Mechanical Properties | Metric | English | Comments |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | Type I, 50 mm/min; ASTM D638 |
SABIC Innovative Plastics Cycoloy® CY6120 PC+ABS (Asia Pacific) Non-chlorinated and non-brominated flame retardant PC/ABS featuring good flow and impact properties. UL-94 V0 listed at 1.2mm intended for various thin wall applications. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | Type I, 50 mm/min; ASTM D 638 |
SABIC Innovative Plastics Cycoloy® EFX810ME PC Modified PC blend offering metallic / sparkle look with minimal flowline visibility.This data was supplied by SABIC-IP for the Americas region. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | Type I, 50 mm/min; ASTM D 638 |
SABIC Innovative Plastics Cycoloy® EFX810ME PC (Asia Pacific) Modified PC blend offering metallic look with minimal flowline visibility.This data was supplied by SABIC-IP for the Asia Pacific region. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | 50 mm/min; ISO 527 |
SABIC Innovative Plastics Lexan® 4251R PPC+PC High heat polycarbonate copolymer blend with an excellent balance of heat resistance, processability, and impact strength. Available in a range of opaque colors. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | Type I, 50 mm/min; ASTM D638 |
SABIC Innovative Plastics Lexan® 9931X PC (Europe-Africa-Middle East) Lexan* 9931X is a UV stabilized high flow opaque injection molding (IM) grade. This resin offers UL94 V0 @ 1.5mm flame retardancy based on non-bromine, non-chlorine FR systems, extreme low temperatu.. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | Type I, 50 mm/min; ASTM D638 |
SABIC Innovative Plastics Lexan® EXL9134 PC Copolymer Lexan* EXL9134 polycarbonate (PC) siloxane copolymer resin is a UV stabilized high flow opaque injection molding (IM) grade. This resin offers UL94 V0 @ 1.5mm flame retardancy based on non-bromine, .. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | ISO 527-1/2 |
PTS POM-25 Acetal Copolymer Information provided by PTS LLC. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | Type I, 50 mm/min; ASTM D 638 |
SABIC Innovative Plastics Lexan® FXD1433T PC Copolymer Clear PC-siloxane copolymer with excellent processability in special light diffusion colors. Medium flow, UV stabilized. Improved toughness compared to standard PC in same color. Color package may .. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | 50 mm/min; ISO 527 |
SABIC Innovative Plastics Lexan® HFD1262 PC Copolymer (Asia Pacific) 19 MFR LEXAN High Flow Ductile Copolymerwith 400 nm cut off, available in transparent colors only |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | 5 mm/min; ISO 527 |
SABIC Innovative Plastics Lexan® HFD4211 PC Lexan* HFD4211 is a 10% glass filled, injection moldable grade designed for high flow and superior surface appearance. Internal mold release. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | ISO 527 |
SABIC Innovative Plastics LNP COLORCOMP D1000P PC LNP* COLORCOMP* D1000P is an unfilled Polycarbonate. Added feature of this grade is: Exceptional Processing. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | ISO 527 |
SABIC Innovative Plastics LNP COLORCOMP D1000P PC (Asia Pacific) LNP* Colorcomp* D1000P is a compound based on Polycarbonate resin containing Unfilled Custom Color. Added features of this material include: Exceptional Processing. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | 5 mm/min; ISO 527 |
SABIC Innovative Plastics LNP KONDUIT PX08321 PA 6 (Europe-Africa-Middle East) Thermally conductive mineral filled PA6 compound |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | 50 mm/min; ISO 527 |
SABIC Innovative Plastics Lexan® 143X PC Copolymer (Asia Pacific) Improved flow PC with excellent processability and mold release. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | 50 mm/min; ISO 527 |
SABIC Innovative Plastics Lexan® HFD1262 PC Copolymer 19 MFR LEXAN High Flow Ductile Copolymerwith 400 nm cut off, available in transparent colors only |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | ASTM D638 |
