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Formation of microstructure and the superplasticity of Al–Mg-based alloys
The influence of a 3–10% content of magnesium in Al–Mg–Mn(Cr) alloys on the characteristics of the microstructure of sheet blanks and their superplasticity has been examined. It has been shown that the minimum size of grains and the best superplasticity are characteristic of the alloy that contains...
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Published in: | Physics of metals and metallography 2017, Vol.118 (1), p.96-103 |
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container_title | Physics of metals and metallography |
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creator | Kishchik, A. A. Mikhaylovskaya, A. V. Levchenko, V. S. Portnoy, V. K. |
description | The influence of a 3–10% content of magnesium in Al–Mg–Mn(Cr) alloys on the characteristics of the microstructure of sheet blanks and their superplasticity has been examined. It has been shown that the minimum size of grains and the best superplasticity are characteristic of the alloy that contains about 7% magnesium and is additionally alloyed simultaneously with manganese and chromium. An increase in the content of magnesium leads to the formation of conglomerates of particles of a chromium–manganese phase and, as a result, to a coarsening of the grain structure and a deterioration of superplasticity. |
doi_str_mv | 10.1134/S0031918X16120085 |
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subjects | Alloying additive Alloys Aluminum (Metal) Aluminum base alloys Blanks Chemistry and Materials Science Chromium (Metal) Formations Grain structure Magnesium Materials Science Metallic Materials Microstructure Specialty metals industry Strength and Plasticity Superplasticity |
title | Formation of microstructure and the superplasticity of Al–Mg-based alloys |
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