Physical Properties | Metric | English | Comments |
---|---|---|---|
Linear Mold Shrinkage, Flow | 0.0060 - 0.0095 cm/cm @Thickness 3.20 mm |
0.0060 - 0.0095 in/in @Thickness 0.126 in |
SABIC Method |
SABIC Innovative Plastics Lexan® XHT4141 PC Copolymer XHT4141 is a high flow, high heat polycarbonate copolymer. It is available in a range of opaque and limited transparent colors. |
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Linear Mold Shrinkage, Flow | 0.0060 - 0.0095 cm/cm @Thickness 3.20 mm |
0.0060 - 0.0095 in/in @Thickness 0.126 in |
SABIC Method |
SABIC Innovative Plastics Lexan® XHT4141 PC Copolymer (Europe-Africa-Middle East) XHT4141 is a high flow, high heat polycarbonate copolymer. It is available in a range of opaque and limited transparent colors. |
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Linear Mold Shrinkage, Flow | 0.0060 - 0.0095 cm/cm @Thickness 3.20 mm |
0.0060 - 0.0095 in/in @Thickness 0.126 in |
SABIC Method |
SABIC Innovative Plastics Lexan® XHT4143 PC Copolymer XHT4143 is a high flow, UV stabilized, high heat polycarbonate copolymer blend with an HDT/Af of 162C. It is available in a range of opaque and limited transparent colors. |
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Linear Mold Shrinkage, Flow | 0.0060 - 0.0095 cm/cm @Thickness 3.20 mm |
0.0060 - 0.0095 in/in @Thickness 0.126 in |
SABIC Method |
SABIC Innovative Plastics Lexan® XHT4143 PC Copolymer (Asia Pacific) XHT4143 is a high flow, UV stabilized, high heat polycarbonate copolymer blend with an HDT/Af of 162C. It is available in a range of opaque and limited transparent colors. |
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Linear Mold Shrinkage, Flow | 0.0060 - 0.0095 cm/cm @Thickness 3.20 mm |
0.0060 - 0.0095 in/in @Thickness 0.126 in |
SABIC Method |
SABIC Innovative Plastics Lexan® XHT4143T PC Copolymer (Asia Pacific) XHT4143 is a high flow, UV stabilized, high heat polycarbonate copolymer blend with an HDT/Af of 162C. |
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Linear Mold Shrinkage, Flow | 0.0060 - 0.0095 cm/cm @Thickness 3.20 mm |
0.0060 - 0.0095 in/in @Thickness 0.126 in |
SABIC Method |
SABIC Innovative Plastics Lexan® XHT4141 PC Copolymer (Asia Pacific) XHT4141 is a high flow, high heat polycarbonate copolymer. It is available in a range of opaque and limited transparent colors. |
|||
Linear Mold Shrinkage, Flow | 0.0060 - 0.0095 cm/cm @Thickness 3.20 mm |
0.0060 - 0.0095 in/in @Thickness 0.126 in |
SABIC Method |
SABIC Innovative Plastics Lexan® XHT4143 PC Copolymer (Europe-Africa-Middle East) XHT4143 is a high flow, UV stabilized, high heat polycarbonate copolymer blend with an HDT/Af of 162C. It is available in a range of opaque and limited transparent colors. |
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Linear Mold Shrinkage, Flow | 0.0075 - 0.0095 cm/cm | 0.0075 - 0.0095 in/in | |
LATI Latene® 7H2W T-V0E PP Homopolymer, Mineral Reinforced, Heat Stabilized, Flame Retardant Polypropylene homopolymer (PPh) based compound. Heat stabilized. Metal stabilized. Mineral filler. UL94 V-0 classified, with brominated flame retardants, PBB/PBDE free. Availability: Africa & Middle.. |
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Linear Mold Shrinkage, Flow | 0.0075 - 0.0095 cm/cm | 0.0075 - 0.0095 in/in | |
LATI Lapex A PES Polyether Sulfone (PES). Unfilled. Low smoke density and low toxicity index. Very high dimensional stability.Availability: Africa & Middle East; Asia Pacific; Europe; Latin America; North AmericaInf.. |
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Linear Mold Shrinkage, Flow | 0.0075 - 0.0095 cm/cm | 0.0075 - 0.0095 in/in | |
LATI Latigray 82-02 CX/80 PA 12 Radiopaque compound based on Polyamide 12 (PA12). Special mineral filler. Availability: Africa & Middle East; Asia Pacific; Europe; Latin America; North AmericaInformation provided by Lati Industria.. |
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Linear Mold Shrinkage, Flow | 0.0060 - 0.0095 cm/cm | 0.0060 - 0.0095 in/in | ASTM D955 |
Styron EMERGEâ„¢ 9500CR Polycarbonate (PC) / Polyethylene Terephthalate (PET) Overview: EMERGEâ„¢ PC/PET 9500 CR advanced resin is a polycarbonate blend with excellent chemical resistance and ignition resistance properties. This grade was designed for use in medical equipm.. |
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Linear Mold Shrinkage, Flow | 0.0085 - 0.0095 cm/cm | 0.0085 - 0.0095 in/in | ISO DIS 294-4 |
Wellman Wellamid® GF10-66/6-LI6-NBK4 10% Glass Reinforced, Toughened Nylon 66/6 Description: Glass Reinforced, Toughened Nylon 66/6Information provided by Wellman. |