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Please use this identifier to cite or link to this item: http://dspace.bsu.edu.ru/handle/123456789/4593
Title: Effect of shock-wave loading on the internal microstructure and mechanical properties of fine-grained copper
Authors: Ignatova, O. N.
Kaganova, I. I.
Malyshev, A. N.
Salishchev, G. A.
Konkova, T. N.
Keywords: technique
ferrous metallurgy
copper
fine-grained copper
shock-wave loading
shock wave
fine-grained metals
loading intensity
softening
conven-tional yield stress
dislocation density
Issue Date: 2010
Citation: Effect of shock-wave loading on the internal microstructure and mechanical properties of fine-grained copper / O.N. Ignatova, ... G.A. Salishchev, T.N. Konkova et al. ; Belgorod State University // Combustion, explosion, and shock waves. - 2010. - Vol.46, N6.-P. 719-723. - doi: 10.1007/s10573-010-0096-3.
Abstract: It is shown that preloading of fine-grained copper with a the grain size of 0.5 m by a shock wave of intensity ≈25–50 GPa does not lead to changes in its internal microstructure and mechanical properties, and the dislocation density increases only slightly from 1.8·10¹¹ cm ˉ² in the initial state to (3.1–3.6)·10¹¹ cmˉ² after shock-wave loading. An increase in shock wave intensity to pressures >55 GPa leads to a decrease in the dislocation density to 2.5·10⁹ cm ˉ² , an increase in the grain size to ≈19µm, the occurrence of microtwins inside the grains, and a reduction in the mechanical properties of fine-grained copper to the level of coarse-crystalline copper
URI: http://dspace.bsu.edu.ru/handle/123456789/4593
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