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A.G. Mochugovskiy

Researcher at National University of Science and Technology

Publications -  27
Citations -  361

A.G. Mochugovskiy is an academic researcher from National University of Science and Technology. The author has contributed to research in topics: Alloy & Superplasticity. The author has an hindex of 6, co-authored 16 publications receiving 142 citations. Previous affiliations of A.G. Mochugovskiy include University of the Sciences.

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Precipitation behavior of L12 Al3Zr phase in Al-Mg-Zr alloy

TL;DR: In this paper, the authors analyzed the decomposition of supersaturated solid solution in the as-cast Al-3%Mg-0.25%Zr alloy for different annealing modes to understand the precipitation kinetics of the Al3Zr phase in the presence of Mg.
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The mechanism of L12 phase precipitation, microstructure and tensile properties of Al-Mg-Er-Zr alloy

TL;DR: In this article, the effect of Er on precipitation behavior and properties of Al-3Mg-0.25Er-Zr alloy was investigated using hardness measurements and electron microscopy techniques.
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Effect of homogenisation treatment on precipitation, recrystallisation and properties of Al – 3% Mg – TM alloys (TM = Mn, Cr, Zr)

TL;DR: The influence of homogenization regimes on precipitations of fine Mn-bearing dispersoids, recrystallisation kinetics, grain structure, mechanical properties and superplasticity of cold worked sheets of Al-3Mg alloys with Mn, Cr and Zr is studied in this article.
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Effect of heat treatment on the grain size control, superplasticity, internal friction, and mechanical properties of zirconium-bearing aluminum-based alloy

TL;DR: In this article, the precipitation effect, recrystallization behavior, internal friction, mechanical properties, and superplasticity of Zr-bearing aluminum-based alloys directly depend on heat treatment that yields precipitation of the L12-Al3Zr phase.
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Comparison of precipitation kinetics and mechanical properties in Zr and Sc-bearing aluminum-based alloys

TL;DR: In this article, the precipitation kinetics of the L12-structured phase, microstructure, and mechanical properties in Al-Mg-Zr and Al-mg-sc-zr alloys with a close atomic concentration of dispersoid-forming elements were compared.