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Surface processing of light alloys s...
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Chen, Xizhang.
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Surface processing of light alloys subject to concentrated energy flows
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Surface processing of light alloys subject to concentrated energy flows/ by Xizhang Chen ... [et al.].
其他作者:
Chen, Xizhang.
出版者:
Singapore :Springer Singapore : : 2021.,
面頁冊數:
xiii, 217 p. :ill., digital ;24 cm.
內容註:
Modifying of Structure-Phase States and Properties of Metals by Concentrated Energy Flows -- Special Analysis Aspects of Modified Light Alloys -- Structure and Properties of as Cast Silumin and Processed by Intense Pulsed Electron Beam -- Fractography of Silumin Surface Fractured in High-Cycle Fatigue Tests -- Degradation of Silumin Structure and Properties in High-Cycle Fatigue Tests -- Modifying of Titanium Vt6 Alloy Surface by Electrical Explosion Alloying -- Modifying of Tutianium Alloy Vt6 Surface by Electrical Explosion Alloying and Electron-Beam Processing -- Microhardness and Wear Resistance of Modified Layers -- Effect of Electron-Beam Processing on Structure and Phase Composition of Titanium Vt1-0 Fractured In Fatigue Tests.
Contained By:
Springer Nature eBook
標題:
Structural materials. -
電子資源:
https://doi.org/10.1007/978-981-33-4228-6
ISBN:
9789813342286
Surface processing of light alloys subject to concentrated energy flows
Surface processing of light alloys subject to concentrated energy flows
[electronic resource] /by Xizhang Chen ... [et al.]. - Singapore :Springer Singapore :2021. - xiii, 217 p. :ill., digital ;24 cm.
Modifying of Structure-Phase States and Properties of Metals by Concentrated Energy Flows -- Special Analysis Aspects of Modified Light Alloys -- Structure and Properties of as Cast Silumin and Processed by Intense Pulsed Electron Beam -- Fractography of Silumin Surface Fractured in High-Cycle Fatigue Tests -- Degradation of Silumin Structure and Properties in High-Cycle Fatigue Tests -- Modifying of Titanium Vt6 Alloy Surface by Electrical Explosion Alloying -- Modifying of Tutianium Alloy Vt6 Surface by Electrical Explosion Alloying and Electron-Beam Processing -- Microhardness and Wear Resistance of Modified Layers -- Effect of Electron-Beam Processing on Structure and Phase Composition of Titanium Vt1-0 Fractured In Fatigue Tests.
This book presents studies on the surface modification of aluminum and titanium alloys by electric explosive alloying and electron-beam processing. It also describes and analyzes the physical mechanism of energy actions of these technologies on physical and mechanical properties and discusses their potential use in industry to improve the characteristics of finished products. The book is intended for specialists in the field of condensed matter physics, metallurgy and heat treatment and materials science, as well as graduate and senior students in relevant fields.
ISBN: 9789813342286
Standard No.: 10.1007/978-981-33-4228-6doiSubjects--Topical Terms:
3489346
Structural materials.
LC Class. No.: TA418.9.C57
Dewey Class. No.: 620.11
Surface processing of light alloys subject to concentrated energy flows
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Modifying of Structure-Phase States and Properties of Metals by Concentrated Energy Flows -- Special Analysis Aspects of Modified Light Alloys -- Structure and Properties of as Cast Silumin and Processed by Intense Pulsed Electron Beam -- Fractography of Silumin Surface Fractured in High-Cycle Fatigue Tests -- Degradation of Silumin Structure and Properties in High-Cycle Fatigue Tests -- Modifying of Titanium Vt6 Alloy Surface by Electrical Explosion Alloying -- Modifying of Tutianium Alloy Vt6 Surface by Electrical Explosion Alloying and Electron-Beam Processing -- Microhardness and Wear Resistance of Modified Layers -- Effect of Electron-Beam Processing on Structure and Phase Composition of Titanium Vt1-0 Fractured In Fatigue Tests.
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This book presents studies on the surface modification of aluminum and titanium alloys by electric explosive alloying and electron-beam processing. It also describes and analyzes the physical mechanism of energy actions of these technologies on physical and mechanical properties and discusses their potential use in industry to improve the characteristics of finished products. The book is intended for specialists in the field of condensed matter physics, metallurgy and heat treatment and materials science, as well as graduate and senior students in relevant fields.
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