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  • Ti4Al4Mo2Sn is a high strength forging titanium alloy. Its silicon content improves strength and creep resistance at intermediate temperatures. Other designations, phyical and mechanical properties,...
  • Physical and mechanical properties are provided for Ti2.5Cu. Composition details and alternative designations are also listed.
  • Physical and mechanical properties for the high strength titanium alloy Ti15V3Cr3Sn3Al are provided. Fabrication guidelines and alternative designations for Ti15V3Cr3Sn3Al are also provided.
  • Physical and mechanical properties for this high strength titanium alloy. Fabrication and alternative designations for Ti10V2Fe3Al are also provided.
  • Ti6Al6V2Sn is heat treatable to higher strengths and larger sections compared to Ti6Al4V. Its main use is in airframes. Composition, physical and mechanical properties and fabrication are all covered.
  • Ti5Al2.5Sn is a high strength alloy commonly used in airframe and jet engine applications. It has excellent weldability, stability and high temperature strength. Composition, designations, physical...
  • Laser forming is a deposition process which can produce titanium parts directly from CAD drawings. It has advantages over casting and machining in certain applications. The process, advantages,...
  • Titanium is probably best known for its application in aircraft components. This article covers many titanium alloys and there usage in the aerospace industry.
  • Ti6Al4V is an alpha-beta alloy and the most widely used of all the titanium alloys. Ti6Al4V ELI is also briefly described. The composition, physical and mechanical properties and fabrication details...
  • Metal matrix composites and their origins are briefly described. Powder metallurgy based production methods such as the internal oxidation process, using salt-based precursors, mechanical alloying...
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