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Electron Beam Impact on Microstructure and Microhardness of Ti–6Al–4V Titanium Alloy Produced by Wire Electron-Beam Additive Manufacturing Technology and Selective Laser Alloying at Simulation of Electronic-Beam Welding.
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- Physics of Metals & Metallography, 2024, v. 125, n. 7, p. 790, doi. 10.1134/S0031918X24600842
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Influence of the Order-Disorder Phase Transition on the Grain Structure of Iron–Palladium Alloy.
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- Russian Physics Journal, 2003, v. 46, n. 11, p. 1098, doi. 10.1023/B:RUPJ.0000024360.91688.fe
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Effect of Ultrasonic Impact Treatment on Microstructure and Fatigue Life of 3D Printed Ti–6Al–4V Titanium Alloy.
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- Physics of Metals & Metallography, 2023, v. 124, n. 10, p. 1059, doi. 10.1134/S0031918X23601816
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The Microstructural and Phase Evolution of the 3D Printed Ti–6Al–4V Alloy during Mechanical Loading.
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- Physics of Metals & Metallography, 2023, v. 124, n. 2, p. 217, doi. 10.1134/S0031918X23700114
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Increasing the Fatigue Durability of an 3D-Printed Ti–6Al–4V Alloy Electron-Beam Welded Joint by Ultrasonic Electropulsing Shock Treatment.
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- Physics of Metals & Metallography, 2022, v. 123, n. 12, p. 1201, doi. 10.1134/S0031918X22601512
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The Effect of Electropulsing-Assisted Ultrasonic Impact Treatment on the Microstructure, Phase Composition, and Microhardness of Electron-Beam-Welded 3D Printed Ti–6Al–4V Alloy.
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- Physics of Metals & Metallography, 2022, v. 123, n. 9, p. 893, doi. 10.1134/S0031918X22090101
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- Article
Effect of Surface Electropulsing Assisted Ultrasonic Impact Treatment on the Microstructure, Phase Composition, and Microhardness of 3D Printed Ti–6Al–4V Alloy.
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- Physics of Metals & Metallography, 2021, v. 122, n. 7, p. 688, doi. 10.1134/S0031918X21070073
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- Article
The Effect of Electron Beam Welding on the Microstructure and Microhardness of 3D-Printed Products from Titanium Alloy Ti–6Al–4V.
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- Physics of Metals & Metallography, 2021, v. 122, n. 2, p. 141, doi. 10.1134/S0031918X21020034
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Change in the Phase Composition and Lattice Parameters of the Solid Solution Based on α-Ti in the Surface Layers of the Ti–6Al–4V Alloy Subjected to Electron-Beam Treatment.
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- Physics of Metals & Metallography, 2020, v. 121, n. 2, p. 143, doi. 10.1134/S0031918X20020143
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- Article
Structure and Lattice Strains in the Surface Сr–Mn–N Steel Layer Formed by a Combination of Friction and Electron-Beam Treatments.
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- Physics of Metals & Metallography, 2019, v. 120, n. 11, p. 1071, doi. 10.1134/S0031918X19110115
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- Article
Effect of Substrate Cooling on the Microstructure and Phase Composition of Ti–6Al–4V Titanium-Based Alloy Products Obtained Using Additive Technologies.
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- Technical Physics, 2020, v. 65, n. 3, p. 392, doi. 10.1134/S1063784220030196
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- Article