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IOTA 9120: Programmable Ceramic Precursor, Opening a New Era in High-Performance Ceramic Manufacturing

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In the fields of high-temperature protection and advanced ceramics, materials engineers have long sought a solution that combines processing convenience with exceptional performance. Traditional ceramic manufacturing processes are complex and energy-intensive, while ordinary polymers cannot withstand extreme environments. Today, we proudly present Organopolyborosilazane IOTA 9120—a truly "programmable ceramic precursor" that will open seamless transition doors from liquid polymer to high-performance ceramics.

Unique Molecular Structure, Dual-Function Integration

The core value of IOTA 9120 lies in its innovative molecular design. As a liquid precursor polymer composed of repeating Si-N and Si-N-B units, it perfectly combines the processability of thermosetting resins with the high-temperature stability of ceramic precursors. This unique structure maintains excellent processing properties in the liquid phase while ensuring ideal ceramic characteristics during transformation.

Flexible Processing Technology, Meeting Diverse Needs

We have designed multi-level processing options for IOTA 9120:

  • Temperature Flexibility: Can be thermally cured at 120-180°C or hydrosilylation-cured at 80-100°C using platinum catalyst

  • Atmosphere Adaptability: Supports curing in air or inert atmospheres, meeting different process environment requirements

  • Time Controllability: Curing time adjustable based on temperature and catalyst dosage, typically completed within 2-5 hours

  • Application Convenience: Low viscosity supports various dilution solvent options, facilitating spraying, dipping, and other processing techniques

Intelligent Transformation Mechanism, Ceramic Performance Programmable

The uniqueness of IOTA 9120 lies in its "programmable" ceramization process. By controlling pyrolysis conditions, you can precisely regulate the composition and performance of the final ceramic:

Atmosphere Control Technology:

  • Nitrogen/Argon atmosphere: Generates SiC and Si₃N₄ composite ceramics

  • Ammonia environment: Primarily forms Si₃N₄ ceramics

  • Air conditions: Obtains SiBOCN ceramic systems

Temperature Control Strategy:

  • Below 1600°C: Obtains amorphous ceramic products

  • Above 1600°C: Forms crystalline ceramic structures

Filler Synergistic Effects: By adding specific fillers, ceramic microstructure and performance characteristics can be further optimized

Exceptional Performance, Breaking Application Boundaries

The SiBCN ceramics transformed from IOTA 9120 demonstrate remarkable performance advantages:

  • Excellent Temperature Resistance: Withstands extreme high-temperature environments

  • High Chemical Stability: Good resistance to various corrosive media

  • Strong Mechanical Properties: Excellent balance of hardness and toughness

  • Good Thermal Stability: Maintains dimensional stability under temperature variations

Broad Application Fields, Creating Multiple Values

IOTA 9120 has vast application prospects in multiple high-tech fields:

  • Aerospace: Engine hot-end components, thermal protection systems

  • Energy Equipment: High-temperature reactors, heat exchanger coatings

  • Semiconductor Manufacturing: High-temperature fixtures, protective coatings

  • Special Ceramics: High-performance structural ceramic preparation

  • Composite Materials: Ceramic matrix composite reinforcement

Professional Technical Support, Ensuring Application Success

We understand that new material applications require professional technical support. Our engineering team will provide you with:

  • Customized formulation design services

  • Process parameter optimization guidance

  • Application technology training support

  • Continuous technology upgrade guarantees

Quality Assurance System, A Trustworthy Choice

Every batch of IOTA 9120 undergoes strict quality control:

  • Raw material selection and purification treatment

  • Full-process production monitoring

  • Comprehensive finished product performance testing

  • Batch stability assurance

Collaborative Partnership, Creating Future Together

Choosing IOTA 9120 means not only selecting a high-performance material but also choosing a reliable technical partner. We will work hand in hand with you to explore the application potential of this innovative material across various fields.

Whether developing new high-temperature components, optimizing existing processes, or exploring全新的 product applications, IOTA 9120 can provide unique technical advantages for your projects. Let us jointly open a new chapter in high-performance ceramic manufacturing, perfectly combining liquid convenience with ceramic excellence.

Contact us immediately to explore how IOTA 9120 can bring revolutionary changes to your projects!


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

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