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The material selection platform
Plastics & Elastomers
The material selection platform
Plastics & Elastomers
by SpecialChem
 
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18 products match your search
Product Name
Supplier
Description
LNP™ THERMOCOMP™ Compound 9X11428J by SABIC is a compound based on PFAS-free, unfilled, low extractable, polyphenyl sulfone (PPSU) resin containing proprietary fillers. Provides x-ray and metal detection. It can be... view more
Features
  • Extractables Low
  • Food Contact Acceptable
  • Metal Detectable
  • Unfilled
LNP™ THERMOCOMP™ Compound AF004L by SABIC is acrylonitrile butadiene styrene (ABS) resin filled with 20% glass fiber. Provides low extractables and high stiffness & strength. It is suitable for processing by... view more
Features
  • Extractables Low
  • Filled Glass Fiber
  • Food Contact Acceptable
  • Stiffness High
  • ...
LNP™ THERMOCOMP™ Compound DF006HL by SABIC is a compound based on PFAS-free, low extractable polycarbonate resin reinforced with 30% glass fiber. It is suitable for processing by injection molding. It offers high... view more
Features
  • Extractables Low
  • Filled Glass Fiber
  • Food Contact Acceptable
  • Stiffness High
  • ...
LNP™ THERMOCOMP™ Compound GX94043L by SABIC is a compound based on PFAS-free, low extractable, polysulfone (PSU) grade reinforced with mineral. It offers high heat resistance. It can be processed by injection molding... view more
Features
  • Extractables Low
  • Filled Mineral
  • Food Contact Acceptable
  • Heat Resistance High
  • ...
LNP™ THERMOCOMP™ Compound IF006L by SABIC is a PFAS-free, low extractable polyamide 6-12 (nylon 6-12) reinforced with 30% glass fiber. It exhibits good high stiffness & strength. LNP™ THERMOCOMP™ Compound IF006L can be processed by... view more
Features
  • Extractables Low
  • Filled Glass Fiber
  • Food Contact Acceptable
  • Stiffness High
  • ...
LNP™ THERMOCOMP™ Compound JF004L by SABIC is a compound based on PFAS-free, low extractable, polyethersulfone (PES) resin reinforced with 20% glass fiber. It exhibits high stiffness & strength and temperature... view more
Features
  • Extractables Low
  • Filled Glass Fiber
  • Food Contact Acceptable
  • Heat Resistance High
  • ...
LNP™ THERMOCOMP™ Compound KF002L by SABIC is a compound based on PFAS-free, low extractable, food contact acceptable acetal (POM) copolymer resin reinforced with 10% glass fiber. It offers high stiffness & strength... view more
Features
  • Copolymer
  • Extractables Low
  • Filled Glass Fiber
  • Food Contact Acceptable
  • ...
LNP™ THERMOCOMP™ Compound KF004AL by SABIC is a low extractable acetal (POM) homopolymer reinforced with 20% glass fiber. It exhibits high impact resistance, high stiffness and high modulus. It is... view more
Features
  • Extractables Low
  • Filled Glass Fiber
  • Food Contact Acceptable
  • Homopolymer
  • ...
LNP™ THERMOCOMP™ Compound MFB22EXJ by SABIC is based on polypropylene (PP) resin containing 10% glass fiber and glass bead. This food contact acceptable grade exhibits easy molding & mold release... view more
Features
  • Dimensional stability Good
  • Electromagnetic Shielding EMI
  • Extractables Low
  • Filled Glass Bead
  • ...
LNP™ THERMOCOMP™ Compound MFB71L by SABIC is a 35% glass bead and 5% glass fiber reinforced polypropylene grade. It shows low extractables, good dimensional stability, low warpage & good mold... view more
Features
  • Dimensional stability Good
  • Extractables Low
  • Filled Glass Bead
  • Filled Glass Fiber
  • ...
LNP™ THERMOCOMP™ Compound MX06402H by SABIC is a compound based on PFAS-free, heat stabilized, low extractable polypropylene (PP) resin, that is filled with 20% glass fiber. It offers high stiffness & strength. It is... view more
Features
  • Extractables Low
  • Filled Glass Fiber
  • Food Contact Acceptable
  • Heat stabilized
  • ...
LNP™ THERMOCOMP™ Compound RF006L by SABIC is based on nylon 6/6 resin containing 30% glass fiber. This food contact acceptable grade exhibits low extractables, high stiffness and mold release... view more
Features
  • Extractables Low
  • Filled Glass Fiber
  • Food Contact Acceptable
  • Impact resistance High
  • ...
LNP™ THERMOCOMP™ Compound RF006LXP (Americas) by SABIC is a compound based on PFAS-free, low extractable, nylon 6/6 resin that is filled with 30% glass fiber. It exhibits high stiffness & strength. It can be processed by... view more
Features
  • Extractables Low
  • Filled Glass Fiber
  • Food Contact Acceptable
  • Stiffness High
  • ...
LNP™ THERMOCOMP™ Compound RF006LXP (Asia) by SABIC is a compound based on PFAS-free, low extractable, nylon 6/6 resin that is filled with 30% glass fiber. It exhibits high stiffness & strength. It can be processed by... view more
Features
  • Extractables Low
  • Filled Glass Fiber
  • Food Contact Acceptable
  • Stiffness High
  • ...
LNP™ THERMOCOMP™ Compound RF006XXJ by SABIC is a compound based on PFAS-free, low extractable, nylon 6/6 resin that is filled with 30% glass fiber. It exhibits high stiffness & strength. This grade is processed by... view more
Features
  • Extractables Low
  • Filled Glass Fiber
  • Food Contact Acceptable
  • Stiffness High
  • ...
LNP™ THERMOCOMP™ Compound WF006XXB by SABIC is a compound based on PFAS-free, polybutylene terephthalate (PBT) resin that contains 30% glass fiber. It offers medium flow, high stiffness & strength and low extractables... view more
Features
  • Biocompatible
  • Extractables Low
  • Filled Glass Fiber
  • Flow Medium
  • ...
LNP™ THERMOCOMP™ Compound WF006XXL by SABIC is based on polybutylene terephthalate (PBT) resin containing 30% glass fiber. It exhibits good mold release properties, high stiffness and low... view more
Features
  • Extractables Low
  • Filled Glass Fiber
  • Food Contact Acceptable
  • Heat stabilized
  • ...
LNP™ THERMOCOMP™ Compound DX06409 by SABIC is a compound based on PFAS-free, low extractable, 10% glass fiber filled, polycarbonate resin. It shows good processability, easy molding, mold release, enhanced mold... view more
Features
  • Extractables Low
  • Filled Glass Fiber
  • Food Contact Acceptable
  • Mold Release Good
  • ...
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