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  • Article - 18 Sep 2012
    Aluminum alloys have high corrosion resistance. The strength of these alloys can be reduced when they are subjected to temperatures of about 200 to 250°C. However, their strength can be increased at...
  • Article - 21 Sep 2012
    Aluminum alloys have strong corrosion resistance. They are sensitive to high temperatures ranging between 200 and 250°C (392 and 482°F) and might lose some of their strength.
  • Article - 11 Sep 2012
    Carbon steels are steels that contain only carbon as their major alloying element. These steels also contain small quantities of copper, nickel, molybdenum, aluminium and chromium. Traces of 0.4%...
  • Article - 21 Sep 2012
    Carbon is the main alloying element present in the carbon steels. They also contain 0.4% of silicon and 1.2% of manganese. Elements such as nickel, copper, aluminium, and molybdenum are present in...
  • Article - 21 Sep 2012
    Carbon steels are steels having only carbon as the chief alloying element. Residual elements such as copper, chromium, molybdenum, nickel, and aluminium are present in traces. They also contain 1.2%...
  • Article - 13 Sep 2012
    AISI 1040 carbon steel has high carbon content and can be hardened by heat treatment followed by quenching and tempering to achieve 150 to 250 ksi tensile strength.
  • Article - 21 Sep 2012
    The UNS C97600 alloy is a leaded nickel bronze copper alloy. Other types of bronze alloys include phosphor bronze, tin bronze, aluminum bronze, silicon bronze, architectural bronze and manganese...
  • Article - 21 Sep 2012
    The UNS C97800 alloy is a leaded nickel bronze copper alloy. Other types of bronze alloys include phosphor bronze, tin bronze, aluminum bronze, silicon bronze, architectural bronze and manganese...
  • Article - 27 Sep 2012
    Copper alloys are available in more than 400 varieties. Each copper alloy variety has specific properties that suit a number of manufacturing processes, environments and applications.
  • Article - 17 Sep 2012
    Copper alloys are available in more than 400 varieties. Each copper alloy variety has specific properties that suit a number of manufacturing processes, environments and applications.

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