Mechanical Properties | Metric | English | Comments |
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Tensile Strength at Break | <= 73.0 MPa | <= 10600 psi | ISO/R527 |
Polykemi AB POLYshine PBT D234 GF30 FR PBT, Glass-Fiber Reinforced, Flame Retardant Information provided by Polykemi AB |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | Type I, 50 mm/min; ASTM D638 |
SABIC Innovative Plastics Lexan® FST9705 PC Copolymer High viscosity Proprietary Polycarbonate Ester, OSU 55/55 compliant, low smoke, flame retardant resin |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | Type I, 50 mm/min; ASTM D638 |
SABIC Innovative Plastics Lexan® FST9705 PC Copolymer (Asia Pacific) High visocisty PC Copolymer, OSU 55/55 compliant, low smoke, flame retardant resin |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | Type I, 50 mm/min; ASTM D638 |
SABIC Innovative Plastics Lexan® FST9705 PC Copolymer (Europe-Africa-Middle East) High viscosity PC Copolymer, OSU 55/55 compliant, low smoke, flame retardant resin |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | 50 mm/min; ISO 527 |
SABIC Innovative Plastics Lexan® HFD1014 PC Copolymer (Asia Pacific) 7 MFR LEXAN HFD Copolymer |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | 50 mm/min; ISO 527 |
SABIC Innovative Plastics Lexan® HPS4 PC Medium flow polycarbonate. For medical devices and pharmaceutical applications. Healthcare management of change, biocompatible (ISO10993 or USP Class VI).EtO, steam, e-beam, and gamma sterilizable... |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | 50 mm/min; ISO 527 |
SABIC Innovative Plastics Lexan® HPS4 PC (Europe-Africa-Middle East) Medium flow polycarbonate. For medical devices and pharmaceutical applications. Healthcare management of change, biocompatible (ISO10993 or USP Class VI).EtO, steam, e-beam, and gamma sterilizable... |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | Type I, 50 mm/min; ASTM D 638 |
SABIC Innovative Plastics Lexan® ML6430 PC Copolymer (Asia Pacific) Medium viscosity PC copolymer blend with enhanced UV stabilization and added release agent. V2 rated. Available in transparent and tinted colorsThis data was supplied by SABIC-IP for the Asia Pacifi.. |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | ASTM D638 |
SABIC Innovative Plastics LNP LUBRICOMP DFL32 PC LNP LUBRICOMP* DFL32 is a compound based on Polycarbonate resin containing 10% Glass Fiber and 15% PTFE. Added features of this material include: Internally Lubricated. |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | ASTM D638 |
SABIC Innovative Plastics LNP LUBRICOMP DFL32XXC PC LNP LUBRICOMP* DFL32XXC is a compound based on Polycarbonate resin containing 10% Glass Fiber, 15% PTFE. Added features of this material include: Internally Lubricated. |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | 50 mm/min; ISO 527 |
SABIC Innovative Plastics Lexan® EXRL0684 PC Copolymer 7 MFR LEXAN High Flow Ductile CopolymerThis data was supplied by SABIC-IP for the Americas region. |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | Type I, 50 mm/min; ASTM D638 |
SABIC Innovative Plastics Lexan® SLX1431D PC Copolymer (Asia Pacific) Medium viscosity PC copolymer with enhanced UV stabilization and added release agent. Available in diffusion colors. |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | Type I, 50 mm/min; ASTM D 638 |
SABIC Innovative Plastics Lexan® SLX2431D PC Copolymer Medium viscosity PC copolymer blend with enhanced UV stabilization and added release agent. V2 rated. Available in diffusion colors.This data was supplied by SABIC-IP for the Americas region. |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | ASTM D 638 |
SABIC Innovative Plastics LNP Lubricomp EL004 PEI LNP* Lubricomp* EL004 is a compound based on Polyetherimide resin containing PTFE. Added features of this material include: Internally Lubricated.This data was supplied by SABIC-IP for the Americas.. |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | ASTM D 638 |
SABIC Innovative Plastics LNP Lubricomp EL004 PEI (Asia Pacific) LNP* Lubricomp* EL004 is a compound based on Polyetherimide resin containing PTFE. Added features of this material include: Internally Lubricated.This data was supplied by SABIC-IP for the Asia Pac.. |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | 5 mm/min; ISO 527 |
