2015
DOI: 10.1016/j.actamat.2015.01.062
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Influence of length-scales on spatial distribution and interfacial characteristics of B4C in a nanostructured Al matrix

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Cited by 136 publications
(38 citation statements)
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“…In addition, the interfaces between the matrix and the intragranular n-B 4 C particles (i.e., located in the grain interiors) have been shown to be semi-coherent, whereas for intergranular n-B 4 C particles (i.e., located at grain boundaries) incoherent interfaces were observed. [7] For the former, the Al lattice is constrained and the boundary condition holds e R = e M , whereas for the latter, the misfit strain can be accommodated by the matrix and e R " e M .…”
Section: ½7mentioning
confidence: 99%
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“…In addition, the interfaces between the matrix and the intragranular n-B 4 C particles (i.e., located in the grain interiors) have been shown to be semi-coherent, whereas for intergranular n-B 4 C particles (i.e., located at grain boundaries) incoherent interfaces were observed. [7] For the former, the Al lattice is constrained and the boundary condition holds e R = e M , whereas for the latter, the misfit strain can be accommodated by the matrix and e R " e M .…”
Section: ½7mentioning
confidence: 99%
“…In the case of Sample 1, which is reinforced with n-B 4 C particles, previous work has revealed that~40 pct of the n-B 4 C particles exist within the grain interiors. [7] For Sample 2, which is reinforced with sl-B 4 C particles, none of the reinforcement particles may exist within the grain interiors as the particles themselves are larger than the mean metal grain size. However, both samples have cryomilling-induced dispersoids present.…”
Section: ½7mentioning
confidence: 99%
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