LG Chemical LUCEL EC-605B Electrically Conductive POM, 5% Carbon Black Filled LUCEL semi-crystalline acetal copolymer resins are produced by gas phase polymerization. LUCEL resins can be widely accepted as the replacement of thermosets, aluminum and zinc die-casts or other m.. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | 5 mm/min; ISO 527 |
SABIC Innovative Plastics LNP Lubricomp PL004 PA 6 LNP* Lubricomp* PL004 is a compound based on Nylon 6 containing PTFE Lubricant. Characteristics of this grade are Internally Lubricated.This data was supplied by SABIC-IP for the Americas region. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | ISO 527 |
SABIC Innovative Plastics LNP LUBRILOY K2000XXH Acetal LNP LUBRILOY* K2000XXH is a compound based on Acetal resin containing Proprietary Lubricant. Added features of this material are: Wear Resistant, Healthcare. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | ISO 527 |
SABIC Innovative Plastics LNP STAT-KON DX00887C PC LNP STAT-KON* DX00887C is a compound based on Polycarbonate resin containing Proprietary Filler(s). Added features of this material include: Clean Compounding System, Electrically Conductive. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | 50 mm/min; ISO 527 |
SABIC Innovative Plastics XYLEX X7507 PC+POLYESTER F-1 weathering certified in natural color, specially designed for Pool & Spa applications. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | ASTM D638 |
SABIC Innovative Plastics LNP THERMOCOMP 9X04488 POLYPHENYLENESULFONE (Asia Pacific) LNP* Thermocomp* 9X04488 is a compound based on POLYPHENYLENESULFONE resin containing Mineral. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | ISO 527 |
SABIC Innovative Plastics LNP THERMOCOMP 2C004 ETFE LNP* THERMOCOMP* 2C004 is a compound based on ETFE resin containing 20% Carbon Fiber. Added features of this material include: Electrically Conductive. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | Type I, 5 mm/min; ASTM D638 |
SABIC Innovative Plastics LNP THERMOCOMP MF003AS PP LNP* THERMOCOMP* MF003AS is a compound based on Polypropylene containing 15% Glass Fiber. Characteristics of this grade are: Heat Stabilized. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | ISO 527-2/50 |
Styron CALIBREâ„¢ 893-10 Polycarbonate Resin Overview: CALIBREâ„¢ 893-10 Series provides superior ignition resistance in opaque applications. The CALIBRE 891-10 series products are available in 2 additive packages: CALIBRE 891: Mold release.. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | ASTM D638 |
A. Schulman POLYFLAM™ E-14526-31 30% Glass Reinforced Chemically Coupled Polypropylene DescriptionPolyfort® E-14526-31 is a 30% glass reinforced chemically coupled polypropylene black. Information provided by A. Schulman. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | ASTM D638 |
A. Schulman POLYFLAM™ E-14526-31 30% Glass Reinforced Chemically Coupled Polypropylene DescriptionPolyfort® E-14526-31 is a 30% glass reinforced chemically coupled polypropylene black. Information provided by A. Schulman. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | chs 2.0 in/min; ASTM D638 |
Diamond Polymers PC-1212FRO Natural, Flame Retardant Polycarbonate Information Provided by Diamond Polymers, Inc. & Network Polymers, Inc. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | 50 mm/min; ISO 527 |
SABIC Innovative Plastics Lexan® 123X PC Copolymer (Asia Pacific) Improved flow PC with excellent processability and mold release. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | Type I, 50 mm/min; ASTM D 638 |
SABIC Innovative Plastics Lexan® FXE1434T PC Copolymer (Europe-Africa-Middle East) Lexan* EXL1434T polycarbonate (PC) siloxane copolymer resin is a UV stabilized transparent injection molding grade. This resin offers extreme low temperature (-40 C) ductility in combination with me.. |
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Tensile Strength at Break | 59.0 MPa | 8560 psi | ASTM D638 |
A. Schulman POLYFLAM™ E-14526-31 30% Glass Reinforced Chemically Coupled Polypropylene DescriptionPolyfort® E-14526-31 is a 30% glass reinforced chemically coupled polypropylene black. Information provided by A. Schulman. |