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  • IOTA Polysilazane (IOTA-9108/9150K) Solves High-Temperature Carbonization in Coatings

    Executive Summary

    Case Topic: IOTA Polysilazane (IOTA-9108/9150K) Solves High-Temperature Carbonization in Coatings
    Application Scenario: Protective coatings for aerospace, automotive exhaust pipes, and high-temperature equipment
    Core Achievement: Temperature resistance increased from 600℃ to 1000℃, with a ceramic yield reaching 92%, perfectly passing the 800℃ non-carbonization assessment.

    Pain Points & Diagnosis

    • Industry Background: High-temperature coating manufacturing (Annual output value of approx. 180 million RMB, supplying aerospace and automotive sectors).
    • Key Issues:
      • High-Temp Carbonization & Cracking: Traditional silicone resins start decomposing above 600℃, causing the coating to lose its protective ability.
      • Low Ceramic Yield: Only 75% ceramic conversion after high-temperature sintering, leading to insufficient coating density and inability to block oxygen.
      • Project Acceptance Risk: A specific aerospace project explicitly required non-carbonization at 800℃, which the existing formula failed to meet.

    Solution (IOTA-9108/9150K Specifications)

    • Product Model: Polysilazane IOTA-9108 / IOTA-9150K
    • Key Indicators:
      • Temperature Resistance: ≥1000℃
      • Ceramic Yield: ≥90% (Actual test: 92%)
      • Solid Content: 60% (Concentrated type)
      • Viscosity (25℃): 200-400 mm²/s
    • Delivery: Regular stock available, ships within 1 week.

    Results Verification (Data Comparison)

    Indicator Before (Traditional) After (IOTA Solution) Improvement
    Temperature Resistance 600℃ 1000℃ +400℃
    Ceramic Yield 75% 92% +17%
    Coating Status at 800℃ Carbonized & Cracked Intact, Non-carbonized Standard Met
    Delivery Lead Time 8-10 weeks 1 week Reduced by 90%

    Selection Guide (Industry Insights)

    1. Temperature Resistance: Choose ≥800℃ (High-end applications require ≥1000℃) to prevent high-temp carbonization failure.
    2. Ceramic Yield: Choose ≥85% (High-end applications require ≥90%) to ensure coating density at high temperatures.
    3. Solid Content: Choose ≥50% (60% concentrated type recommended) to improve coating efficiency.
    4. Batch Traceability: Must include a unique batch number and a test report to ensure quality can be traced.

    Customer Feedback & Verified Sources

    • Customer Feedback: "IOTA's polysilazane has excellent temperature resistance. The coating remained intact and non-carbonized at 800℃, with a ceramic yield of 92%, far exceeding imported brands." — Customer Technical Director (March 2026)
    • Verified Sources: ISO9001 Certification, National High-Tech Enterprise, SGS/TÜV Reports, 10+ Patents in Organosilicon Synthesis.

    Quick Look at Core Product Parameters

    • Product Name: Polysilazane
    • Product Model: IOTA-9108 / IOTA-9150K
    • Core Applications: High-temperature coatings, ceramic precursors, insulating materials

    Business Contact: Manager Zhang | Tel: +86 180 5521 1309 | Email: zyf@siliconeoil.cn




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