GUR® 4150

Category: UHMWPE , Ultra High Molecular Weight Polyethylene
Manufacturer: Celanese Corporation
Trademark: GUR®
Fillers: -
Ports: Qinzhou, Shekou, Shanghai, Ningbo
Delivery Terms FOB, CIF, DAP, DAT, DDP
PDF: 4zKigs_GUR-4150.pdf
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Message
GUR 4150 UHMW-PE is a linear polyolefin resin in powder form with a molecular weight of approximately 9.2 MM g/mol calculated using Margolies' equation. The extremely high molecular weight of this resin yields several unique properties including superior abrasion resistance and impact strength. This and GUR 4152 resins have the best abrasion resistance of all standard grades. Outstanding properties include a low coefficient of friction that results in self-lubricating, non-stick surfaces after processing. The resin is normally processed by compression molding or ram extrusion.
General Information
Features
  • Good Abrasion Resistance
  • Good Impact Resistance
  • Low Friction
  • Self Lubricating
  • Ultra High Molecular Weight
RoHS Compliance
  • Contact Manufacturer
Forms
  • Powder
Processing Method
  • Compression Molding
  • Extrusion
PhysicalNominal ValueUnitTest Method
Specific Gravity
    -- 0.928g/cm³ASTM D792
    -- 0.930g/cm³ISO 1183
Melt Mass-Flow Rate (MFR) (190°C/21.6 kg)< 0.10g/10 minASTM D1238, ISO 1133
Water Absorption ISO 62
    Saturation, 23°C < 0.010%
    Equilibrium, 23°C, 50% RH < 0.010%
Viscosity Number 3850cm³/gISO 307
Elongational Stress F - 150/10 0.510MPaISO 1152-2
Intrinsic Viscosity 32dl/gISO 1628-3
MechanicalNominal ValueUnitTest Method
Abrasion Loss 80.0Internal Method
Wear by Sandslurry Method 180.0Internal Method
ImpactNominal ValueUnitTest Method
Charpy Impact Strength 2130kJ/m²ISO 1152-2
HardnessNominal ValueUnitTest Method
Durometer Hardness
    Shore D 61ASTM D2240
    Shore D, 15 sec 61ISO 868
Ball Indentation Hardness 335.0MPaISO 2039-1
MechanicalNominal ValueUnitTest Method
Tensile Modulus
    23°C 703MPaASTM D638
    -- 680MPaISO 527-2/1A/1
Tensile Strength
    Yield, 23°C 21.4MPaASTM D638
    Yield 17.0MPaISO 527-2/1A/50
Tensile Elongation
    Yield, 23°C < 20%ASTM D638
    Yield 20%ISO 527-2/1A/50
    Break, 23°C > 350%ASTM D638
Nominal Tensile Strain at Break > 50%ISO 527-2/1A/50
Tensile Creep Modulus ISO 899-1
    1 hr 430MPa
    1000 hr 220MPa
Coefficient of Friction (vs. Steel - Dynamic)0.10Internal Method
ThermalNominal ValueUnitTest Method
Heat Deflection Temperature
    0.45 MPa, Unannealed 65.0°CISO 75-2/B
    1.8 MPa, Unannealed 42.0°CISO 75-2/A
Vicat Softening Temperature 80.0°CASTM D1525, ISO 306/B50
CLTE - Flow 2.0E-4cm/cm/°CASTM D696, ISO 11359-2
Specific Heat Internal Method
    -- 1840J/kg/°C
    23°C 1840J/kg/°C
Thermal Conductivity (23°C)0.41W/m/KInternal Method
ElectricalNominal ValueUnitTest Method
Surface Resistivity
    -- > 1.0E+13ohmsASTM D257
    -- > 1.0E+12ohmsIEC 60093
Volume Resistivity
    -- > 1.0E+15ohms·cmASTM D257
    -- > 1.0E+14ohms·cmIEC 60093
Electric Strength 45kV/mmIEC 60243-1
Dielectric Constant
    1 MHz 3.00ASTM D150, IEC 60250
    100 Hz 2.10IEC 60250
Dissipation Factor IEC 60250
    100 Hz 3.9E-4
    1 MHz 1.0E-3
Comparative Tracking Index 600VIEC 60112
FlammabilityNominal ValueUnitTest Method
Flame Rating (1.60 mm)HBUL 94
Note Message
1 .Based on GUR 4120=100
2 .14° V-notch both sides
3 .30 sec
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