Optical-Grade PMMA

Optical-grade PMMA is a high-end category in the PMMA product family, produced using high-purity MMA monomer and continuous bulk polymerization process, with strict control of impurities, yellowing index, and birefringence.

Abrasion-Resistant / Scratch-Resistant PMMA

Abrasion-resistant/scratch-resistant PMMA is produced by applying a hard coat (such as silicon-based, acrylic UV-curable coating, or nano-ceramic coating) on the PMMA substrate surface, or by co-extrusion to form a wear-resistant layer on the PMMA surface. Surface pencil hardness can reach 2H~4H (vs. HB~1H for untreated PMMA), with abrasion resistance improved 5~10×. It is widely used in applications with frequent contact or cleaning, such as electronic touch panels and automotive interiors.

Glass Fiber Reinforced PMMA

Glass fiber reinforced PMMA is produced by incorporating short-cut glass fibers (typically 10%~30% content) into the PMMA matrix. The addition of glass fibers significantly improves tensile strength, flexural modulus, heat resistance, and dimensional stability.

Flame-Retardant Grade PMMA

Flame-retardant grade PMMA incorporates halogen-free flame retardants (organic phosphorus-based, silicon-based, etc.) or reactive flame-retardant monomers to achieve UL94 V-2 to V-0 ratings, with some high-end products reaching 5VA level. This series maintains high light transmittance (≥88%) while meeting fire safety regulations for rail transit, construction, and electrical appliances. It is one of the fastest-growing functional PMMA varieties in recent years.

Heat-Resistant Grade PMMA

Heat-resistant grade PMMA is produced by copolymerizing heat-resistant monomers (such as maleic anhydride MAH, cyclohexyl methacrylate CHMA, etc.) or adding heat-resistant fillers, raising the heat deflection temperature to 105~130°C, with some high-end grades reaching 140°C. This series is specifically developed for transparent components requiring long-term high-temperature resistance, such as automotive headlamp lenses, water heater windows, and HVAC panels.

High Impact PMMA

High impact modified PMMA is produced by blending or graft copolymerizing elastomers (such as butadiene-based rubber, acrylic elastomers, or TPU) into the MMA matrix. Its core objective is to substantially improve impact resistance while maintaining PMMA's excellent transparency. Impact strength can be 3~10 times higher than unmodified PMMA, making it suitable for transparent structural components with safety requirements.

PMMA

General-purpose transparent unmodified PMMA is a basic-grade polymethyl methacrylate produced from methyl methacrylate (MMA) via bulk or suspension polymerization without fillers or modifiers.

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