Journal
PHILOSOPHICAL MAGAZINE LETTERS
Volume 90, Issue 12, Pages 883-890Publisher
TAYLOR & FRANCIS LTD
DOI: 10.1080/09500839.2010.514577
Keywords
nanoindentation; magnesium; grain boundary sliding; grain boundary
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Funding
- JSPS [21760564, 21360347]
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Nanoindentation creep tests were performed at the grain boundary and grain interior in pure magnesium. The grain boundary showed a high strain rate sensitivity exponent and was dominated by grain boundary sliding due to the high diffusion rate at the grain boundary. The grain boundary affected the deformation behavior of the area at a distance of 2 mu m into the grain interior. On the other hand, the grain interior had a low strain rate sensitivity exponent, because its matrix was too large to be influenced by the grain boundary. The deformation mechanism in the grain interior was determined to be dislocation slip.
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