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Author Mishra, Rajiv S., author.

Title Friction stir welding of high strength 7XXX aluminum alloys / Rajiv S. Mishra, Mageshwari Komarasamy.

Publication Info. Oxford : Butterworth-Heinemann is an imprint of Elsevier, 2016.

Copies

Location Call No. OPAC Message Status
 Axe Elsevier ScienceDirect Ebook  Electronic Book    ---  Available
Description 1 online resource (106 pages)
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
Series Friction stir welding and processing book series
Friction stir welding and processing book series.
Note Print version record.
Contents Front Cover; Friction Stir Welding of High-Strength 7XXX Aluminum Alloys; Copyright Page; Contents; List of Figures; List of Tables; Preface to This Volume of Friction Stir Welding and Processing Book Series; 1 Introduction; References; 2 Physical Metallurgy of 7XXX Alloys; 2.1 Precipitation Reaction in Al-Zn-Mg Alloys; 2.2 Effect of Cu; 2.3 Effect of Ag; 2.4 Effect of Microalloying; 2.5 Effect of Li; 2.6 Effect of Predeformation on Aging; 2.7 Summary; 2.8 Differential Scanning Calorimetry Observations; References; 3 Friction Stir Welding-Overview; 3.1 Introduction; 3.2 Taxonomy.
3.3 Various Zones3.4 Material Flow; 3.5 Defects in FSW; 3.6 Key Benefits of FSW; References; 4 Temperature Distribution; 4.1 Introduction; 4.2 Experimental Observations; 4.3 Numerical Observations; 4.4 Summary; References; 5 Microstructural Evolution; 5.1 Introduction; 5.2 Evolution of Grain Size; 5.3 Precipitate Evolution; 5.4 Differential Scanning Calorimetry; 5.5 Summary; References; 6 Mechanical Properties; 6.1 Introduction; 6.2 Hardness and Tensile Properties; 6.2.1 Effect of FSW Parameters; 6.2.2 Effect of Thermal Boundary Conditions; 6.2.3 Effect of Base Temper.
6.2.4 Effect of Natural Aging6.2.5 Multiple Pass FSW; 6.2.6 Effect of Material Thickness; 6.3 Fatigue and Damage Tolerance; 6.3.1 Effect of Laser and Shot Peening; 6.4 Joint Efficiency; References; 7 Corrosion; 7.1 Introduction; References; 8 Physical Metallurgy-Based Guidelines for Obtaining High Joint Efficiency; 9 Summary and Future Outlook; Back Cover.
Summary Annotation "Friction Stir Welding of High Strength 7XXX Aluminum Alloys" is the latest edition in the" Friction Stir" series and summarizes the research and application of friction stir welding to high strength 7XXX series alloys, exploring the past and current developments in the field. Friction stir welding has demonstrated significant benefits in terms of its potential to reduce cost and increase manufacturing efficiency of industrial products in transportation, particularly the aerospace sector. The 7XXX series aluminum alloys are the premium aluminum alloys used in aerospace. These alloys are typically not weldable by fusion techniques and considerable effort has been expended to develop friction stir welding parameters. Research in this area has shown significant benefit in terms of joint efficiency and fatigue performance as a result of friction stir welding. The book summarizes those results and includes discussion of the potential future directions for further optimization. Offers comprehensive coverage of friction stir welding of 7XXX series alloysDiscusses the physical metallurgy of the alloysIncludes physical metallurgy based guidelines for obtaining high joint efficiencySummarizes the research and application of friction stir welding to high strength 7XXX series alloys, exploring the past and current developments in the field.
Subject Friction stir welding.
Soudage par friction-malaxage.
TECHNOLOGY & ENGINEERING -- Technical & Manufacturing Industries & Trades.
Friction stir welding
Genre/Form dissertations.
Academic theses
Academic theses.
Thèses et écrits académiques.
Added Author Komarasamy, Mageshwari, author.
Other Form: Print version: Mishra, Rajiv S. Friction Stir Welding of High Strength 7XXX Aluminum Alloys. Mishra, Mageshwari Komarasamy. Oxford Elsevier Science & Technology 2016 0128094656 (OCoLC)950248877
ISBN 9780128094600 (electronic bk.)
0128094605 (electronic bk.)
0128094656
9780128094655
Standard No. AU@ 000059224027
DEBBG BV043894135
DEBSZ 482471433
GBVCP 879397055
UKMGB 017889119
AU@ 000068473465
AU@ 000058567759

 
    
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