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    EN 10269 Physical Properties

    Reference data for steels and nickel alloys for fasteners used at elevated and/or low temperatures

    EN 10269 includes informative reference data on physical properties to support material selection for fasteners operating under high-temperature or low-temperature service conditions.

    Density and static modulus of elasticity

    Material designation Density Static modulus of elasticity at a temperature in °C of:
    20 100 200 300 400 500 600 700 800
    Name Number kg/dm3 GPa
    Steels for quenching and tempering
    C35E 1.1181 7,85 211 204 196 186 177 164 127
    21CrMoV5-7 1.7709
    40CrMoV4-6 1.7711
    26NiCrMo14-6 1.6958 213a 208a 202a 194a 186a 175a 164a
    X22CrMoV12-1 1.4923 7,7 216 209 200 190 179 167 127
    X19CrMoNbVN11-1 1.4913
    Austenitic steels
    X2CrNi18-9 1.4307 7,9 200 194 186 179 172 165
    X5CrNi18-10 1.4301
    X4CrNi18-12 1.4303
    X2CrNiMo17-12-2 1.4404 8,0
    X5CrNiMo17-12-2 1.4401
    X2CrNiMoN17-13-3 1.4429
    X3CrNiCu18-9-4 1.4567 7,9
    X6CrNi18-10 1.4948 7,9
    X10CrNiMoMnNbVB15-10-1 1.4982 7,95 207 201 193 184 175 165 158 150
    X3CrNiMoBN17-13-3 1.4910 8,0 198a 198a 183a 175a 167a 159a 150a 142a
    X6CrNiMoB17-12-2 1.4919
    X6CrNiTiB18-10 1.4941 7,9
    X6NiCrTiMoVB25-15-2 1.4980 8,0 211a 206a 200a 192a 183a 173a 162a
    X7CrNiMoBNb16-16 1.4986 7,9 196 192 186 181 174 165 157 147
    Nickel alloys
    NiCr20TiAl 2.4952 8,2 216a 212a 208a 202a 196a 189a 179a 161a 130a
    NiCr15Fe7TiAl 2.4669 8,2 215 208 200 192 183 175 165 150 131

    Coefficient of thermal expansion, thermal conductivity, thermal capacity and electrical resistivitya

    Material designation Coefficient of thermal expansion between
    20 °C and
    Thermal
    conductivity
    at

    20 °C
    Specific
    thermal
    capacity
    at

    20 °C
    Electrical
    resistivity
    at

    20 °C
    100
    °C
    200
    °C
    300
    °C
    400
    °C
    500
    °C
    600
    °C
    Name Number 10-6 K-1
    W
    m·K
    J
    kg·K
    Ω·mm2
    m
    Steels for quenching and tempering
    C35E 1.1181 11,1 12,1 12,9 13,5 13,9 14,1 42 460 n.a.
    21CrMoV5-7 1.7709 33
    40CrMoV4-6 1.7711
    26NiCrMo14-6 1.6958 11,2 11,6 12,1 12,2 29
    Austenitic steels
    X2CrNi18-9 1.4307 16,0 16,5 17,0 18,0 18,0 n.a. 15 500 0,73
    X5CrNi18-10 1.4301 n.a.
    X4CrNi18-12 1.4303 n.a.
    X2CrNiMo17-12-2 1.4404 16,0 16,5 17,0 17,5 18,0 n.a. 0,75
    X5CrNiMo17-12-2 1.4401 n.a.
    X2CrNiMoN17-13-3 1.4429 n.a.
    X3CrNiCu18-9-4 1.4567 16,7 17,2 17,7 18,1 18,4 n.a. n.a. n.a. n.a.
    X6CrNi18-10 1.4948 16,3 16,9 17,3 17,6 18,2 18,5 16 450 0,71
    X10CrNiMoMnNbVB 15-10-1 1.4982 15,7 16,8 17,7 18,3 18,6 19,0 12,5 480 0,74
    X3CrNiMoBN17-13-3 1.4910 16,3 16,9 17,3 17,6 18,2 18,5 16 450 0,77
    X6CrNiMoB17-12-2 1.4919
    X6CrNiTiB18-10 1.4941 0,71
    X6NiCrTiMoVB25-15-2 1.4980 17,0 17,5 17,8 18,0 18,2 18,5 13 490 0,91
    X7CrNiMoBNb16-16 1.4986 16,6 17,7 17,9 17,9 17,9 18,1 15 460 n.a.
    Nickel alloys
    NiCr19FeNb5Mo3 2.4668 13,4 13,8 14,1 14,6 13 440 1,23
    NiCr20TiAl 2.4952 12,9 13,4 13,8 14,3 14,7 15,2 11,4 460 1,24
    NiCr15Fe7TiAl 2.4669 12,6 13,0 13,4 13,9 14,4 14,8 12 431 1,21