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  • Article - 14 Nov 2012
    Unalloyed copper or oxygen free coppers are provided with high thermal and electrical properties and good corrosion resistance. Based on the amount of impurities present in the metal, the properties...
  • Article - 15 Nov 2012
    Pure and unalloyed coppers have good corrosion resistance and high thermal and electrical conductivity. Pure copper is designated as UNS C10100 to C13000. Oxygen free coppers are applicable in all...
  • Article - 13 Sep 2012
    Pure copper has high electrical and thermal conductivity. Alloys can be freely formed by the copper. The UNS 11300 silver-bearing tough Pitch copper has 101% IACS conductivity, and high ductility. It...
  • Article - 18 Sep 2012
    Copper beryllium alloys feature high strength and good thermal and electrical properties. Two main types of copper beryllium alloys are high conductivity alloys and high strength alloys.
  • 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.
  • Article - 26 Sep 2012
    The UNS C63200 aluminium nickel bronze alloy has high corrosion resistance and strength.
  • Article - 9 Aug 2013
    Low-alloy special-purpose steels or group L steels contain small quantities of chromium, nickel, vanadium, and molybdenum. L2 and L6 are two types of group L tool steels.
  • Article - 17 Dec 2012
    Low-carbon mold steels or group P steels are of different types that include P2, P3, P4, P5, P6, P20, and P21 steels. Chromium and nickel are the main alloying elements found in group P steels.
  • Article - 5 Jul 2012
    AISI 1045 steel is a medium tensile steel supplied in the black hot rolled or normalized condition. It has a tensile strength of 570 - 700 MPa and Brinell hardness ranging between 170 and 210.
  • Article - 5 Jul 2012
    Hot rolled AISI 1022 steel is a low hardenability carbon steel with low tensile strength ranging between 360-560 MPa.

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