Laser Deposition of Titanium and Nickel Intermetallic Coatings on Titanium for Aerospace Applications

Laser Deposition of Titanium and Nickel Intermetallic Coatings on Titanium for Aerospace Applications
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Total Pages : 306
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ISBN-10 : OCLC:908748606
ISBN-13 :
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Book Synopsis Laser Deposition of Titanium and Nickel Intermetallic Coatings on Titanium for Aerospace Applications by : Mokgadi Nomsa Mokgalaka

Download or read book Laser Deposition of Titanium and Nickel Intermetallic Coatings on Titanium for Aerospace Applications written by Mokgadi Nomsa Mokgalaka and published by . This book was released on 2014 with total page 306 pages. Available in PDF, EPUB and Kindle. Book excerpt: Titanium alloys exhibit poor tribological characteristic which include abrasion resistance, metal to metal wear resistance and solid particle erosion and cavitation due to low surface hardness and high coefficient of friction. These poor properties have limited the application of titanium alloys as engineering tribological components, tools and parts that operate in severe wear and friction conditions. Laser processing defects such as pores, cracks and segregation pose a huge threat to the quality and the microstructure of the deposited layer. Defects caused by the parameters lead to severe wear and corrosion occurrence, hence, precise control of the parameters are crucial and it depends on the properties of the material used. It is postulated that Nickel Titanium (NiTi) is a promising candidate as reinforcement matrix material for wear resistant alloy. The wear resistance would be further enhanced if NiTi is in-situ incorporated onto titanium matrix by laser cladding to yield hard intermetallic phases. The main goal of the study is to develop corrosive-wear resistant thin surface coatings on Ti-6Al-4V alloy for automotive and aerospace applications by depositing Titanium and Nickel elemental powders to form in-situ NiTi intermetallic using laser cladding technique.


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Discusses the main objectives of this research: 1. Mathematical determination of the deposition velocity for successful cold spray coating of Ti-6Al-4V with SiC