This work 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.
This work 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.
Victor Gromov, Siberian State Industrial University, Novokuznetsk, RU Sergey Konovalov, Samara National Research University, Samara, RU Dmitrii Zaguliaev, Siberian State Industrial University, Novokuznetsk, RU Yurii Ivanov, Russian Academy of Sciences, Moscow, RU
Inhaltsangabe
Literature Review. Methods of investigation. Electroexplosive alloying (EEA) of hypoeutectic silumin. Electron beam processing (EBP) of hypoeutectic silumin. Combined (EEA+EBP) processing. Mathematical models of heterogeneous plasma flows and electron beam treatment of silumin.
Literature Review. Methods of investigation. Electroexplosive alloying (EEA) of hypoeutectic silumin. Electron beam processing (EBP) of hypoeutectic silumin. Combined (EEA+EBP) processing. Mathematical models of heterogeneous plasma flows and electron beam treatment of silumin.
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