Innovative solutions for injection molding & sheet PC: sulfonate-based, non-sulfonate halogen-free, and silicone-based retardants. Enhanced fire resistance, eco-friendly compliance, superior thermal stability. Ideal for electronics, automotive, and construction industries. Customizable, UL-certified, and globally compliant.
Eco-Friendly Chemical Design
Free from fluorine, phosphorus, and chlorine, this flame retardant operates through a non-toxic, halogen-free mechanism. It minimizes environmental harm while complying with strict global safety regulations.
Efficient Synergistic Action
At an ultra-low dosage (0.15%), the powder leverages advanced synergistic agents to interrupt combustion cycles. It suppresses free radicals during pyrolysis, cutting off fuel sources for flames without overloading the polymer matrix.
Thermal Shielding & Char Formation
When exposed to heat, the powder decomposes to form a dense, thermally stable char layer (TGA decomposition at 480°C). This barrier insulates the PC substrate, slowing heat transfer and oxygen diffusion to halt flame spread.
Minimal Impact on Material Integrity
Its nano-scale dispersion ensures uniform integration within the PC matrix, preserving over 95% of original mechanical strength and limiting haze increase to ≤1 unit. This maintains clarity and structural performance in transparent applications.
PC material itself has a certain degree of flammability. After adding flame retardants, it can greatly reduce its danger in fire, reduce casualties and property losses when a fire occurs, and is widely used in electronic appliances, construction, automobiles and other fields with high requirements for fire safety.
As mentioned earlier, PC flame retardants can improve flame retardancy while better maintaining the original excellent properties of PC materials, such as high strength, high toughness, good electrical insulation, transparency, etc., so that PC materials can meet the specific requirements of various application scenarios while having fire resistance.
The addition of flame retardants will not bring too much difficulty to the processing of PC materials. It can be molded using similar processing techniques and equipment as ordinary PC materials, such as injection molding, extrusion, blow molding, etc., which is conducive to improving production efficiency and reducing production costs.
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