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  • 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 - 18 Sep 2012
    Copper beryllium alloys have good thermal and electrical properties and high tensile strength. High conductivity alloys and high strength alloys are the two main categories of copper beryllium alloys.
  • Article - 13 Sep 2012
    Copper beryllium alloys have high strength and good thermal and electrical conductivities. High conductivity alloys and high strength alloys are the two major types of copper beryllium alloys.
  • Article - 18 Sep 2012
    Copper beryllium alloys have good thermal and electrical conductivities and high strength. Two major groups of copper beryllium alloys include high conductivity alloys and high strength alloys.
  • Article - 18 Sep 2012
    Tungsten hot-work steels are of different types, namely, H21 to H26 types. These steels have similar characteristics to that of high-speed steels. The primary alloying elements of tungsten hot-work...
  • 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...
  • Article - 16 Jul 2012
    Air-Hardening, Medium Alloy, Cold Work Tool Steels are high carbon steels containing low alloy additions of molybdenum, tungsten, chromium and manganese.
  • Article - 9 Jul 2012
    Cold-work tool steels are steels with a high carbon content and relatively low amounts of chromium, molybdenum, tungsten and manganese. Cold-work tool steels can be used between 205 and 260°C (400 to...
  • Article - 31 Jul 2024
    Dilatants, a type of non-Newtonian fluid, increase in viscosity under shear stress, showcasing unique material properties that influence their application in protective gear, vibration control, and...
  • Article - 18 Jun 2012
    Russian Chemist Dmitri Mendeleev, who developed the periodic table, predicted that a new element will be discovered to fill an empty spot in the table. In 1886AD, Germanium was discovered by German...

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