In-Situ Monitoring of Dislocation Mobility

Author:

Hirao Masahiko,Ogi Hirotsugu

Publisher

Springer Japan

Reference47 articles.

1. Anderson, A. R., & Pollard, H. F. (1979). Changes in internal friction and dislocation charge in sodium chloride crystals following plastic deformation. Journal of Applied Physics, 50, 5262–5265.

2. Anderson, W. A., & Mehl, R. F. (1945). Recrystallization of aluminum in terms of the rate of nucleation and the rate of growth. Transactions of the AIME, 161, 140–172.

3. Bay, B., & Hansen, N. (1984). Recrystallization in commercially pure aluminum. Metallurgical Transactions A, 15, 287–297.

4. Bratina, W. (1966). Internal friction and basic fatigue mechanisms in body-centered cubic metals, mainly iron and carbon steels. In Physical Acoustics (Vol. 3A, pp. 223–291). New York: Academic Press.

5. Bremnes, Ø., Progin, O., Gremaud, G., & Benoit, W. (1997). Complex interaction mechanismsbetween dislocations and point defects studied in pure aluminium by a two-wave acoustic coupling technique. Physical Status Solidi (a), 160, 395–402.

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