Published February 16, 1992 | Version v1
Journal article

Microplasticity and dislocation mobility in copper-nickel single crystals evaluated from strain-amplitude-dependent internal friction

  • 1. Dept. of Materials Science and Engineering, Nagoya Inst. of Tech. (Japan)

Description

Internal friction in copper-0.4 to 7.6 at% nickel single crystals is measured as a function of strain amplitude at various temperatures. Analysis of the data on the amplitude-dependent internal friction yields the relation of effective stress and microplastic strain of the order of 10-9. The stress-strain responses thus obtained exhibit that the microplastic flow stress increases more rapidly on alloying than the macroscopic yield stress. The mean dislocation velocity is also evaluated from the internal-friction data, which corresponds well to the etch-pit data. It is shown that the dislocation motion is impeded by friction due to dispersed solute atoms. (orig.)

Additional details

Additional titles

Augmented title (English)
CuNi

Publishing Information

Journal Title
Physica Status Solidi A
Journal Volume
129
Journal Issue
2
Series
Phys. Status Solidi A.
Journal Page Range
409-419
ISSN
0031-8965
CODEN
PSSAB

INIS