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IOTA 9108 Organopolysilazane - Ushering in a New Chapter of Ceramizable Precursor Polymers

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Recently, an organopolysilazane material named IOTA 9108 has garnered significant attention in the market. This innovative material, also known as a ceramizable precursor polymer, brings new breakthroughs to the field of materials science with its unique properties and wide application fields.

IOTA 9108 organopolysilazane is a liquid precursor polymer composed of repeating Si-N units. It can be used both as a thermosetting resin and as a ceramic precursor. Under relatively mild conditions, it can pyrolyze to form temperature-resistant SiCN ceramic products, demonstrating high ceramic yields and good adhesion to various materials.

With low viscosity, short curing times, and versatile curing methods, IOTA 9108 finds wide application in fields such as ceramic matrix composites (CMCs), metal matrix composites, high-temperature adhesives, anti-corrosion coatings, and more. Its temperature resistance reaches up to 1500℃, providing reliable solutions for material applications in high-temperature environments.

In terms of technical parameters, IOTA 9108 excels with a solid content exceeding 99%, a suitable molecular weight, and low viscosity, facilitating easy processing and use. Its cured ceramic yield exceeds 75% at 800℃, demonstrating outstanding ceramization performance.

With the launch of IOTA 9108, the field of materials science is poised for more efficient and durable new materials. This product not only offers innovative solutions for ceramic matrix composites, metal matrix composites, and other fields but also provides more possibilities for applications such as high-temperature adhesives and anti-corrosion coatings.


Room termperature curing polysilazane, pls check IOTA 9150, IOTA 9150K.       
High termperature curing polysilazane, pls check IOTA 9108IOTA 9118.

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