ST-1040 Silicone Flame Retardant - 30-50% Sb2O3 Replacement for HIPS, ABS & AS Polymers
Price:
Negotiable
MOQ:
500kg
Delivery Time:
1~3work daiy
Brand:
COMPLORD
Product Description
ST-1040 Silicone Flame Retardant Overview
ST-1040 is an advanced environmentally friendly silicone flame retardant designed as a cost-effective replacement for traditional antimony trioxide (Sb₂O₃). This innovative product offers superior thermal stability and excellent synergy with halogen flame retardants while maintaining full compliance with international environmental standards.
Key Advantage: Can replace 30-50% of Sb₂O₃ in flame-retardant polymers, significantly reducing material costs while maintaining performance.
Technical Features & Benefits
- Environmental Compliance: Fully meets EU RoHS directive and REACH regulations
- Cost Efficiency: Replaces 30-50% of Sb₂O₃ in polymer formulations
- Thermal Stability: Excellent heat resistance with no decomposition during high-temperature processing
- Smoke Suppression: Provides effective smoke reduction in flame-retardant applications
- Low Water Solubility: Minimal impact on material electrical properties
- Synergistic Performance: Enhanced effectiveness when combined with halogen flame retardants
Application Polymers
ST-1040 is specifically formulated for use in various flame-retardant polymers including:
- HIPS (High Impact Polystyrene)
- ABS (Acrylonitrile Butadiene Styrene)
- AS (Acrylonitrile Styrene)
Product Specifications
| Property | Specification |
|---|---|
| Product Type | Silicone Flame Retardant |
| Sb₂O₃ Replacement Rate | 30-50% |
| Thermal Stability | No decomposition at high processing temperatures |
| Environmental Standards | EU RoHS, REACH Compliant |
| Water Solubility | Extremely Low |
Product Images
Get in Touch
Have questions about our products or want to discuss a custom order? Our team is ready to help you.
Company
Zhuhai Complord New Materials Co.,Ltd
Location
No.1 Industrial Zone, No.139 Xingkun Road,Nanshui Town, Jinwan District,Zhuhai,China.
Contact Person
Wentworth Luo