APET Film UV Bridging Agent UVP-06A
Zero VOC emissions and a water-based formulation: The water-based plastic replacement oil uses water as its solvent, resulting in nearly zero volatile organic compound (VOC) emissions during both production and use. It complies with the EU RoHS and REACH standards as well as the U.S. ASTM F963 heavy metal content regulations, completely addressing the air pollution and occupational health risks caused by the volatilization of organic solvents in traditional oil-based coating processes.
ET Film Aqueous Bridging Agent SX-03
Zero VOC emissions and a water-based formulation: The water-based plastic replacement oil uses water as its solvent, resulting in nearly zero volatile organic compound (VOC) emissions during both production and use. It complies with the EU RoHS and REACH standards as well as the U.S. ASTM F963 heavy metal content regulations, completely addressing the air pollution and occupational health risks caused by the volatilization of organic solvents in traditional oil-based coating processes.
Zero VOC emissions and a water-based formulation: The water-based plastic replacement coating uses water as the solvent, resulting in nearly zero volatile organic compound (VOC) emissions during both production and use. It complies with the EU RoHS and REACH standards as well as the U.S. ASTM F963 heavy metal content regulations, completely addressing the air pollution and occupational health risks caused by the volatilization of organic solvents in traditional oil-based coating processes.
PP Film Aqueous Bridging Agent SX-12
Zero VOC emissions and a water-based formulation: The water-based plastic replacement oil uses water as its solvent, resulting in nearly zero volatile organic compound (VOC) emissions during both production and use. It complies with the EU RoHS and REACH standards as well as the U.S. ASTM F963 heavy metal content regulations, completely addressing the air pollution and occupational health risks caused by the volatilization of organic solvents in traditional oil-based coating processes.
Water-based skin-feel oil SX-180
Zero VOC emissions and a water-based formulation: The water-based plastic replacement oil uses water as its solvent, resulting in nearly zero volatile organic compound (VOC) emissions during both production and use. It complies with the EU RoHS and REACH standards as well as the U.S. ASTM F963 heavy metal content regulations, completely addressing the air pollution and occupational health risks caused by the volatilization of organic solvents in traditional oil-based coating processes.
Water-based anti-scratch matte oil SX-181
Zero VOC emissions and a water-based formulation: The water-based plastic replacement oil uses water as its solvent, resulting in near-zero volatile organic compound (VOC) emissions during both production and use. It complies with the EU RoHS and REACH standards as well as the U.S. ASTM F963 heavy metal content regulations, completely addressing the air pollution and occupational health risks caused by the volatilization of organic solvents in traditional oil-based coating processes.
UV Scratch-Resistant Coating UVP-620
Zero VOC emissions and a water-based formulation: The water-based plastic replacement oil uses water as its solvent, resulting in nearly zero volatile organic compound (VOC) emissions during both production and use. It complies with the EU RoHS and REACH standards as well as the U.S. ASTM F963 heavy metal content regulations, completely addressing the air pollution and occupational health risks caused by the volatilization of organic solvents in traditional oil-based coating processes.
UV Scratch-Resistant Matte Oil UVP-625
Zero VOC emissions and a water-based formulation: The water-based plastic replacement oil uses water as its solvent, resulting in nearly zero volatile organic compound (VOC) emissions during both production and use. It complies with the EU RoHS and REACH standards as well as the U.S. ASTM F963 heavy metal content regulations, completely addressing the air pollution and occupational health risks caused by the volatilization of organic solvents in traditional oil-based coating processes.
Coating Photoresist Oil UVP-306B
Zero VOC emissions and a water-based formulation: The water-based plastic replacement oil uses water as its solvent, resulting in nearly zero volatile organic compound (VOC) emissions during both production and use. It complies with the EU RoHS and REACH standards as well as the U.S. ASTM F963 heavy metal content regulations, completely addressing the air pollution and occupational health risks caused by the volatilization of organic solvents in traditional oil-based coating processes.
UVP-306 Series of UV Photolithography Resin for Blister Packaging
Zero VOC emissions and a water-based formulation: The water-based plastic replacement oil uses water as its solvent, resulting in nearly zero volatile organic compound (VOC) emissions during both production and use. It complies with the EU RoHS and REACH standards as well as the U.S. ASTM F963 heavy metal content regulations, completely addressing the air pollution and occupational health risks caused by the volatilization of organic solvents in traditional oil-based coating processes.
Zero VOC emissions and a water-based formulation: The water-based plastic replacement oil uses water as its solvent, resulting in nearly zero volatile organic compound (VOC) emissions during both production and use. It complies with the EU RoHS and REACH standards as well as the U.S. ASTM F963 heavy metal content regulations, completely addressing the air pollution and occupational health risks caused by the volatilization of organic solvents in traditional oil-based coating processes.
Zero VOC emissions and a water-based formulation: The water-based plastic replacement oil uses water as its solvent, resulting in nearly zero volatile organic compound (VOC) emissions during both production and use. It complies with the EU RoHS and REACH standards as well as the U.S. ASTM F963 heavy metal content regulations, completely addressing the air pollution and occupational health risks caused by the volatilization of organic solvents in traditional oil-based coating processes.