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Results 8531 - 8540 of 8602 for Automotive
  • Article - 5 Jul 2013
    INCOLOY® alloy 864 exhibits excellent fatigue resistance, thermal stability and resistance to chloride stress-corrosion cracking, pitting and hot salt corrosion. The following datasheet will provide...
  • Article - 9 Jul 2013
    Titanium alloys have been developed by adding varying quantities of alloying metals to the base metal titanium. Each alloying metal helps to enhance the properties of corrosion resistance, ductility,...
  • Article - 6 Aug 2013
    Nickel alloy 225 is a ferromagnetic, wrought commercially pure nickel that is chemically similar to type 205 alloy. It provides good corrosion resistance against moderately reducing environments. It...
  • Article - 29 Jul 2013
    Magnesium AS41B-F die cast alloy has excellent saltwater corrosion resistance coupled with creep resistance that is superior to magnesium grades AM60A, AZ91A, AZ91B, and AZ91D. This alloy also...
  • Article - 17 Jun 2013
    A consortium of 38 leading organizations with Volkswagen serving as a project coordinator initiated the super LIGHT-Car (SLC) project in 2005.
  • Article - 29 Jul 2013
    Magnesium alloys have are being used as advanced structural materials for several applications, especially in automotive, aerospace, and railway industries due to their unique properties of low...
  • Article - 29 Jul 2013
    Magnesium AS41A-F die cast alloy has excellent creep resistance that is superior to magnesium alloy grades AZ91A, AZ91B, AZ91D, and AM60A. This alloy’s tensile strength, yield strength, and elongation...
  • Article - 9 Aug 2013
    Magnesium AM60A-F cast alloy is known to possess superior energy-absorption characteristics and excellent ductility. It has a slightly higher strength than magnesium AM50A, but other properties are...
  • Article - 9 Aug 2013
    Magnesium is a silvery-white extremely lightweight metal. It is the 6th most abundantly found element on earth. It is chiefly used as an alloying element for lead, aluminum, zinc, and other...
  • Article - 21 Jun 2013
    Alloy steels with low carbon content in the range of 0.1-0.3% have greater weldability and formability while maintaining the strength. In these steels, the alloying elements can either form compounds...

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