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WONDERLITE® PC-110U by Chi Mei is a medium viscosity, UV stabilized polycarbonate (PC) resin polymerized using the double hydroxy compounds of BPA (bisphenol-A) and the diphenyl carbonate of carbonate compound with the trans-esterification (melting) method.<br>
<ul style="padding-left: 40px;"><li>It contains no phosgene and chlorinated solvents such as dichloromethane.</li>
<li>It exhibits excellent transparency, high heat resistance, ultra-high impact resistance and dimensional stability.</li>
<li>It can be processed by injection molding method.</li>
<li>It is suitable for outdoor applications and traffic signs.</li>
<li>WONDERLITE® PC-110U complies with FDA, TSCA, RoHS and UL flammability regulations.</li></ul> WONDERLITE® PC-110 by Chi Mei is a general-purpose polycarbonate resin polymerized using the double hydroxy compounds of BPA (bisphenol-A) and the diphenylcarbonates of carbonate compounds with the trans-esterification (melting) method. It contains no phosgene and chlorinated solvents such as dichloromethane. Exhibits excellent transparency, high heat resistance, ultra-high impact resistance and dimensional stability. It can be processed by injection molding. Used in vehicle indicator light casings, mouse, chocolate container boxes and high heel shoes. WONDERLITE® PC-110 complies with FDA, TSCA, RoHS and UL flammability regulations. WONDERLITE® PC-115 by Chi Mei is a low viscosity, general purpose polycarbonate resin polymerized using the double hydroxy compounds of BPA (bisphenol-A) and the diphenylcarbonates of carbonate compounds with the trans-esterification (melting) method. It contains no phosgene and chlorinated solvents such as dichloromethane. Exhibits excellent transparency, high heat resistance, ultra-high impact resistance and dimensional stability. WONDERLITE® PC-115 is suitable for processing by injection molding. Suitable for stationery like external pen tubing, toys and transparent molded products. Complies with FDA, TSCA, RoHS, SVHC and UL 94 V-2 flame rating. WONDERLITE® PC-110V is a flame retardant polycarbonate resin polymerized using the double hydroxy compounds of BPA (bisphenol-A) and the diphenylcarbonates of carbonate compounds with the trans-esterification (melting) method. It contains no phosgene and chlorinated solvents such as dichloromethane. Exhibits excellent transparency, high heat resistance, ultra-high impact resistance and dimensional stability. It can be processed by injection molding. Potential markets include electrical appliances. Complies with FDA, TSCA, RoHS and UL flammability regulations. WONDERLITE® PC-122U is a high flow polycarbonate (PC) grade by Chi Mei. It is polymerized using the double hydroxy compounds of BPA (bisphenol-A) and diphenylcarbonates of carbonate compounds with the trans-esterification (melting) method. It is an UV stabilized grade and contains no phosgene and chlorinated solvents such as dichloromethane. Exhibits excellent transparency, good dimensional stability, high heat-, weather- and ultra-high impact resistance. It can be processed by injection molding. WONDERLITE® PC-122U is suitable for outdoor applications and traffic signs. Complies with FDA, TSCA and RoHS regulations. WONDERLITE® PC-108U is a weathering polycarbonate resin polymerized using the double hydroxy compounds of BPA (bisphenol-A) and the diphenylcarbonates of carbonate compounds with the trans-esterification (melting) method. It contains no phosgene and chlorinated solvents such as dichloromethane. Exhibits excellent transparency, high heat resistance, ultra-high impact resistance and dimensional stability. It can be processed by injection molding and sheet extrusion. Applications include goggles and helmet visors. Complies with FDA, TSCA, RoHS and UL flammability regulations. WONDERLITE® PC-175 is an optical, high flow polycarbonate resin polymerized using the double hydroxy compounds of BPA (bisphenol-A) and the diphenylcarbonates of carbonate compounds with the trans-esterification (melting) method. It contains no phosgene and chlorinated solvents such as dichloromethane. Exhibits excellent transparency, high heat resistance, ultra-high impact resistance and dimensional stability. Suitable for CD/DVDs. Complies with FDA, TSCA, RoHS and UL flammability regulations. WONDERLITE® PC-110L is a chlorine-free polycarbonate grade by Chi Mei. It is polymerized using the double hydroxy compounds of BPA (bisphenol-A) and diphenylcarbonates of carbonate compounds with the trans-esterification method. Exhibits excellent transparency, good dimensional stability, high heat- and excellent impact resistance. WONDERLITE® PC-110L is suitable for automotive headlamps. Complies with FDA, TSCA and RoHS regulations. WONDERLITE® PC-122 by Chi Mei is a general purpose polycarbonate resin polymerized using the double hydroxy compounds of BPA (bisphenol-A) and the diphenylcarbonates of carbonate compounds with the trans-esterification (melting) method.<br>
<ul style="padding-left: 40px;"><li>It contains no phosgene and chlorinated solvents such as dichloromethane.</li>
<li>Exhibits excellent transparency, high heat resistance, ultra-high impact resistance and dimensional stability.</li>
<li>It can be processed by injection molding.</li>
<li>It is suitable for external pen tubing, stationery, toys, water containers, thin wall products and complex transparent molding products.</li>
<li>WONDERLITE® PC-122 complies with TSCA, RoHS and UL flammability regulations.</li><ul> WONDERLITE® PC-115U is a weathering, UV-stabilized polycarbonate resin. It is polymerized using the double hydroxy compounds of BPA (bisphenol-A) and the diphenylcarbonates of carbonate compounds with the trans-esterification (melting) method. It contains no phosgene and chlorinated solvents such as dichloromethane. Exhibits low viscosity, excellent transparency, high heat resistance, ultra-high impact resistance and dimensional stability. It can be processed by injection molding. Suitable for outdoor applications and traffic signs. Complies with FDA, TSCA, RoHS and UL flammability regulations.
WONDERLITE®
Plastics and elastomers supplied by Chi Mei
