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  • 1
    UID:
    b3kat_BV044383524
    Format: 1 online ressource (vii, 102 pages)
    ISBN: 9780128092927 , 0128092920 , 0128053682 , 9780128053683
    Series Statement: Friction stir welding and processing book series
    Note: Includes bibliographical references , Friction Stir Processing of 2XXX Aluminum Alloys including Al-Li Alloys is the latest edition in the Friction Stir Welding and Processing series and examines the application of friction stir welding to high strength 2XXX series alloys, exploring the past and current developments in the field. The book features recent research showing significant benefit in terms of joint efficiency and fatigue performance as a result of friction stir welding. Friction stir welding has demonstrated significant benefits in terms of its potential to reduce cost and increase manufacturing efficiency of industrial products including transportation, particularly the aerospace sector. The 2XXX series aluminum alloys are the premium aluminum alloys used in aerospace. The book includes discussion of the potential future directions for further optimization, and is designed for both practicing engineers and materials scientists, as well as researchers in the field
    Language: English
    Keywords: Reibschweißen
    URL: Volltext  (URL des Erstveröffentlichers)
    Library Location Call Number Volume/Issue/Year Availability
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  • 2
    UID:
    edocfu_9960073725302883
    Format: 1 online resource (112 pages) : , illustrations, photographs, tables.
    ISBN: 0-12-809292-0
    Series Statement: Morgan Kaufmann Series in Data Management Systems
    Note: Front Cover -- Friction Stir Welding of 2XXX Aluminum Alloys Including Al-Li Alloys -- Copyright Page -- Contents -- Preface to This Volume of Friction Stir Welding and Processing Book Series -- 1 Friction Stir Welding -- 1.1 Friction Stir Welding of Aluminum Alloys -- 1.2 Microstructural Evolution in FSW of Precipitation Strengthened Aluminum Alloys -- 1.2.1 Weld Nugget -- 1.2.2 Thermomechanical Affected Zone -- 1.2.3 Heat-Affected Zone -- 1.3 Process Variables -- 1.3.1 FSW Tools -- 1.4 FSW Parameters -- 1.5 FSW Joint Configuration -- References -- 2 Physical Metallurgy of 2XXX Aluminum Alloys -- 2.1 Introduction -- 2.2 Weldability of Precipitation-Strengthened Aluminum Alloys -- 2.3 Classification of 2XXX Aluminum Alloys -- 2.4 Physical Metallurgy of 2XXX Aluminum Alloys -- 2.4.1 Physical Metallurgy of Al-Cu Alloys -- 2.4.2 Physical Metallurgy of Al-Cu-Mg Alloys -- 2.4.3 Physical Metallurgy of Al-Cu-Li Alloys -- 2.4.3.1 Al-Mg-Li System -- 2.4.3.2 Al-Cu-Li System -- 2.4.3.3 Al-Cu-Mg-Li-X System -- 2.4.4 Constituent Phases and Dispersoids -- 2.4.5 Effect of Predeformation -- References -- 3 Temperature Evolution and Thermal Management During FSW of 2XXX Alloys -- 3.1 Temperature Evolution -- 3.2 Thermal Management -- References -- 4 FSW of Al-Cu and Al-Cu-Mg Alloys -- 4.1 Introduction -- 4.2 FSW of Al-Cu Alloys -- 4.2.1 Microstructural Evolution -- 4.2.1.1 Weld Nugget -- 4.2.1.2 Thermomechanically Affected Zone -- 4.2.1.3 Heat Affected Zone -- 4.2.2 Mechanical Property Evolution -- 4.2.2.1 Hardness Evolution in AW Condition -- 4.2.2.2 Hardness Evolution in PWHT Condition -- 4.2.2.3 Tensile Properties -- 4.3 FSW of Al-Cu-Mg Alloys -- 4.3.1 Evolution of Microstructure and Hardness -- 4.3.1.1 Weld Nugget -- 4.3.1.2 Heat Affected Zone-Low Hardness Zones -- 4.3.1.3 Welding Parameters and Natural Aging Response -- 4.3.2 Mechanical Behavior. , References -- 5 Friction Stir Welding of Al-Li Alloys -- 5.1 Introduction -- 5.2 FSW of Al-Mg-Li Alloys -- 5.2.1 Hardness and Microstructural Evolution -- 5.3 FSW of Al-Cu-Li Alloys -- 5.3.1 Microstructure and Hardness Evolution -- 5.3.1.1 Weld Nugget -- 5.3.1.2 Thermomechanically Affected Zone -- 5.3.1.3 Heat Affected Zone -- 5.3.2 Effect of Alloy Chemistry and Postweld Heat Treatment -- References -- 6 Physical Metallurgy-Based Guidelines for Obtaining High Joint Efficiency -- Reference -- 7 Summary and Future Outlook -- Back Cover.
