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Friction Coefficients: Steel, carbon

ABS resin ASM unlubricated to Phenol formaldehyde ASM unlubricated

Static and kinetic friction coefficients between material pairs under various surface conditions

Mechanical Engineeringmaterial 1: Steel, carbon10 rowsPage 1 of 2
material 1material 2 conditionmaterial 2mu kinetic max (dimensionless)mu kinetic min (dimensionless)mu static max (dimensionless)mu static min (dimensionless)surface condition
Steel, carbonABS resin ASM unlubricatedABS resin0.270.270.40.4Unlubricated, room temperature, ambient air
Steel, carbonHDPE ASM unlubricatedHDPE0.230.230.360.36Unlubricated, room temperature, ambient air
Steel, carbonLDPE ASM unlubricatedLDPE0.280.280.480.48Unlubricated, room temperature, ambient air
Steel, carbonNylon 6/10 ASM unlubricatedNylon 6/100.380.380.530.53Unlubricated, room temperature, ambient air
Steel, carbonNylon 6/6 ASM unlubricatedNylon 6/60.380.380.530.53Unlubricated, room temperature, ambient air
Steel, carbonNylon 6 ASM unlubricatedNylon 60.370.370.540.54Unlubricated, room temperature, ambient air
Steel, carbonPMMA ASM unlubricatedPMMA0.50.50.640.64Unlubricated, room temperature, ambient air
Steel, carbonPTFE ASM unlubricatedPTFE0.090.090.370.37Unlubricated, room temperature, ambient air
Steel, carbonPVC ASM unlubricatedPVC0.380.380.530.53Unlubricated, room temperature, ambient air
Steel, carbonPhenol formaldehyde ASM unlubricatedPhenol formaldehyde0.440.440.510.51Unlubricated, room temperature, ambient air

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