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    1. Naturvetenskap och teknik
    2. Teknik och industri
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    4. Flyg- och rymdteknik

    Welding and Joining of Aerospace Materials

    AvMahesh Chaturvedi

    Inbunden, Engelska, 2011

    Del i serien Woodhead Publishing Series in Welding and Other Joining Technologies

    2 430 kr

    Beställningsvara. Skickas inom 10-15 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Welding and joining techniques play an essential role in both the manufacture and in-service repair of aerospace structures and components, and these techniques become more advanced as new, complex materials are developed. Welding and joining of aerospace materials provides an in-depth review of different techniques for joining metallic and non-metallic aerospace materials.

    Part one opens with a chapter on recently developed welding techniques for aerospace materials. The next few chapters focus on different types of welding such as inertia friction, laser and hybrid laser-arc welding. The final chapter in part one discusses the important issue of heat affected zone cracking in welded superalloys. Part two covers other joining techniques, including chapters on riveting, composite-to-metal bonding, diffusion bonding and recent improvements in bonding metals. Part two concludes with a chapter focusing on the use of high-temperature brazing in aerospace engineering. Finally, an appendix to the book covers the important issue of linear friction welding.

    With its distinguished editor and international team of contributors, Welding and joining of aerospace materials is an essential reference for engineers and designers in the aerospace, materials and welding and joining industries, as well as companies and other organisations operating in these sectors and all those with an academic research interest in the subject.

    • Provides an in-depth review of different techniques for joining metallic and non-metallic aerospace materials
    • Discusses the important issue of heat affected zone cracking in welded superalloys
    • Covers many joining techniques, including riveting, composite-to-metal bonding and diffusion bonding

    Produktinformation

    • Utgivningsdatum:2011-12-19
    • Mått:156 x 234 x undefined mm
    • Vikt:840 g
    • Format:Inbunden
    • Språk:Engelska
    • Serie:Woodhead Publishing Series in Welding and Other Joining Technologies
    • Antal sidor:448
    • Förlag:Elsevier Science
    • ISBN:9781845695323

    Utforska kategorier

    • Flyg- och rymdteknik inom Naturvetenskap och teknik
    • Maskinteknik och material inom Naturvetenskap och teknik

    Mer om författaren

    Mahesh C. Chaturvedi is Professor Emeritus in the Department of Mechanical and Manufacturing Engineering at the University of Manitoba, Canada.

    Recensioner i media

    "…enough metallurgical information to impress and inspire the specialist researcher, while engineers, designers and mature students will learn much about the practicalities of joining materials…the bulk of text is first rate. This collection of papers contains over 750 references and enough metallurgical information to impress and inspire the specialist researcher, while engineers, designers and mature students will learn much about the practicalities of joining materials. […] The bulk of text is first rate." --The Aeronautical Journal

    Innehållsförteckning

    • Contributor contact detailsPrefacePart I: Welding techniquesChapter 1: New welding techniques for aerospace engineeringAbstract:1.1 Introduction1.2 Airworthiness implications of new welding and joining technologies1.3 New developments in welding and joining of aerospace materials1.4 Failure of welded and bonded joints in service1.5 The importance of international standardsChapter 2: Inertia friction welding (IFW) for aerospace applicationsAbstract:2.1 Introduction2.2 Process parameters, heat generation and modelling2.3 Microstructural development2.4 Development of mechanical properties2.5 Residual stress development2.6 Future trends2.7 Source of further information and adviceChapter 3: Laser welding of metals for aerospace and other applicationsAbstract:3.1 Introduction3.2 Operating principles and components of laser sources – an overview3.3 Key characteristics of laser light3.4 Basic phenomena of laser light interaction with metals3.5 Laser welding fundamentals3.6 Laser weldability of titanium alloys3.7 Future trends3.8 Sources of further information and adviceChapter 4: Hybrid laser-arc welding of aerospace and other materialsAbstract:4.1 Introduction4.2 Fundamentals of hybrid laser-arc welding4.3 Hybrid laser-arc welding of aeronautical materials4.4 Future trendsChapter 5: Heat-affected zone cracking in welded nickel superalloysAbstract:5.1 Introduction5.2 Characteristics of crack-inducing intergranular liquid and factors that affect heat-affected zone (HAZ) cracking5.3 Formation of HAZ grain-boundary liquid5.4 Constitutional liquation of second-phase particles in nickel-based superalloys5.5 Role of minor elements in HAZ intergranular liquation cracking5.6 ConclusionsPart II: Other joining techniquesChapter 6: Assessing the riveting process and the quality of riveted joints in aerospace and other applicationsAbstract:6.1 Introduction6.2 Riveting process and quality assessment of the rivet installation6.3 Determination of residual strains and interference in riveted lap joints6.4 Summary and recommendations for the riveting process research6.5 Case studies using the force-controlled riveting method6.6 Conclusions6.7 AcknowledgementsChapter 7: Quality control and non-destructive testing of self-piercing riveted joints in aerospace and other applicationsAbstract:7.1 Introduction7.2 Computer vision7.3 Ultrasonic testing7.4 ConclusionChapter 8: Improvements in bonding metals for aerospace and other applicationsAbstract:8.1 Introduction: key problems in metal bonding8.2 Developments in the range of adhesives for metal8.3 Developments in surface treatment techniques for metal8.4 Developments in joint design8.5 Developments in modelling and testing the effectiveness of adhesive-bonded metal joints8.6 Future trends8.7 Sources of further information and adviceChapter 9: Composite to metal bonding in aerospace and other applicationsAbstract:9.1 Introduction9.2 Testing of adhesive bonded structures9.3 Bonding to the metal substrate9.4 Composite pre-treatment9.5 Bonding composite to metal9.6 Adhesives9.7 Composite–metal bonded structures9.8 Conclusions9.9 AcknowledgementsChapter 10: Diffusion bonding of metal alloys in aerospace and other applicationsAbstract:10.1 Introduction10.2 Diffusion-bonding process10.3 Conclusions and future trendsChapter 11: High-temperature brazing in aerospace engineeringAbstract:11.1 Introduction11.2 Filler metals11.3 Trends in brazing at high temperature11.4 Conclusion and future trendsAppendix: Linear friction welding in aerospace engineeringIndex