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    VESTAMID® L2123 BK 9.7507 banner
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    EvonikVESTAMID® L2123 BK 9.7507
    • Polymer Name:Polyamide 12 (PA 12)
    • Processing Methods:Extrusion, Injection Molding, Pipe Extrusion, Tubing Extrusion
    • Additives Included:UV Stabilizer, Processing Aid, Plasticizer (Unspecified), Light Stabilizer, Impact Modifier, Lubricant (Unspecified)
    • Materials Features:Low Coefficient of Friction, Flexible, Oil Resistant, Lubricated, High Viscosity, Unreinforced, Impact Modified, UV Stabilized, Good Light Stability, Good Weather Stability, Electrically Insulating, Fuel Resistant, Good Thermal Stability, Good Impact Strength, Light Stabilized, Very Good Heat Resistance, High Melt Viscosity, Chemical Resistant, Dimensional Stability, Semi Crystalline, Plasticized, Low Temperature Impact Resistance, UV Resistant, Low Moisture Absorption, Impact Resistance
    • Color:Black
    VESTAMID® L2123 BK 9.7507 is a plasticized and high-viscosity polyamide 12 compound designed for the extrusion of flexible tubing and hoses, particularly in the automotive industry. This compound complies with DIN 73 378, Type: PA 12-PHL, for tubing. Thanks to its low moisture absorption, compounds based on PA 12 demonstrate minimal variation in properties with changing humidity. Parts made from this semi-crystalline material exhibit exceptional impact strength, a low coefficient of friction, and good chemical resistance. VESTAMID® L2123 BK 9.7507 features a high melt viscosity, optimized cold temperature impact resistance, and precise dimensional control during pipe extrusion. Supplied as cylindrical granules in moisture-proof bags, they are ready for seamless processing. Choose VESTAMID® L2123 BK 9.7507 for its reliability, high-viscosity performance, and excellent properties in your flexible tubing and hose extrusion applications.
    VESTAMID® X7293 BK 9.7507 banner
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    EvonikVESTAMID® X7293 BK 9.7507
    • Polymer Name:Polyamide 12 (PA 12)
    • Processing Methods:Extrusion, Injection Molding, Pipe Extrusion, Tubing Extrusion, Profile Extrusion
    • Additives Included:Heat Stabilizer, Plasticizer (Unspecified), Light Stabilizer, Impact Modifier, Lubricant (Unspecified)
    • Flexural Modulus:399.62 - 399.62 MPa
    • Materials Features:Low Coefficient of Friction, Flexible, Oil Resistant, Lubricated, High Viscosity, Unreinforced, Impact Modified, Heat Stabilized, Good Light Stability, Good Weather Stability, Electrically Insulating, Fuel Resistant, Good Thermal Stability, Good Impact Strength, Light Stabilized, Very Good Heat Resistance, Chemical Resistant, Easier Processing, Semi Crystalline, Plasticized, Low Temperature Impact Resistance, UV Resistant, Low Moisture Absorption, Impact Resistance
    • Color:Black
    VESTAMID® X7293 BK 9.7507 is a plasticized polyamide 12 compound formulated with heat and light stabilizers for the extrusion of flexible tubing and hoses, particularly suited for automotive applications. This compound conforms to standards such as DIN 73378 (PA 12-HIPHL, Type 1), ISO/DIN 7628-1 (PA 12-HIPEHL, Type 1), and SAE J844. VESTAMID® X7293 BK 9.7507 offers easy processing and high impact strength at low temperatures. Its low moisture absorption ensures minimal variation in properties with changing humidity. Manufactured from this semicrystalline material, parts exhibit exceptional impact strength, a low coefficient of friction, and good chemical resistance. Supplied as cylindrical granules in moisture-proof bags, VESTAMID® X7293 BK 9.7507 is conveniently ready for use. Choose VESTAMID® X7293 BK 9.7507 for its reliability and superior performance in extrusion applications, ensuring excellent results for your automotive tubing and hose needs.
