Laser Surface Engineering Books

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Laser Surface Engineering


Laser Surface Engineering
  • Author : Jonathan R. Lawrence
  • Publisher : Elsevier
  • Release : 2014-10-02
  • ISBN : 9781782420798
  • Language : En, Es, Fr & De
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Lasers can alter the surface composition and properties of materials in a highly controllable way, which makes them efficient and cost-effective tools for surface engineering. This book provides an overview of the different techniques, the laser-material interactions and the advantages and disadvantages for different applications. Part one looks at laser heat treatment, part two covers laser additive manufacturing such as laser-enhanced electroplating, and part three discusses laser micromachining, structuring and surface modification. Chemical and biological applications of laser surface engineering are explored in part four, including ways to improve the surface corrosion properties of metals. Provides an overview of thermal surface treatments using lasers, including the treatment of steels, light metal alloys, polycrystalline silicon and technical ceramics Addresses the development of new metallic materials, innovations in laser cladding and direct metal deposition, and the fabrication of tuneable micro- and nano-scale surface structures Chapters also cover laser structuring, surface modification, and the chemical and biological applications of laser surface engineering

Lasers in Surface Engineering


Lasers in Surface Engineering
  • Author : Narendra B. Dahotre
  • Publisher : ASM International
  • Release : 1998-01-01
  • ISBN : 1615032231
  • Language : En, Es, Fr & De
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Presents various facets of laser surface treatment, emphasizing technologies that are expected to be important soon. The topics include fundamentals and types, surface texturing, heat treatment, metallic and intermetallic coating, the laser deposition of ceramic coatings, polymeric coatings, the cor

Laser Surface Engineering of Aluminum Alloys


Laser Surface Engineering of Aluminum Alloys
  • Author : Sandip Harimkar
  • Publisher : Butterworth-Heinemann
  • Release : 2018-03-01
  • ISBN : 9780128030578
  • Language : En, Es, Fr & De
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Laser Surface Engineering of Aluminum Alloys presents a comprehensive overview of LSE approaches (laser surface melting, laser alloying, laser cladding, laser composite surfacing, laser shock peening) for all of the Al alloy systems, including the developing 8xxx series alloys. The book discusses in detail the influence of laser processing parameters on the development of microstructure, mechanical/electrochemical properties, residual stresses and defects. Laser surface engineering (LSE) of Al alloys is of considerable scientific and technological interest due to unique processing features such as rapid cooling rate, non-contact heating and superior process control. Aluminum (Al) alloys are the one of the most popular structural materials due to their ductility and high strength-to-weight ratio, and have been extensively used in aircraft, automobile and sports industries. However, these alloys often exhibit insufficient corrosion resistance, stress-corrosion cracking resistance, and wear resistance properties for applications in these industries. Significant efforts are now directed toward modifying the surface characteristics of these alloys for improved surface properties. Provides a comprehensive overview of laser surface processing approaches, including thermal aspects, compositional effects and microstructure development associated with each approach Features separate chapters/sections for all Al alloy systems, including newer emerging systems Provides a valuable reference for further research in the area Covers the techniques used for surface preparation of aluminum alloys for laser processing, including details such as focus parameters, nozzle designs, inert gas and safety relevant to operation of practical laser surface processing set-ups

Surface Engineering with High Energy Beams


Surface Engineering with High Energy Beams
  • Author : A.P. Loureiro
  • Publisher : Trans Tech Publications Ltd
  • Release : 1991-01-01
  • ISBN : 9783035703276
  • Language : En, Es, Fr & De
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The proceedings of the 2nd Intl. Conference on Surface Engineering with High Energy Beams document well the use and applications of high energy laser, electron and ion beams, and demonstrate the great versatility of these techniques in generating new engineered surfaces for important engineering materials.

Laser Surface Modification of Alloys for Corrosion and Erosion Resistance


Laser Surface Modification of Alloys for Corrosion and Erosion Resistance
  • Author : C T Kwok
  • Publisher : Elsevier
  • Release : 2012-03-20
  • ISBN : 9780857095831
  • Language : En, Es, Fr & De
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Corrosion and erosion processes often occur synergistically to cause serious damage to metal alloys. Laser surface modification techniques such as laser surface melting or alloying are being increasingly used to treat surfaces to prevent corrosion or repair corroded or damaged components. Laser surface modification of alloys for corrosion and erosion resistance reviews the wealth of recent research on these important techniques and their applications. After an introductory overview, part one reviews the use of laser surface melting and other techniques to improve the corrosion resistance of stainless and other steels as well as nickel-titanium and a range of other alloys. Part two covers the use of laser surface modification to prevent different types of erosion, including liquid impingement, slurry (solid particle) and electrical erosion as well as laser remanufacturing of damaged components. With its distinguished editor and international team of contributors, Laser surface modification of alloys for corrosion and erosion resistance is a standard reference for all those concerned with preventing corrosion and erosion damage in metallic components in sectors as diverse as energy production and electrical engineering. Reviews recent research on the use of laser surface modification techniques, including the prevention of corrosion and repair of corroded or damaged components Discusses the techniques for improving the corrosion resistance of steels, nickel-titanium and a range of alloys Analyses the use of laser surface modification to prevent different types of erosion, including liquid impingement and laser remanufacturing of damaged components