High-Performance Inorganic Flame Retardant Synergist: Cost-Effective ATO Alternative from a Trusted China Manufacturer

Discover a superior inorganic flame retardant synergist designed to replace a portion of Antimony Trioxide (ATO) in your polymer applications. Our advanced synergist offers significant cost savings and enhanced flame retardancy, providing a reliable and efficient solution for manufacturers worldwide.

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Key Advantages of Our Flame Retardant Synergist

Significant Cost Savings

Our inorganic flame retardant synergist allows you to replace 30-50% of Antimony Trioxide, making it a highly cost-effective solution for your formulations. We are your go-to supplier for budget-friendly, high-quality chemical auxiliaries.

Superior Technical Performance

Experience enhanced flame retardancy meeting UL94-V0 standards, reduced smoke emission, and shorter injection molding times. This synergist also contributes to an improved heat distortion temperature, a crucial factor for many industrial applications.

Optimized Material Properties

With its large specific surface area and small particle size, this synergist integrates seamlessly into various resins with minimal adverse effects on the product's mechanical strength, ensuring high-quality end products.

Versatile Applications in Polymer Industries

PVC Formulations

Enhance the flame retardancy and safety of PVC products with our ATO-alternative synergist. Buy in bulk from a reliable manufacturer.

Polyolefins (PE, PP)

Improve the fire safety performance of polyethylene and polypropylene without compromising their physical integrity. Request a quote today.

Engineering Plastics (PA, PBT, ABS)

Our synergist is ideal for demanding applications in polyamides, PBT, and ABS, offering essential flame retardant properties. We are a leading supplier in China.

Halogen-Free Systems

This inorganic flame retardant synergist is an excellent choice for halogen-free flame retardant systems, offering environmental and performance benefits. Purchase directly from the source.