    Fluorosint® 500 PTFE banner
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    Mitsubishi Chemical Group CorporationFluorosint® 500 PTFE
    • Polymer Name:Polytetrafluoroethylene (PTFE)
    • Physical Form:Plates, Rods
    • Features:Good Tribological Properties, Good Mechanical Properties, Good Stability, Wear Resistant, Low Deformation Tendency, High Tolerance, Odorless, High Performance, Excellent Hydrolysis Resistance, Dimensional Stability, Chemical Resistant, Service Life Extension, Non Abrasive, Low Friction
    • Density:2320.0 - 2320.0 kg/m³
    • Tensile Modulus:1750.0 - 1750.0 MPa
    • Color:Tan
    Fluorosint® 500 is an advanced polymer material that combines the excellent chemical resistance, low friction, and high temperature properties of PTFE (polytetrafluoroethylene) with added stability and wear resistance. This material is designed to excel in demanding applications where high performance, reliability, and tight dimensional control are required.Key features:Nine times greater resistance to deformation under load than unfilled PTFE: provides excellent wear and deformation resistanceLow coefficient of linear thermal expansion: approaches the expansion rate of aluminum and is 1/4 that of virgin PTFE, eliminating fit and clearance problems for designersPTFE base: provides excellent chemical resistance, low friction, and high temperature propertiesStock shapes available: allows for easy incorporation into your designs and efficient productionBenefits:High resistance to deformation under load, making it ideal for sealing applications where tight dimensional control is requiredLow coefficient of linear thermal expansion, eliminating fit and clearance problems in high temperature and dynamic environmentsEnhanced performance and durability of your products in high temperature and chemical environmentsImproved reliability and safety in critical applications.Applications:Sealing applications where tight dimensional control is requiredHigh temperature and dynamic environments where fit and clearance are a concernChemical processing industries where high chemical and hydrolysis resistance is neededAny application that requires stability and wear resistance in harsh environments.Fluorosint® 500 is a versatile and reliable material that can help improve the performance and longevity of your products. It's available in stock shapes as well as custom shapes, it allows for efficient production and the ability to create complex geometries. With its added stability and wear resistance, Fluorosint® 500 is an excellent choice for applications in chemical processing, aerospace, automotive and other industries where tight dimensional control and high-performance sealing are required.
    ULTEM™ Resin 2300 banner
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    SABIC's Specialties BusinessULTEM™ Resin 2300
    • Polymer Name:Polyether Imide (PEI)
    • Processing Methods:3D Printing
    • Fillers Included:Glass Fiber
    • Additives Included:Flame Retardant
    • Flexural Modulus:9600.0 - 9600.0 MPa
    SABIC's Specialties Business ULTEM 2300 resin is a standard flow 30% glass fiber reinforced polyetherimide resin.ULTEM 2300 resin is RoHS compliant and is intrinsically flame retardant without the use of FR modifiers and offers UL94 V0 and 5VA ratings and FAR25.853 performance.ULTEM 2300 resin may offer excellent dimension stability, strength, stiffness and creep resistance up to high temperature due to its high glass transition temperature of 217°C.ULTEM 2300 resin is opaque and can be custom colored.FeaturesAmorphousChemical ResistantDimensional StabilityFlame RetardantGeneral PurposeGood AdhesionGood FlowGood Mechanical PropertiesHeat ResistanceHigh Hydrolytic StabilityHigh StiffnessHigh StrengthLow CreepLow Smoke EmissionLow ToxicityVery Good Heat ResistanceWide Temperature Operating RangeApplicationsConsumer Appliances & ElectronicsAutomotive LightingAutomotive Electrical & Electronic SystemsAutomotive Interior, Exterior & BodyPowertrain & UTHGlazing & Window ElementsInterior FixturesArtificial TurfAutomotive ElectronicsDisplaysIndustrial AutomationFurnitureHousewaresLawn & GardenMedical Devices & AssembliesNon-Food Consumer PackagingConnectorsPrinted Circuit Boards (PCBs)Semiconductor ManufacturingSwitches & RelaysPower & UtilitiesRenewable EnergyConsumer Goods for Sports & RecreationTextile ManufacturingAerospace & AviationOff Road & Recreational Vehicle (RV)Rail & Mass TransitOptical Fiber & Telecom This product does not contain PFAS intentionally added during SHPP’s manufacturing process and are not expected to contain unintentional PFAS impurities. Each user is responsible for evaluating the presence of unintentional PFAS impurities.

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