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Next-Gen Ceramic Precursor: IOTA 9108 Organopolysilazane

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In extreme environments where temperature, corrosion, or oxidation challenge conventional materials, IOTA 9108 Organopolysilazane stands out as a versatile ceramic precursor polymer, enabling breakthroughs in aerospace, energy, and advanced manufacturing.

Key Advantages

  1. High-Yield Ceramization: Converts to SiCN ceramic (withstand up to 1500°C) under mild pyrolysis, offering exceptional thermal stability.
  2. Process Adaptability: Low viscosity allows spraying, dipping, or coating; fast curing via heat, UV, or catalysts streamlines production.
  3. Superior Adhesion: Bonds strongly to metals, ceramics, and graphite, ideal for high-temperature adhesives or anti-corrosion coatings.
  4. Dual Functionality: Acts as both a thermosetting resin and ceramic precursor, reducing material inventory complexity.

Applications

  • CMCs: Lightweight turbine blades, spacecraft thermal shields.
  • Protective Coatings: Oxidation-resistant layers for metal components.
  • PIP Process: Infiltrates preforms to fabricate complex ceramic parts.
  • Electronics: Insulating ceramic for power device encapsulation.

IOTA 9108 – Redefining the Limits of High-Performance Materials!


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

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