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  • Article - 15 Nov 2012
    Super alloys or high performance alloys are divided into three groups such as cobalt-based, nickel-based, and iron-based alloys.
  • Article - 15 Nov 2012
    Super alloys are also referred to as high performance alloys. They have good creep and oxidation resistance, and are utilized where high surface stability is required. They also have an ability to...
  • Article - 25 Nov 2012
    Super alloys contain a number of elements in a variety of combinations to obtain the desired result. They are also known as high performance alloys. Solid-solution hardening, precipitation hardening,...
  • Article - 19 Nov 2012
    Super alloys or high performance alloys have the capacity to function at high temperatures and extreme mechanical stress, and also where high surface stability is required.
  • 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 - 16 Nov 2012
    Super alloys are also known as high performance alloys. They have good creep and oxidation resistance, and are formed in different shapes. They can be strengthened by solid-solution hardening, work...
  • Article - 4 Sep 2012
    MAX phases exhibit a unique combination of characteristics of both ceramics and metals with unusual mechanical, electrical and thermal properties making them suitable for numerous applications.
  • Article - 13 Sep 2012
    Pure copper has good electrical and thermal conductivity. More than 400 varieties of copper alloys are available. Alloys can be freely formed by copper than most metals.
  • Article - 27 Sep 2012
    Pure copper has good electrical and thermal conductivity. More than 400 varieties of copper alloys are available. Alloys can be freely formed by copper than by most metals.
  • Article - 18 Sep 2012
    Pure copper has good electrical and thermal conductivity. More than 400 varieties of copper alloys are available. Alloys can be freely formed by copper than most metals.

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