    Additional Edition: ISBN 0-12-805368-2
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
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  • 3
    UID:
    edoccha_9960073725302883
    Format: 1 online resource (112 pages) : , illustrations, photographs, tables.
    ISBN: 0-12-809292-0
    Series Statement: Morgan Kaufmann Series in Data Management Systems
    Note: Front Cover -- Friction Stir Welding of 2XXX Aluminum Alloys Including Al-Li Alloys -- Copyright Page -- Contents -- Preface to This Volume of Friction Stir Welding and Processing Book Series -- 1 Friction Stir Welding -- 1.1 Friction Stir Welding of Aluminum Alloys -- 1.2 Microstructural Evolution in FSW of Precipitation Strengthened Aluminum Alloys -- 1.2.1 Weld Nugget -- 1.2.2 Thermomechanical Affected Zone -- 1.2.3 Heat-Affected Zone -- 1.3 Process Variables -- 1.3.1 FSW Tools -- 1.4 FSW Parameters -- 1.5 FSW Joint Configuration -- References -- 2 Physical Metallurgy of 2XXX Aluminum Alloys -- 2.1 Introduction -- 2.2 Weldability of Precipitation-Strengthened Aluminum Alloys -- 2.3 Classification of 2XXX Aluminum Alloys -- 2.4 Physical Metallurgy of 2XXX Aluminum Alloys -- 2.4.1 Physical Metallurgy of Al-Cu Alloys -- 2.4.2 Physical Metallurgy of Al-Cu-Mg Alloys -- 2.4.3 Physical Metallurgy of Al-Cu-Li Alloys -- 2.4.3.1 Al-Mg-Li System -- 2.4.3.2 Al-Cu-Li System -- 2.4.3.3 Al-Cu-Mg-Li-X System -- 2.4.4 Constituent Phases and Dispersoids -- 2.4.5 Effect of Predeformation -- References -- 3 Temperature Evolution and Thermal Management During FSW of 2XXX Alloys -- 3.1 Temperature Evolution -- 3.2 Thermal Management -- References -- 4 FSW of Al-Cu and Al-Cu-Mg Alloys -- 4.1 Introduction -- 4.2 FSW of Al-Cu Alloys -- 4.2.1 Microstructural Evolution -- 4.2.1.1 Weld Nugget -- 4.2.1.2 Thermomechanically Affected Zone -- 4.2.1.3 Heat Affected Zone -- 4.2.2 Mechanical Property Evolution -- 4.2.2.1 Hardness Evolution in AW Condition -- 4.2.2.2 Hardness Evolution in PWHT Condition -- 4.2.2.3 Tensile Properties -- 4.3 FSW of Al-Cu-Mg Alloys -- 4.3.1 Evolution of Microstructure and Hardness -- 4.3.1.1 Weld Nugget -- 4.3.1.2 Heat Affected Zone-Low Hardness Zones -- 4.3.1.3 Welding Parameters and Natural Aging Response -- 4.3.2 Mechanical Behavior. , References -- 5 Friction Stir Welding of Al-Li Alloys -- 5.1 Introduction -- 5.2 FSW of Al-Mg-Li Alloys -- 5.2.1 Hardness and Microstructural Evolution -- 5.3 FSW of Al-Cu-Li Alloys -- 5.3.1 Microstructure and Hardness Evolution -- 5.3.1.1 Weld Nugget -- 5.3.1.2 Thermomechanically Affected Zone -- 5.3.1.3 Heat Affected Zone -- 5.3.2 Effect of Alloy Chemistry and Postweld Heat Treatment -- References -- 6 Physical Metallurgy-Based Guidelines for Obtaining High Joint Efficiency -- Reference -- 7 Summary and Future Outlook -- Back Cover.
