A low addition ratio can achieve UL94 V-0 certification. Heat-resistant, drip-proof, and long-lasting flame retardant. Maintains the integrity and processing performance of ABS, suitable for electronic/automotive safety parts.
Flame retardant mechanism triggering
When ABS material is exposed to high temperature or open flame, the active ingredients in the flame retardant powder (such as compounds containing phosphorus, nitrogen, bromine, etc.) are quickly activated, inhibiting the combustion process through chemical or physical effects.
Gas phase flame retardant effect
Release of flame retardant gas: Flame retardants release non-flammable gases (such as nitrogen, water vapor, carbon dioxide) after thermal decomposition, diluting the concentration of combustible gases on the surface of the material, reducing oxygen contact, and interrupting the combustion chain reaction.
Heat insulation protection: The carbon layer reflects or absorbs heat at the same time, reducing the possibility of further decomposition of the material.
Synergistic flame retardant effect
Some flame retardant systems (such as phosphorus-nitrogen, bromine-antimony synergy) improve flame retardant efficiency through the interaction of different components, such as enhancing carbonization ability or improving free radical capture efficiency.
UL94 V-0/RoHS certified. Meets global sustainability regulations and high-end safety standards in the electronics/automotive industry.
Rapid carbonization technology isolates heat/oxygen, inhibits dripping, and ensures structural stability under extreme conditions with a long-lasting flame retardant effect.
Uniform dispersion maintains the strength/surface quality of ABS, supports injection molding/extrusion processes, and improves the production efficiency of precision parts without post-processing.
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