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Elmet Technologies

Sandvik 353 MA Seamless tube and pipe
Categories: Metal; Ferrous Metal; Austenitic

Material Notes: Sandvik 353 MA is an austenitic chromium-nickel steel alloyed with nitrogen and rare earth metals. The grade is characterized by:
  • high creep strength
  • very good resistance to isothermal and cyclic oxidation
  • very good resistance to combustion gases
  • very good resistance to carburization
  • good resistance to nitriding gases
  • good structural stability at high temperatures
  • good weldability
  • the grade can be used at temperatures up to about 1175°C (2150°F).
  • Sandvik manufactures 353 MA under license from Avesta Sheffield AB.

    Information provided by Sandvik

    UNS S35315; EN 1.4854

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    Physical PropertiesMetricEnglishComments
    Density 7.90 g/cc0.285 lb/in³
     
    Mechanical PropertiesMetricEnglishComments
    Hardness, Vickers 160160
    Tensile Strength, Ultimate 650 - 750 MPa94300 - 109000 psi
     >= 422 MPa
    @Temperature 600 °C
    >= 61200 psi
    @Temperature 1110 °F
     >= 470 MPa
    @Temperature 300 °C
    >= 68200 psi
    @Temperature 572 °F
    Tensile Strength, Yield  >= 270 MPa
    @Strain 0.2 %
    >= 39200 psi
    @Strain 0.2 %
     >= 305 MPa
    @Strain 1 %
    >= 44200 psi
    @Strain 1 %
     >= 138 MPa
    @Strain 0.2 %,
    Temperature 600 °C
    >= 20000 psi
    @Strain 0.2 %,
    Temperature 1110 °F
     >= 159 MPa
    @Strain 1 %,
    Temperature 600 °C
    >= 23100 psi
    @Strain 1 %,
    Temperature 1110 °F
     >= 166 MPa
    @Strain 0.2 %,
    Temperature 300 °C
    >= 24100 psi
    @Strain 0.2 %,
    Temperature 572 °F
     >= 190 MPa
    @Strain 1 %,
    Temperature 300 °C
    >= 27600 psi
    @Strain 1 %,
    Temperature 572 °F
    Elongation at Break >= 40 %>= 40 %
    Creep Strength  3.00 MPa
    @Temperature 1000 °C,
    Time 3.60e+8 sec
    435 psi
    @Temperature 1830 °F,
    Time 100000 hour
    1% elongation
     4.50 MPa
    @Temperature 1000 °C,
    Time 3.60e+7 sec
    653 psi
    @Temperature 1830 °F,
    Time 10000 hour
    1% elongation
     52.0 MPa
    @Temperature 600 °C,
    Time 3.60e+8 sec
    7540 psi
    @Temperature 1110 °F,
    Time 100000 hour
    1% elongation
     88.0 MPa
    @Temperature 600 °C,
    Time 3.60e+7 sec
    12800 psi
    @Temperature 1110 °F,
    Time 10000 hour
    1% elongation
    Rupture Strength  4.80 MPa
    @Temperature 1000 °C,
    Time 3.60e+8 sec
    696 psi
    @Temperature 1830 °F,
    Time 100000 hour
     8.00 MPa
    @Temperature 1000 °C,
    Time 3.60e+7 sec
    1160 psi
    @Temperature 1830 °F,
    Time 10000 hour
     80.0 MPa
    @Temperature 600 °C,
    Time 3.60e+8 sec
    11600 psi
    @Temperature 1110 °F,
    Time 100000 hour
     127 MPa
    @Temperature 600 °C,
    Time 3.60e+7 sec
    18400 psi
    @Temperature 1110 °F,
    Time 10000 hour
    Modulus of Elasticity 190 GPa27600 ksi
     125 GPa
    @Temperature 1100 °C
    18100 ksi
    @Temperature 2010 °F
     140 GPa
    @Temperature 800 °C
    20300 ksi
    @Temperature 1470 °F
     165 GPa
    @Temperature 400 °C
    23900 ksi
    @Temperature 752 °F
     
    Electrical PropertiesMetricEnglishComments
    Electrical Resistivity  0.000100 ohm-cm
    @Temperature 20.0 °C
    0.000100 ohm-cm
    @Temperature 68.0 °F
     0.000120 ohm-cm
    @Temperature 600 °C
    0.000120 ohm-cm
    @Temperature 1110 °F
     0.000132 ohm-cm
    @Temperature 1100 °C
    0.000132 ohm-cm
    @Temperature 2010 °F
     
    Thermal PropertiesMetricEnglishComments
    CTE, linear  15.5 µm/m-°C
    @Temperature 30.0 - 200 °C
    8.61 µin/in-°F
    @Temperature 86.0 - 392 °F
     15.5 µm/m-°C
    @Temperature 30.0 - 100 °C
    8.61 µin/in-°F
    @Temperature 86.0 - 212 °F
     17.0 µm/m-°C
    @Temperature 30.0 - 600 °C
    9.44 µin/in-°F
    @Temperature 86.0 - 1110 °F
     18.0 µm/m-°C
    @Temperature 30.0 - 1000 °C
    10.0 µin/in-°F
    @Temperature 86.0 - 1830 °F
    Specific Heat Capacity  0.480 J/g-°C
    @Temperature 20.0 °C
    0.115 BTU/lb-°F
    @Temperature 68.0 °F
     0.530 J/g-°C
    @Temperature 200 °C
    0.127 BTU/lb-°F
    @Temperature 392 °F
     0.575 J/g-°C
    @Temperature 400 °C
    0.137 BTU/lb-°F
    @Temperature 752 °F
     0.610 J/g-°C
    @Temperature 600 °C
    0.146 BTU/lb-°F
    @Temperature 1110 °F
     0.640 J/g-°C
    @Temperature 800 °C
    0.153 BTU/lb-°F
    @Temperature 1470 °F
     0.665 J/g-°C
    @Temperature 1000 °C
    0.159 BTU/lb-°F
    @Temperature 1830 °F
    Thermal Conductivity  11.0 W/m-K
    @Temperature 20.0 °C
    76.3 BTU-in/hr-ft²-°F
    @Temperature 68.0 °F
     15.0 W/m-K
    @Temperature 200 °C
    104 BTU-in/hr-ft²-°F
    @Temperature 392 °F
     18.0 W/m-K
    @Temperature 400 °C
    125 BTU-in/hr-ft²-°F
    @Temperature 752 °F
     22.0 W/m-K
    @Temperature 600 °C
    153 BTU-in/hr-ft²-°F
    @Temperature 1110 °F
     27.0 W/m-K
    @Temperature 1000 °C
    187 BTU-in/hr-ft²-°F
    @Temperature 1830 °F
     
    Component Elements PropertiesMetricEnglishComments
    Carbon, C 0.050 %0.050 %
    Cerium, Ce 0.050 %0.050 %
    Chromium, Cr 25 %25 %
    Iron, Fe 36.6 %36.6 %As Balance
    Manganese, Mn 1.5 %1.5 %
    Nickel, Ni 35 %35 %
    Nitrogen, N 0.16 %0.16 %
    Phosphorus, P <= 0.040 %<= 0.040 %
    Silicon, Si 1.6 %1.6 %
    Sulfur, S <= 0.015 %<= 0.015 %

    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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    NSANDV231 / 19125

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