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Rulon Bearings

Celanese GUR® 4152 PE-UHMW, Unfilled
Categories: Polymer; Thermoplastic; Polyethylene (PE); High Density (HDPE); UHMW PE (Ultra High Molecular Weight PE)

Material Notes: GUR 4152 UHMW-PE is a linear polyolefin resin in powder form with a molecular weight of approximately 7.7 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 4150 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.

Information provided by Celanese

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Physical PropertiesMetricEnglishComments
Density 0.930 g/cc0.0336 lb/in³ISO 1183
Density of Compound 0.930 g/cc0.0336 lb/in³Indicative (PE only); ISO 1872-1
Moisture Absorption <= 0.0100 %<= 0.0100 %23°C/50%RH; ISO 62
Viscosity Test 2800 cm³/g28.0 dl/gISO 307, 1157, 1628
 2800 cm³/g28.0 dl/gintrinsic; ISO 1628-3
 3400 cm³/g34.0 dl/gISO 1628-3
Melt Flow <= 0.10 g/10 min<= 0.10 g/10 minASTM D1238
 0.10 g/10 min
@Load 21.6 kg,
Temperature 190 °C
0.10 g/10 min
@Load 47.6 lb,
Temperature 374 °F
ISO 1133
 
Mechanical PropertiesMetricEnglishComments
Hardness, Shore D 6161ASTM D2240
 616115 sec; ISO 868
Ball Indentation Hardness 35.0 MPa5080 psiISO 2039-1
Tensile Strength at Break 35.00 MPa5076 psiASTM D638
 35.0 MPa5080 psi50mm/min; ISO 527-2/1A
Tensile Strength, Yield 17.0 MPa2470 psi50mm/min; ISO 527-2/1A
 21.4 MPa3100 psiASTM D638
Elongation at Break 300 %300 %
 >= 300 %>= 300 %ASTM D638
Elongation at Yield 20 %20 %50mm/min; ISO 527-2/1A
 <= 20 %<= 20 %ASTM D638
Tensile Modulus 0.680 GPa98.6 ksi50mm/min; ISO 527-2/1A
 0.689 GPa100 ksiASTM D638
Izod Impact, Notched NBNBASTM D256
Charpy Impact, Notched 13.0 J/cm²61.9 ft-lb/in²ISO 11542-2
Coefficient of Friction, Dynamic 0.100.10
Tensile Creep Modulus, 1 hour 430 MPa62400 psiISO 899-1
Tensile Creep Modulus, 1000 hours 220 MPa31900 psiISO 899-1
K Factor (Wear Factor) 8080sand slurry method (GUR 4120=100)
Abrasion 8080
 
Electrical PropertiesMetricEnglishComments
Volume Resistivity >= 1.00e+14 ohm-cm>= 1.00e+14 ohm-cmIEC 60093
Surface Resistance >= 1.00e+12 ohm>= 1.00e+12 ohmIEC 60093
Dielectric Constant  2.1
@Frequency 100 Hz
2.1
@Frequency 100 Hz
IEC 60250
 3.0
@Frequency 1e+6 Hz
3.0
@Frequency 1e+6 Hz
IEC 60250
Dielectric Strength 45.0 kV/mm1140 kV/inIEC 60243-1
Dissipation Factor  0.00040
@Frequency 100 Hz
0.00040
@Frequency 100 Hz
IEC 60250
 0.0010
@Frequency 1e+6 Hz
0.0010
@Frequency 1e+6 Hz
IEC 60250
Comparative Tracking Index 600 V600 VIEC 60112
 
Thermal PropertiesMetricEnglishComments
CTE, linear, Parallel to Flow 200 µm/m-°C111 µin/in-°FISO 11359-2
Specific Heat Capacity 1.84 J/g-°C0.440 BTU/lb-°F
 1.84 J/g-°C0.440 BTU/lb-°F
Thermal Conductivity 0.410 W/m-K2.85 BTU-in/hr-ft²-°F
Deflection Temperature at 0.46 MPa (66 psi) 65.0 °C149 °FISO 75-1, -2
Deflection Temperature at 1.8 MPa (264 psi) 42.0 °C108 °FISO 75-1, -2
Vicat Softening Point 80.0 °C176 °FISO 306
 80.0 °C176 °FASTM D1525
Flammability, UL94 HB
@Thickness 1.60 mm
HB
@Thickness 0.0630 in
 
Processing PropertiesMetricEnglishComments
Processing Temperature 210 °C410 °FISO 293
 
Descriptive Properties
Mold cooling rate, K/min, ISO 29315
Other extrusionYes
PowderYes
Transfer moldingYes

Some of the values displayed above may have been converted from their original units and/or rounded in order to display the information in a consistent format. Users requiring more precise data for scientific or engineering calculations can click on the property value to see the original value as well as raw conversions to equivalent units. We advise that you only use the original value or one of its raw conversions in your calculations to minimize rounding error. We also ask that you refer to MatWeb's terms of use regarding this information. Click here to view all the property values for this datasheet as they were originally entered into MatWeb.

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