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- W2014560500 abstract "Ultrafine-grained microstructures were formed in Cu and Ni sputter deposits 0.5-3 mm thick for a microstructure-mechanical property investigation. Grain sizes were as low as 0.06 μm in Cu and 0.031 μm in Ni. Columnar grains and twins were observed in transmission electron micrographs of both Cu and Ni deposits, but equiaxed structures either alone or mixed with columnar grains were also observed. The statistical distribution of twin spacings in the columnar grains was investigated and was found to follow a random distribution, which correlated well with low twin pair interaction energies calculated from pseudopotential theory. Tensile stress-strain data were obtained from the Cu and Ni sputter deposits for the correlation of yield strength with grain size. The small grain sizes produced in Cu permitted the well-known yield strength-reciprocal square-root grain size relationship to be extended to grain sizes 50 times smaller than previously investigated. Yield strengths for Ni were lower than expected from a linear extrapolation of previous data on non-sputtered Ni." @default.
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- W2014560500 date "1977-01-01" @default.
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- W2014560500 title "Microstructural analysis and tensile properties of thick copper and nickel sputter deposits" @default.
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- W2014560500 doi "https://doi.org/10.1016/0040-6090(77)90136-5" @default.
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