Thermoactivated structure rearrangements at the micro-, meso-, and macroscale levels in a binary Cu 3 Au alloy are investigated for the case of deviation from stoichiometry.
Thermoactivated structure rearrangements of a binary CuAu alloy at the micro-, meso-, and macrolevels are investigated under deviation from stoichiometry. Mechanisms of these rearrangements at the micro-, meso-, and macrolevels are identified.
Thermoactivated structure rearrangements at the micro-, meso-, and macroscale levels in a binary CuAu 3 alloy are investigated for the case of deviation from stoichiometry. Peculiarities of these rearrangements at the micro-, meso-, and macroscale levels are revealed.
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