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Laserschockverarbeitung von FCC-Metallen: mechanische Eigenschaften und mikrostrukturell

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ISBN-13
9783642356735
Book Title
Laser Shock Processing of FCC Metals
ISBN
9783642356735
Subject Area
Technology & Engineering, Science
Publication Name
Laser Shock Processing of FCC Metals : Mechanical Properties and Micro-Structural Strengthening Mechanism
Publisher
Springer Berlin / Heidelberg
Item Length
9.3 in
Subject
Lasers & Photonics, Physics / Quantum Theory, Applied Sciences, Materials Science / Metals & Alloys, Manufacturing, Metallurgy
Publication Year
2013
Series
Springer Series in Materials Science Ser.
Type
Textbook
Format
Hardcover
Language
English
Author
Kaiyu Luo, Yongkang Zhang, Jinzhong Lu
Item Weight
17 Oz
Item Width
6.1 in
Number of Pages
Xi, 194 Pages

Über dieses Produkt

Product Identifiers

Publisher
Springer Berlin / Heidelberg
ISBN-10
3642356737
ISBN-13
9783642356735
eBay Product ID (ePID)
150583398

Product Key Features

Number of Pages
Xi, 194 Pages
Language
English
Publication Name
Laser Shock Processing of FCC Metals : Mechanical Properties and Micro-Structural Strengthening Mechanism
Publication Year
2013
Subject
Lasers & Photonics, Physics / Quantum Theory, Applied Sciences, Materials Science / Metals & Alloys, Manufacturing, Metallurgy
Type
Textbook
Author
Kaiyu Luo, Yongkang Zhang, Jinzhong Lu
Subject Area
Technology & Engineering, Science
Series
Springer Series in Materials Science Ser.
Format
Hardcover

Dimensions

Item Weight
17 Oz
Item Length
9.3 in
Item Width
6.1 in

Additional Product Features

Intended Audience
Scholarly & Professional
LCCN
2013-931648
Dewey Edition
23
Series Volume Number
179
Number of Volumes
1 vol.
Illustrated
Yes
Dewey Decimal
621.3662
Table Of Content
Surface integrity of LY2 aluminum alloy subjected to laser shock processing.- Tensile properties and fatigue life of LY2 aluminum alloy by laser shock processing.- Grain refinement of the alloys with high stacking fault energy (SFE) induced by ultra-high plastic strain during multiple laser shock processing impacts.- Mechanical properties of ANSI 304 stainless steel subjected to laser shock processing.- Stress corrosion cracking (SCC) resistance of ANSI 304 austenitic stainless steel subjected to laser shock processing.- Grain refinement of the alloys with low stacking fault energy (SFE) induced by ultra-high plastic strain during multiple laser shock processing impacts.- Grain refinement of the alloys with medium stacking fault energy (SFE) induced by ultra-high plastic strain during multiple laser shock processing impacts.
Synopsis
Laser shock processing (LSP) is a new and promising surface treatment technique for improving the fatigue durability, corrosion, wear resistance and other mechanical properties of metals and alloys. During LSP, the generated shock wave can introduce a deep compressive residual stress into the material, due to its high-pressure (GPa-TPa), ultra-fast (several tens nanoseconds), ultra-high strain-rate and high-energy. The overall properties and behavior of metal materials subjected to LSP were significantly improved because a refined surface layer was successfully obtained. Nevertheless, up to now, a clear scenery between micro-structure and macro-property of the refined surface layer, especially formation of sub-micrometer grains from coarse grains during severe plastic deformation, is still pending. Therefore, the basic studies of the underlying mechanism for grain refinement by ultra-high strain-rate presented in this book becomes more and more crucial., Surface integrity of LY2 aluminum alloy subjected to laser shock processing.- Tensile properties and fatigue life of LY2 aluminum alloy by laser shock processing.- Grain refinement of the alloys with high stacking fault energy (SFE) induced by ultra-high plastic strain during multiple laser shock processing impacts.- Mechanical properties of ANSI 304 stainless steel subjected to laser shock processing.- Stress corrosion cracking (SCC) resistance of ANSI 304 austenitic stainless steel subjected to laser shock processing.- Grain refinement of the alloys with low stacking fault energy (SFE) induced by ultra-high plastic strain during multiple laser shock processing impacts.- Grain refinement of the alloys with medium stacking fault energy (SFE) induced by ultra-high plastic strain during multiple laser shock processing impacts., This book covers a promising new surface treatment technique for improving fatigue durability, corrosion, wear resistance and other mechanical properties of metals and alloys. Examines the underlying mechanism for grain refinement by ultra-high strain rate.
LC Classification Number
TA459-492

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