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Aluminum Alloys--Contemporary Research and Applications : Contemporary Research and Applications.

Author: A K Vasudevan; Roger D Doherty
Publisher: Saint Louis : Elsevier Science, 2014.
Series: Treatise on materials science and technology.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
This book discusses the structure and properties of the current and potential aluminum alloys in terms of their structure (and structural transformations by new processing methods) and the relationship between structure and mechanical and other properties. The alternative materials that challenge aluminum are considered as well, since the challenge of new competitive materials is a strong influence on innovation.  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Vasudevan, A.K.
Aluminum Alloys--Contemporary Research and Applications : Contemporary Research and Applications.
Saint Louis : Elsevier Science, ©2014
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: A K Vasudevan; Roger D Doherty
ISBN: 9780323140232 0323140238
OCLC Number: 1044728081
Notes: IV. Hybrid Powder-Metallurgy Alloy Systems.
Description: 1 online resource (727 pages).
Contents: Front Cover; Treatise on Materials Science and Technology; Copyright Page; Table of Contents; Contributors; Preface; PART 1: HISTORICAL BACKGROUND; Chapter 1. History of Wrought-Aluminum-Alloy Development; I. Al-Mn Alloys; II. Al-Cu Alloys; III. Al-Mg-Si Alloys; IV. Al-Mg Alloys; V. Al-Zn-Mg-Cu Alloys; VI. Al-Zn-Mg Alloys; VII. Overview; References; PART 2: CONVENTIONAL ALUMINUM ALLOYS; Chapter 2. Heat-Treatable Aluminum Alloys; I. Introduction; II. Precipitation in Age-Hardening Systems; III. Strengthening in Age-Hardening Systems; IV. Alloy and Temper Designations; V. 2XXX Alloys. VI. 6XXX AlloysVII. 7XXX Alloys; VIII. Properties of Heat-Treatable Aluminum Alloys; References; Chapter 3. Wrought Non-Heat-Treatable Aluminum Alloys; I. Introduction; II. 1XXX Alloys; III. 3XXX Alloys; IV. 8XXX Alloys; V. 5XXX Alloys; VI. Special Applications; VII. Summary; Acknowledgments; References; PART 3: PROCESSING OF ALUMINUM ALLOYS; Chapter 4. Ingot Casting in the Aluminum Industry; I. Introduction and Background; II. DC Casting Process; III. Control of DC Ingot Structure; IV. Deficiencies of the DC Casting Process; V. DC Ingot Casting Process Development. VI. Evolution of Ingot StructureVII. Continuous (Near-Net Shape) Casting Processes; VIII. Summary and Future Trends; References; Chapter 5. Thermomechanical Processing of Aluminum Alloys; I. Introduction; II. Microstructural Development during Thermomechanical Processing; III. TMP for Grain-Size Control in Aluminum Alloys; IV. TMP for Precipitate-Size and -Distribution Control; V. Applications; VI. Summary; Acknowledgments; References; Chapter 6. Welding of Aluminum Alloys; I. Introduction; II. Conventional Welding Practice; III. Metallurgical Concerns; IV. Welding of Modern Alloys. V. SummaryReferences; Chapter 7. Superplastic Aluminum Alloys; I. Introduction; II. Fundamentals of Superplasticity; III. Aluminum Alloys; IV. Summary; References; PART 4: CURRENT ALUMINUM ALLOYS; Chapter 8. Aluminum-Lithium Alloys; I. Introduction; II. History; III. Physical Metallurgy of Al-Li-Based Alloys; IV. Engineering Properties; V. General Characteristics of Current Commercial Al-Li Alloys; VI. Applications; References; Chapter 9. Fiber-Reinforced Aluminum Alloys; I. Introduction; II. Composite Fabrication Techniques; III. Properties of Fiber-Reinforced Aluminum Alloys; IV. Summary.
Series Title: Treatise on materials science and technology.

Abstract:

This book discusses the structure and properties of the current and potential aluminum alloys in terms of their structure (and structural transformations by new processing methods) and the relationship between structure and mechanical and other properties. The alternative materials that challenge aluminum are considered as well, since the challenge of new competitive materials is a strong influence on innovation. The book bridges the gap between current scientific understanding and engineering practice. It is an up-to-date reference that will be of use to researchers and advanced students in m.

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