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Reinforced and toughened

Adding glass fibers, carbon fibers, mineral powders, and nanofillers to plastics enhances strength and rigidity, and improves fatigue resistance and creep resistance.

Flame-retardant

Incorporating flame retardants such as halogen-based, phosphorus-based, nitrogen-based, silicon-based compounds, and expandable graphite can effectively reduce the flammability of plastics, minimize smoke and toxic gas emissions, and help prevent secondary injuries.

Conductive and insulating

By adding carbon black, carbon nanotubes, graphene, conductive fibers, metal powders, or applying surface coatings to plastics, their volume resistivity can be reduced to 10²–10⁶ Ω·cm, meeting antistatic or conductive requirements.

Weather-resistant

By adding antioxidants, UV absorbers, light stabilizers, carbon black, and fluorosilicone additives to plastics, fading, chalking, and cracking caused by prolonged sun exposure can be prevented, helping to maintain surface gloss and vibrant color.

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Mechanical Property Modification

Reinforcement and toughening are the two most fundamental and commonly used approaches in plastic modification. By enhancing and toughening plastics, their mechanical properties can be improved, including increased strength, rigidity, and dimensional stability, as well as better impact toughness.

Thermal Property Modification

Through thermal performance modification, plastics can remain stable and reliable even in high-temperature environments, widely meeting the stringent requirements of the electronics, automotive, and home appliance sectors.

Electrical Property Modification

Through electrical performance modification, plastics can serve both as highly insulating safety barriers and as efficient conductive materials, fully meeting the diverse needs of the electronics, electrical, and communications sectors.

Chemical Property Modification

Through chemical and environmental performance modification, plastics can resist chemical corrosion, UV aging, and harsh weather conditions, ensuring long-term stability and meeting the stringent requirements of outdoor, chemical, and long-duration applications.

Processability Modification

Through processing performance modification, plastics gain improved flowability, easier molding, and more stable quality, providing reliable support for efficient production and the manufacturing of complex products.

Appearance and Functionalization Modification

Through appearance and functional modification, plastics can exhibit rich colors and textures while incorporating diverse features such as scratch resistance, self-cleaning, and antibacterial properties, achieving a perfect balance of aesthetics and practicality.