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Results 10241 - 10250 of 10525 for ELECTRICAL
  • Article - 6 Aug 2012
    Pure copper has high thermal and electrical conductivity. The UNS C14500 phosphorus deoxidized tellurium-bearing copper alloy has 90 to 96% IACS conductivity and free machining properties. Physical...
  • Article - 17 Sep 2012
    UNS C17300 beryllium copper alloys are heat treatable, ductile and can be mill hardened. They offer tensile strength of 1380 MPa (200 ksi). These steels are suitable for applications requiring good...
  • Article - 11 Sep 2012
    UNS C17200 beryllium copper alloys are ductile and produced in mill hardened and heat treatable tempers. These alloys are used for all applications, which require high strength, stiffness and good...
  • Article - 13 Sep 2012
    UNS C17000 beryllium copper alloys are ductile, heat treatable and can be mill hardened. These alloys are used in applications, which require high strength and good conductivity. The following section...
  • Article - 27 Sep 2012
    UNS C18000 copper nickel silicon chromium alloys are high copper alloys containing high strength and good wear resistance at high temperatures.
  • Article - 13 Nov 2012
    UNS C11400 silver-bearing tough pitch copper has ductility, anneal resistance, and conductivity of 101% IACS. The following datasheet will discuss in detail about the UNS C11400 copper.
  • Article - 13 Sep 2012
    UNS 11500 silver-bearing tough pitch copper alloys are anneal resistant and ductile. These alloys have conductivity 101% IACS.
  • Article - 21 Sep 2012
    Pure copper has high electrical and thermal conductivity. Alloys can be freely formed by the copper The UNS C12000 copper has 95% IACS conductivity, low residual phosphorus, and high embrittlement...
  • Article - 20 Sep 2012
    Phosphor bronzes consist of 0.01 to 0.35% of phosphorous and 0.5 to 11% of tin. Stiffness and wear resistance of these alloys can be increased by the addition of phosphorous.
  • Article - 20 Jul 2012
    Scientists from Kiel University (KU) and Hamburg University of Technology (TUHH) have created the new material 'Aerographite' by carefully growing an interlinking chain of Carbon nanotubes within a...

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