research and development of next-generation high-temperature technologies and products.
Choosing IOTA 9108 means selecting a future-oriented material solution. It represents the latest achievements in materials science and carries the important mission of advancing industrial progress. Let us join hands with IOTA 9108 to jointly create a new chapter in high-temperature material applications, providing the strongest support for your products and technologies!
Room termperature curing polysilazane, pls check IOTA 9150, IOTA 9150K.
High termperature curing polysilazane, pls check IOTA 9108, IOTA 9118.