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Laser Heating Applications: Analytical Modelling

Autor Bekir Sami Yilbas
en Limba Engleză Hardback – aug 2012
Thermal treatment of materials occupies a significant, increasing proportion of MSE activity and is an integral component of modern curricula as well as a highly monetized component of industrial production. Laser processing of materials offers advantages over conventional methods of processing. Some of these advantages include fast processing, precision of operation, low cost and local treatment. Analytical modeling of laser processing gives insight into the physical and mathematical aspects of the problem and provides useful information on process optimization. This work from Professor Yilbas, a world-recognized expert in laser materials processing, provides the necessary depth and weight of analysis, collating mathematical and physical modeling and experimentation with the necessary discussion of applications. It meets coherence in topics with high technical quality. It encompasses the basics of laser processing and provides an introduction to analytical modeling of the process. Fundamentals and formulation of the heating process are presented for numerous heating conditions.


  • Detailed analytical solutions for laser heating problems (including thermal stress) aids analysis of linkage between process parameters, such as laser pulse and laser intensity, and material response, such as temperature and stress
  • Encompasses practical solutions to thermal heating problems (unlike the length solutions of numerical schemes)
  • Extensive fourier and non-fourier treatments and consequent analysis provides improved understanding of mathematical transformations
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Specificații

ISBN-13: 9780124157828
ISBN-10: 0124157823
Pagini: 280
Ilustrații: 180 illustrations
Dimensiuni: 152 x 229 x 20 mm
Greutate: 0.64 kg
Editura: ELSEVIER SCIENCE

Public țintă

Academicians, researchers, engineers, and graduate students. This book will be written for materials processing specialists, be they graduate students, faculty from academic institutions and those who work on lasers in manufacturing. The reader of this book can also be engineers from industry. The lowest academic level required is B.Sc./BEng

Cuprins

1. Introduction to laser heating process
2. Conduction limited laser pulsed laser heating : fourier heating model
3. Non-conduction limited pulsed laser heating: fourier heating model
4. Laser cutting process
5. Thermal stress analysis
6. Laser short-pulse heating: non-equilibrium heating