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Laserschockver arbeitung von FCC-Metallen: mechanische Eigenschaften und mikrostrukture ll
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eBay-Artikelnr.:364695671980
Artikelmerkmale
- Artikelzustand
- 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
- 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
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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