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Laser processing of engineering materials : principles, procedure and industrial application /

The complete guide to understanding and using lasers in material processing!Lasers are now an integral part of modern society, providing extraordinary opportunities for innovation in an ever-widening range of material processing and manufacturing applications. The study of laser material processing...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Ion, John C.
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Amsterdam : Boston : Elsevier/Butterworth-Heinemann, 2005.
Temas:
Acceso en línea:Texto completo

MARC

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100 1 |a Ion, John C. 
245 1 0 |a Laser processing of engineering materials :  |b principles, procedure and industrial application /  |c John C. Ion. 
260 |a Amsterdam :  |b Boston :  |b Elsevier/Butterworth-Heinemann,  |c 2005. 
300 |a 1 online resource (xviii, 556 pages) :  |b illustrations 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b c  |2 rdamedia 
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504 |a Includes bibliographical references and index. 
505 0 |a Cover -- CONTENTS -- FOREWORD -- PREFACE -- ACKNOWLEDGEMENTS -- PROLOGUE -- 1 INTRODUCTION -- INTRODUCTION AND SYNOPSIS -- THE LASER -- AN INNOVATIVE MACHINE TOOL -- LASERS IN MATERIAL PROCESSING -- IN THE HOME -- IN HEALTHCARE -- IN MANUFACTURING -- IN THE ARTS -- SUMMARY AND CONCLUSIONS -- 2 EVOLUTION OF LASER MATERIAL PROCESSING -- INTRODUCTION AND SYNOPSIS -- FOUNDATIONS -- THE NATURE OF LIGHT AND MATTER -- DEVELOPMENT OF THE MASER -- PRINCIPLES OF THE LASER -- THE 1960S -- THE FIRST LASER -- THE LASER RUSH -- THE FIRST PROCESSES -- THE 1970S -- LASERS -- SYSTEMS AND PROCESSES -- THE 1980S -- LASERS -- FLEXIBLE MANUFACTURING SYSTEMS -- THE 1990S -- LASERS -- TURNKEY PROCESSING SYSTEMS -- THE NEW MILLENNIUM -- LASERS -- PROCESSES -- SUMMARY AND CONCLUSIONS -- FURTHER READING -- BIBLIOGRAPHY -- 3 LASERS -- INTRODUCTION AND SYNOPSIS -- GENERATION OF LASER LIGHT -- ENERGY LEVELS -- EXCITATION -- LIGHT AMPLIFICATION -- OUTPUT -- CONSTRUCTION AND OPERATION OF COMMERCIAL LASERS -- OUTPUT -- LASERS FOR MATERIAL PROCESSING -- ATOMS -- MOLECULES -- IONS -- EXCIMERS -- LIQUIDS -- SOLIDS -- SEMICONDUCTORS -- SUMMARY AND CONCLUSIONS -- FURTHER READING -- 4 SYSTEMS FOR MATERIAL PROCESSING -- INTRODUCTION AND SYNOPSIS -- OPTICS -- OPTICAL TERMINOLOGY -- TRANSMISSIVE OPTICS -- LENS PARAMETERS -- REFLECTIVE OPTICS -- DIFFRACTIVE OPTICS -- LASER PROCESSING CENTRES -- COMPUTER-AIDED DESIGN -- CONSTRUCTION -- TYPES OF LASER PROCESSING CENTRE -- PROCESS MONITORING AND CONTROL -- BEAM DIAGNOSTICS -- PROCESS MONITORING -- COMMISSIONING AND ACCEPTANCE -- COMMISSIONING -- ACCEPTANCE -- SAFETY -- HAZARDS -- RISK MANAGEMENT -- LASER CLASSIFICATION -- PROTECTIVE MEASURES -- SUMMARY AND CONCLUSIONS -- FURTHER READING -- 5 ENGINEERING MATERIALS -- INTRODUCTION AND SYNOPSIS -- ATOMIC STRUCTURE -- METALS AND ALLOYS -- CERAMICS AND GLASSES -- POLYMERS -- COMPOSITES -- MICROSTRUCTURE -- EQUILIBRIUM TRANSFORMATIONS -- PHASE DIAGRAMS FOR ENGINEERING MATERIALS -- NON-EQUILIBRIUM TRANSFORMATIONS -- SOLIDIFICATION -- INDUSTRIAL MATERIALS -- METALS AND ALLOYS -- CERAMICS AND GLASSES -- POLYMERS -- COMPOSITES -- PROPERTIES OF MATERIALS -- ABSORPTION COEFFICIENT -- ABSORPTIVITY -- SPECIFIC HEAT CAPACITY -- THERMAL CONDUCTIVITY -- DENSITY -- THERMAL DIFFUSIVITY -- COEFFICIENT OF THERMAL EXPANSION -- TRANSFORMATION TEMPERATURES -- LATENT HEAT OF MELTING -- LATENT HEAT OF VAPORIZATION -- MATERIAL PROPERTY CHARTS -- THERMAL CONDUCTIVITY VS HEAT CAPACITY -- THERMAL CONDUCTIVITY VS THERMAL DIFFUSIVITY -- MECHANICAL STRAIN VS THERMAL STRAIN -- SUMMARY AND CONCLUSIONS -- FURTHER READING -- BIBLIOGRAPHY -- 6 LASER PROCESSING DIAGRAMS -- INTRODUCTION AND SYNOPSIS -- EMPIRICAL METHODS -- PROCESS VARIABLES AND PROCESSING MECHANISMS -- AN EMPIRICAL PROCESS CHART -- MODEL-BASED METHODS -- PROCESS MODELLING -- A MODEL-BASED PROCESS DIAGRAM -- DIMENSIONLESS GROUPS OF PROCESS VARIABLES -- A DIME. 
520 |a The complete guide to understanding and using lasers in material processing!Lasers are now an integral part of modern society, providing extraordinary opportunities for innovation in an ever-widening range of material processing and manufacturing applications. The study of laser material processing is a core element of many materials and manufacturing courses at undergraduate and postgraduate level. As a consequence, there is now a vast amount of research on the theory and application of lasers to be absorbed by students, industrial researchers, practising engineers and production managers. Wr. 
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650 6 |a Lasers  |x Applications industrielles. 
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