Laser processing on metals and metal alloys

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Details

An increasing engineering applications demand the materials to possess high strength, wear and corrosion resistance with less cost. In particular, the surface of the materials plays a vital role in the engineering applications. Many surface related failure mechanisms involve wear, corrosion, erosion or high temperature oxidation which could be minimized by modifying the surfaces. To improve the surface properties of the engineering materials, in general there are several conventional methods available such as thermal spraying, oxy-fuel spraying, flame spraying, etc.,. However, they exhibit high porosity, non uniform thickness, poor bonding between the coatings and substrate. Laser surface modification techniques such as laser alloying and laser cladding involves rapid heating and cooling rates which produce meta-stable and non-equilibrium phases and offer the possibility of new materials with novel properties. Coating and substrate are metallurgically bonded. Surface properties could be tailored according to the application without sacrificing the bulk characteristics of the structure. Another advantage of this method is to conserve the strategic materials which are expensive.

Autorentext

A.Viswanathan is doing research on Laser Materials Processing and received Ph.D. in Physics from National Institute of Technology, Tiruchirappalli, India. He has obtained postdoctoral research experience at Materials Engineering, Indian Institute of Science, Bangalore, India.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783639228380
    • Sprache Englisch
    • Genre Chemie
    • Größe H5mm x B220mm x T150mm
    • Jahr 2010
    • EAN 9783639228380
    • Format Kartonierter Einband (Kt)
    • ISBN 978-3-639-22838-0
    • Titel Laser processing on metals and metal alloys
    • Autor Viswanathan Alagan
    • Untertitel Laser cladding and alloying to improve tribological properties of engineering materials
    • Gewicht 134g
    • Herausgeber VDM Verlag Dr. Müller e.K.
    • Anzahl Seiten 88

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