    Additional Edition: ISBN 0-12-805368-2
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
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  • 4
    UID:
    almahu_9949697638302882
    Format: 1 online resource (112 pages) : , illustrations, photographs, tables.
    ISBN: 0-12-809292-0
    Series Statement: Morgan Kaufmann Series in Data Management Systems
    Note: Front Cover -- Friction Stir Welding of 2XXX Aluminum Alloys Including Al-Li Alloys -- Copyright Page -- Contents -- Preface to This Volume of Friction Stir Welding and Processing Book Series -- 1 Friction Stir Welding -- 1.1 Friction Stir Welding of Aluminum Alloys -- 1.2 Microstructural Evolution in FSW of Precipitation Strengthened Aluminum Alloys -- 1.2.1 Weld Nugget -- 1.2.2 Thermomechanical Affected Zone -- 1.2.3 Heat-Affected Zone -- 1.3 Process Variables -- 1.3.1 FSW Tools -- 1.4 FSW Parameters -- 1.5 FSW Joint Configuration -- References -- 2 Physical Metallurgy of 2XXX Aluminum Alloys -- 2.1 Introduction -- 2.2 Weldability of Precipitation-Strengthened Aluminum Alloys -- 2.3 Classification of 2XXX Aluminum Alloys -- 2.4 Physical Metallurgy of 2XXX Aluminum Alloys -- 2.4.1 Physical Metallurgy of Al-Cu Alloys -- 2.4.2 Physical Metallurgy of Al-Cu-Mg Alloys -- 2.4.3 Physical Metallurgy of Al-Cu-Li Alloys -- 2.4.3.1 Al-Mg-Li System -- 2.4.3.2 Al-Cu-Li System -- 2.4.3.3 Al-Cu-Mg-Li-X System -- 2.4.4 Constituent Phases and Dispersoids -- 2.4.5 Effect of Predeformation -- References -- 3 Temperature Evolution and Thermal Management During FSW of 2XXX Alloys -- 3.1 Temperature Evolution -- 3.2 Thermal Management -- References -- 4 FSW of Al-Cu and Al-Cu-Mg Alloys -- 4.1 Introduction -- 4.2 FSW of Al-Cu Alloys -- 4.2.1 Microstructural Evolution -- 4.2.1.1 Weld Nugget -- 4.2.1.2 Thermomechanically Affected Zone -- 4.2.1.3 Heat Affected Zone -- 4.2.2 Mechanical Property Evolution -- 4.2.2.1 Hardness Evolution in AW Condition -- 4.2.2.2 Hardness Evolution in PWHT Condition -- 4.2.2.3 Tensile Properties -- 4.3 FSW of Al-Cu-Mg Alloys -- 4.3.1 Evolution of Microstructure and Hardness -- 4.3.1.1 Weld Nugget -- 4.3.1.2 Heat Affected Zone-Low Hardness Zones -- 4.3.1.3 Welding Parameters and Natural Aging Response -- 4.3.2 Mechanical Behavior. , References -- 5 Friction Stir Welding of Al-Li Alloys -- 5.1 Introduction -- 5.2 FSW of Al-Mg-Li Alloys -- 5.2.1 Hardness and Microstructural Evolution -- 5.3 FSW of Al-Cu-Li Alloys -- 5.3.1 Microstructure and Hardness Evolution -- 5.3.1.1 Weld Nugget -- 5.3.1.2 Thermomechanically Affected Zone -- 5.3.1.3 Heat Affected Zone -- 5.3.2 Effect of Alloy Chemistry and Postweld Heat Treatment -- References -- 6 Physical Metallurgy-Based Guidelines for Obtaining High Joint Efficiency -- Reference -- 7 Summary and Future Outlook -- Back Cover.
    Additional Edition: ISBN 0-12-805368-2
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
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