Introduction to the Eight Most Common Biobased PA610 Engineering Plastics_News Center Co., Ltd._Dongguan Yanmei New Materials Technology Co., Ltd. 
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Home > News Center Co., Ltd. > Introduction to the Eight Most Common Biobased PA610 Engineering Plastics
News Center Co., Ltd.
Introduction to the Eight Most Common Biobased PA610 Engineering Plastics
Publish Time:2023-06-09        View Count:24        Return to List

Introduction to the Eight Common Biobased PA610 Engineering Plastics


Magnetically Modified Engineering Thermoplastics

Composite magnetic plastics are materials obtained by mixing magnetic powder with plastic as the binder and appropriate additives. They are widely used in various fields such as electronics, electrical, instruments, communication, education, and daily life, with their production and demand continuously increasing, indicating great potential for development.


Antimicrobial Modified Engineering Plastics:

Antibacterial modified engineering plastics are a type of plastic that inherently inhibits or kills bacteria, mold, yeast, algae, and even viruses that contaminate the plastic in use, maintaining cleanliness by suppressing the proliferation of microorganisms. Currently, antibacterial plastics are primarily obtained by adding a small amount of antibacterial agents to the base plastic matrix.


Thermal Conductive Modified Engineering Plastics:

Thermal conductive plastics utilize thermal conductive fillers, including particles, fibers, and lamellae, to uniformly fill high polymer matrix materials, thereby enhancing their thermal conductivity. The quality of thermal conductivity is primarily measured by the thermal conductivity coefficient [unit: W/(m·k)]. Currently, thermal conductive plastics are widely used in the LED industry. Additionally, they are applied in pipes, heat exchangers, automobiles, and heating/cooling/refrigeration systems.


Paintless Modified Engineering Plastic

Non-paint plastic is achieved by adding special pearl powder or metallic pigments to specific resins and modifying them with special compatibility technology. This allows for direct injection molding to achieve various pearl, shimmering, or metallic finishes. It successfully resolves the long-standing issue of melt lines or flow marks that occur during injection molding of special color effects. It meets the market trends of shimmering texture, low consumption, and environmentally friendly energy saving. By offering customized appearance color design, it provides consumers with a pleasant visual experience and ensures safety and environmental protection.

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