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Results 1201 - 1210 of 1261 for Iron-nickel
  • Article - 13 Sep 2012
    Aluminum alloys have high electrical conductivity and strong corrosion resistance. These alloys tend to lose some of their strength at high temperatures ranging between 200 and 250°C (392 and 482°F).
  • Article - 27 Sep 2012
    Aluminum alloys are alloys having high electrical conductivity and strong corrosion resistance. These alloys tend to lose some of their strength at high temperatures ranging between 200 and 250°C (392...
  • Article - 20 Sep 2012
    Aluminum alloys are alloys having high electrical conductivity and strong corrosion resistance. These alloys tend to lose some of their strength at high temperatures ranging between 200 and 250°C (392...
  • Article - 27 Sep 2012
    Aluminum alloys have strong corrosion resistance and high electrical conductivity. These alloys tend to lose some of their strength at high temperatures ranging between 200 and 250°C (392 and 482°F).
  • Article - 27 Sep 2012
    Aluminum alloys have strong corrosion resistance and high electrical conductivity. These alloys tend to lose some of their strength at high temperatures ranging between 200 and 250°C (392 and 482°F)....
  • Article - 13 Sep 2012
    Alloy steels contain a wide range of steels whose compositions exceed the limitations of C, Mo, Cr, Va, Mn, Ni, Si, and B fixed for carbon steels. These steels are more responsive to mechanical and...
  • Article - 26 Sep 2012
    Alloy steels comprise a variety of steels whose compositions exceed the limitations of C, Mo, Cr, Va, Mn, Ni, Si, and B, which have been fixed for carbon steels. These steels are more responsive to...
  • Article - 27 Sep 2012
    Alloy steels comprise a wide range of steels with compositions that exceed the limitations of Si, Va, Cr, Ni, Mo, Mn, B and C allocated for carbon steels. In comparison with carbon steels, alloy...
  • Article - 9 Aug 2013
    Alloy steels are designated by AISI four-digit numbers. They comprise different kinds of steels having composition exceeding the limitations of B, C, Mn, Mo, Ni, Si, Cr, and Va set for carbon steels....
  • Article - 9 Aug 2013
    Alloy steels contain a wide range of steels comprising compositions that exceed the limitations of Si, Va, Cr, Ni, Mo, Mn, B and C allocated for carbon steels. These steels comprise elements such as...

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