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0Cr15Al5 FeCrAl Alloy Heat Resistance Wire for Industrial Heating Furnace

Short Description:

Resistance wire is usually used in resistor. Our resistance have small tolerance on size and electrical resistance value


  • Certificate: ISO 9001
  • Size: Customized
  • product name : 0Cr15Al5 FeCrAl Alloy Heat Resistance Wire f
  • material: alloy
  • usage: heating element
  • function: good form stability
  • feature: high resistance
  • weight: as based
  • size: as requirement
  • advantage : high quality
  • MOQ: 20KG
  • Product Detail

    FAQ

    Product Tags

    0Cr15Al5 FeCrAl Alloy Heat Resistance Wire for Industrial Heating Furnace

    Resistance wire is usually used in resistor. Our resistance have small tolerance on size and electrical resistance value

    1) Material available:

    Cr20Ni80, Cr30Ni70, Cr15Ni60, Cr20Ni35, Cr20Ni30, Cr20Ni25, NiCr25FeAlY, Cr13Al4, Cr21Al4, Cr14Al4, Cr20Al4, Cr21Al6, Cr23Al5, Cr25Al5, Cr21Al6Nb, Cr25Al5SE.

    2) Shape:

    Wire, strip, ribbon, sheet, coil

    3) About us:

    We can also design and manufacture according to your request. Shanghai Tankii Alloy Material Co., Ltd. is specialized in production of Ni-Cr Alloy, Cu-Ni Alloy, Fechral, thermocouple wire, pure nickel and other precision alloy materials in the form of wire, strip, rod, bar and plate.

    4) Alloy character:

    Ferritic alloys allow to reach process temperatures of 2192 to 2282F,
    Corresponding to a resistance temperature of 2372F. All ferritic alloys have approximatively the same basis composition: 20 to 25 % of chromium, 4.5 to 6 % of aluminium, balance being iron. Some of them contain in addition rare earth, as yttrium or silicium. Those alloys having a ferritic structure, we observe, after a maintenance at high operating temperature, an important growth of the grain and a precipitation of chromium carbides at the grain joints level. This induces an increased embrittlement of the resistance, especially when it is come again at ambient temperature.

    Specification:

    Alloy Type Diameter Resistivity Tensile Elongation
    (%)
    Bending Max.
    Continuous
    Working
    Life
    (mm) (μΩm)(20°C) Strength Times Service (hours)
    (N/mm²) Temperature
    (°C)
    Cr20Ni80 <0.50 1.09±0.05 850-950 >20 >9 1200 >20000
    0.50-3.0 1.13±0.05 850-950 >20 >9 1200 >20000
    >3.0 1.14±0.05 850-950 >20 >9 1200 >20000
    Cr30Ni70 <0.50 1.18±0.05 850-950 >20 >9 1250 >20000
    ≥0.50 1.20±0.05 850-950 >20 >9 1250 >20000
    Cr15Ni60 <0.50 1.12±0.05 850-950 >20 >9 1125 >20000
    ≥0.50 1.15±0.05 850-950 >20 >9 1125 >20000
    Cr20Ni35 <0.50 1.04±0.05 850-950 >20 >9 1100 >18000
    ≥0.50 1.06±0.05 850-950 >20 >9 1100 >18000
    1Cr13Al4 0.03-12.0 1.25±0.08 588-735 >16 >6 950 >10000
    0Cr15Al5 1.25±0.08 588-735 >16 >6 1000 >10000
    0Cr25Al5 1.42±0.07 634-784 >12 >5 1300 >8000
    0Cr23Al5 1.35±0.06 634-784 >12 >5 1250 >8000
    0Cr21Al6 1.42±0.07 634-784 >12 >5 1300 >8000
    1Cr20Al3 1.23±0.06 634-784 >12 >5 1100 >8000
    0Cr21Al6Nb 1.45±0.07 634-784 >12 >5 1350 >8000
    0Cr27Al7Mo2 0.03-12.0 1.53±0.07 686-784 >12 >5 1400 >8000





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