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Results 521 - 530 of 2257 for Iron alloys
  • Article - 20 Nov 2012
    Super alloys are metallic alloys used at high temperatures above 540ºC (1000ºF) where high surface stability and deformation resistance are mainly required. Three major classes of super alloys include...
  • Article - 16 Nov 2012
    Super alloys or high performance alloys have an ability to function at temperatures above 540ºC (1000ºF) with deformation resistance and high surface stability. As they have good oxidation and creep...
  • Article - 20 Nov 2012
    Super alloys or high performance alloys have good creep and oxidation resistance. They can be sstrengthened by work hardening, precipitation hardening, and solid-solution hardening.
  • Article - 10 Dec 2012
    Super alloys or high performance alloys contain a number of elements in a variety of combinations to reach a desired result.
  • Article - 25 Nov 2012
    Super alloys or high performance alloys have an ability to function at temperatures above 540ºC(1000ºF) with deformation resistance and high surface stability. As they have good oxidation and creep...
  • Article - 19 Nov 2012
    Super alloys or high performance alloys are used at environments with very high temperature above 540ºC(1000ºF) where deformation resistance and high surface stability are chiefly required.
  • Article - 20 Nov 2012
    Super alloys or high performance alloys have the capacity to function at very high temperatures and severe mechanical stressing, and also where high surface stability is required. They have good creep...
  • Article - 27 Sep 2012
    Copper nickel alloys are comprised of 2% to 30% nickel and have high oxidation resistance and stress corrosion cracking resistance. Their high oxidation resistance is seen in moist air and steam.
  • News - 29 Jun 2006
    Rust never sleeps, in the words of songwriter Neil Young. But, if materials scientists cannot put corrosion into a deep slumber perhaps there is a way to produce smart materials that can heal...
  • Article - 8 Jun 2011
    In this interview, Professor Oleg Ostrovski discusses the pyrometallurgical routes used in the commercial production of steel, aluminium, metallurgical silicon, manganese, chromium, titanium, and many...

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