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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 - 26 Nov 2012
    Super alloys have good creep and oxidation resistance. They consist of a number of elements in different combinations to achieve the desired result. They are also known as high performance alloys, and...
  • 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 - 2 Jan 2013
    Super alloys or high performance alloys are available in a variety of shapes and contain elements in different combinations to obtain a specific result. These alloys are of three types that include...
  • Article - 14 Dec 2012
    Super alloys or high performance alloys include iron-based, cobalt-based and nickel-based alloys. These alloys have good oxidation and creep resistance and are available in different shapes.
  • Article - 21 Nov 2012
    Super alloys or high performance alloys include iron-based, cobalt-based and nickel-based alloys. These alloys can be strengthened by precipitation hardening, solid-solution hardening and work...
  • Article - 12 Dec 2012
    Super alloys or high performance alloys include iron-based, cobalt-based and nickel-based alloys. These alloys have good oxidation and creep resistance and are available in different shapes.
  • Article - 14 Dec 2012
    Super alloys are metallic alloys that function at high temperature environment where high surface stability and deformation resistance are mainly required. Three major classification of super alloys...
  • Article - 26 Nov 2012
    Super alloys or high performance alloys are used in 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 ability to function at temperatures above 540ºC (1000ºF) with deformation resistance and high surface stability.

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