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Electron-Ion-Plasma Modification of a Hypoeutectoid Al-Si Alloy (Paperback): Dmitrii Zaguliaev, Victor Gromov, Sergey... Electron-Ion-Plasma Modification of a Hypoeutectoid Al-Si Alloy (Paperback)
Dmitrii Zaguliaev, Victor Gromov, Sergey Konovalov, Yurii Ivanov
R2,155 Discovery Miles 21 550 Ships in 12 - 17 working days

Electron-Ion-Plasma Modification of a Hypereutectic Al-Si Alloy details theoretical and experimental research and computer simulation of structural phase transformations in AlSi10Mn2Ni Silumin on different scale levels under electroexplosion alloying, electron beam processing and electron-plasma alloying at the nanolevel in order to create new materials. The authors summarize and analyze more than 10 years of research on the electron-ion-plasma effect on strength properties and structure-phase states' transformations of hypoeutectic Silumin. Key Features: Details physical and mathematical models of mechanisms of surface layer hardening under conditions of varying energy effects Offers insights into improved strength characteristics of Silumin Explores optimal processing modes for increased strength and improved tribological characteristics This book is a valuable resource to researchers and engineers involved with the modification of light alloy surfaces for the automotive and aeronautical industry.

Electron-Ion-Plasma Modification of a Hypoeutectoid Al-Si Alloy (Hardcover): Dmitrii Zaguliaev, Victor Gromov, Sergey... Electron-Ion-Plasma Modification of a Hypoeutectoid Al-Si Alloy (Hardcover)
Dmitrii Zaguliaev, Victor Gromov, Sergey Konovalov, Yurii Ivanov
R5,645 Discovery Miles 56 450 Ships in 12 - 17 working days

Electron-Ion-Plasma Modification of a Hypereutectic Al-Si Alloy details theoretical and experimental research and computer simulation of structural phase transformations in AlSi10Mn2Ni Silumin on different scale levels under electroexplosion alloying, electron beam processing and electron-plasma alloying at the nanolevel in order to create new materials. The authors summarize and analyze more than 10 years of research on the electron-ion-plasma effect on strength properties and structure-phase states' transformations of hypoeutectic Silumin. Key Features: Details physical and mathematical models of mechanisms of surface layer hardening under conditions of varying energy effects Offers insights into improved strength characteristics of Silumin Explores optimal processing modes for increased strength and improved tribological characteristics This book is a valuable resource to researchers and engineers involved with the modification of light alloy surfaces for the automotive and aeronautical industry.

Surface Processing of Light Alloys Subject to Concentrated Energy Flows (Paperback, 1st ed. 2021): Xizhang Chen, Sergey... Surface Processing of Light Alloys Subject to Concentrated Energy Flows (Paperback, 1st ed. 2021)
Xizhang Chen, Sergey Konovalov, Victor Gromov, Yurii Ivanov
R2,937 Discovery Miles 29 370 Ships in 10 - 15 working days

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.

Surface Processing of Light Alloys Subject to Concentrated Energy Flows (Hardcover, 1st ed. 2021): Xizhang Chen, Sergey... Surface Processing of Light Alloys Subject to Concentrated Energy Flows (Hardcover, 1st ed. 2021)
Xizhang Chen, Sergey Konovalov, Victor Gromov, Yurii Ivanov
R2,971 Discovery Miles 29 710 Ships in 10 - 15 working days

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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