Hits: 434 img
In fields such as aerospace, high-temperature equipment, industrial corrosion protection, and specialty coatings, materials must not only withstand extreme temperatures but also maintain stable performance under dynamic stresses such as vibration and bending. Building upon IOTA 6105, IOTA 6106 Eco-Friendly Solid Silicone Resin significantly enhances flexibility and resistance to bending, while also featuring higher phenyl content, offering a new resin base solution for high-temperature and mechanically stressed applications.
Balances High-Temperature Protection and Flexibility
Operates stably long-term at ≥350℃ with thermal weight loss ≤5% (350℃/4h), ensuring reliable high-temperature performance
Significantly improved flexibility compared to conventional solid silicone resins, suitable for coatings on complex structures requiring resistance to bending and vibration
Higher phenyl content provides superior thermal stability and weather resistance
Comprehensive and Excellent Performance
Excellent electrical insulation and arc resistance, suitable for high-voltage and high-temperature environments
Flame-retardant, corrosion-resistant, ozone-resistant, and chemically stable, ensuring long-term durability
Hydrophobic and moisture-proof, adaptable to harsh industrial and outdoor environments such as humidity and salt spray
Eco-Friendly and Process-Friendly
100% solid content, solvent-free, compliant with green manufacturing and environmental regulations
Does not clump or become sticky at room temperature, ensuring stable powder storage and good processing adaptability
Can be blended with IOTA 6103 and IOTA 6105 series resins to flexibly adjust system performance
| Parameter | Specification |
|---|---|
| Appearance | Colorless/light yellow powder or granules |
| Solid Content (180℃, 1h) | ≥99% |
| Heat Resistance of Clear Coat (350℃, 4h) | Thermal weight loss ≤5% |
| Gelation Time (200℃) | 10–60 minutes (customizable) |
| Softening Point | 70 ± 5℃ |
High-Temperature and Mechanical Stress-Resistant Coatings
Coatings for high-temperature and vibration-resistant components such as grills, mufflers, and exhaust pipes
Surface protection for industrial furnaces and heat treatment equipment subjected to both thermal and mechanical stress
Flexible protective coatings for aerospace engine peripherals and high-temperature pipelines
Electrical Insulation and Composite Materials
Coatings for electrical equipment such as motors and transformers requiring both insulation and bending resistance
High-temperature-resistant composite bases for flexible insulating tapes and mica products
High-temperature resin matrix for glass fiber-reinforced composite materials
Specialty Coatings and Industrial Corrosion Protection
Integrated coatings for outdoor high-temperature equipment offering weather resistance, corrosion protection, and vibration resistance
Base material for high-temperature protection and stealth coatings for military equipment and specialty vehicles
Resin component for high-temperature marking and chemically resistant printing inks
Formulation System Design
Can be used as a single resin base or blended with resins such as epoxy and polyester
Recommended to add appropriate fillers, pigments, curing agents, and additives to optimize performance and processing
Diverse Processing Methods
Powder Coating Processes: Electrostatic spraying, fluidized bed coating, high-temperature curing and molding
Liquid Coating Processes: Formulated into solvent-based or solvent-free coatings for spraying or brushing
Compression and Transfer Molding: Mixed with fibers and fillers, hot-pressed into composite material products
Packaging Specifications: 50 kg composite cartons (with double-layer moisture-proof inner bags), customizable packaging available
Storage Conditions: Cool and dry, temperature ≤30℃, avoid direct sunlight
Shelf Life: 12 months in original packaging, can still be used if qualified upon re-inspection after expiration
Transportation: Transported as general goods