SABIC Innovative Plastics NORYL V02570 PPE+HIPS (Asia Pacific) Noryl* V02570 is a 25% milled fiber reinforced, injection moldable grade. Designed for good dimensional stability and low warpage, this resin also uses non-chlorinated, non-brominated FR additives t.. |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | 5 mm/min; ISO 527 |
SABIC Innovative Plastics NORYL V02570 PPE+HIPS (Europe-Africa-Middle East) Noryl* V02570 is a 25% milled fiber reinforced, injection moldable grade. Designed for good dimensional stability and low warpage, this resin also uses non-chlorinated, non-brominated FR additives t.. |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | 5 mm/min; ISO 527 |
SABIC Innovative Plastics LNP LUBRICOMP LL002 PEEK LNP* LUBRICOMP* LL002 is a compound based on Polyetheretherketone containing 10% PTFE. Added feature of this material is: Wear Resistant. |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | 5 mm/min; ISO 527 |
SABIC Innovative Plastics LNP STAT-KON WSF42 PBT (Europe-Africa-Middle East) LNP*STAT-KON* WSF42 is a compound based on Polybutylene Terephalate resin containing Glass Fiber, Stainless Steel Fiber. Added features include: Electrically Conductive. |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | ASTM D 638 |
SABIC Innovative Plastics LNP Thermocomp MF006ASJ PP LNP THERMOCOMP* MF006ASJ is a compound based on Polypropylene resin containing Glass Fiber. Added features of this material include: Heat Stabilized, Healthcare.This data was supplied by SABIC-IP f.. |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | 0.2 in/min; ASTM Test |
Styrolution Terblend® N NG-04 20% Glass Filled ABS/PA6 (Dry) Terblend N NG-04 is a glass fibre reinforced ABS/PA6 blend with excellent dimensional stability, low mold shrinkage and high heat resistance.Information provided by STYROLUTION, which is a joint ven.. |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | Type I, 50 mm/min; ASTM D638 |
SABIC Innovative Plastics NORYL N300X PPE+PS PPE+PS blend. Unfilled. Non-brominated, non-chlorinated FR system. UL94 V0. High heat. Dielectric strength. Dimensional stability. Suitable for E/E applications. |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | Type I, 50 mm/min; ASTM D638 |
SABIC Innovative Plastics NORYL PKN4752 PPE+PS PPE+PS blend. High Heat. Translucent with yellow tint in natural color. FDA compliant. Extrusion and Injection Molding. Typical applications include High Performance Food Packaging, Electronics and .. |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | Type I, 50 mm/min; ASTM D638 |
SABIC Innovative Plastics NORYL PKN4752 PPE+PS (Asia Pacific) PPE+PS. Translucent. FDA compliant. High heat. Extrusion. Microwavable. Food, electrical/electronic packaging uses. |
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Tensile Strength at Break | 73.1 MPa | 10600 psi | |
Master Bond EP46HT-1 Epoxy For Serviceability Up To 600°F Description: Master Bond EP46HT-1 is a two component epoxy system for high performance structural bonding and sealing suitable for applications where resistance to temperatures from -100°F to +550°.. |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | ASTM D638 |
Unitika UM-8400-20 Characteristics: High dimensional accuracy (circularity and planarity) Large warping resistance Low linear expansion coefficientInformation provided by Unitika Ltd. |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | ISO 527 |
Azoty Tarnow™ TARNOFORM 300 GF6 BK POM 30% glass fiber reinforced injection molding grade, suitable for applications where increased strength and stiffness is required.Information provided by Zakłady Azotowe w Tarnowie-Moscicach S.A... |
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Tensile Strength at Break | 73.0 MPa | 10600 psi | 50 mm/min; ISO 527 |
SABIC Innovative Plastics Lexan® HP4NR PC (Asia Pacific) Medium flow polycarbonate. For medical devices and pharmaceutical applications. Healthcare management of change, biocompatible (ISO10993 or USP Class VI). EtO and steam sterilizable. Contains no m.. |