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- W2892897188 endingPage "69" @default.
- W2892897188 startingPage "58" @default.
- W2892897188 abstract "Face-centered cubic (fcc) metals exhibit outstanding mechanical properties both in small-sized and bulk nanostructures and are thus promising for applications in micro/nano electromechanical systems (M/NEMS). Uncovering the intrinsic deformation mechanisms of small-sized metals is of critical importance for evaluating their feasibility in M/NEMS applications. Recent advances in in situ transmission electron microscopy (TEM)–based mechanical testing techniques open up opportunities for achieving a mechanistic understanding of the atomic-scale deformation mechanisms. This article reviews recent progresses in in situ TEM studies on the various plastic deformation modes of small-sized fcc metals, including dislocation slip and twinning, phase transformation–mediated plasticity, reversible structure formation, diffusion-mediated plasticity, and void-assisted plasticity and fracture. Promising directions for future in situ TEM investigations on fcc metals are also enumerated." @default.
- W2892897188 created "2018-10-05" @default.
- W2892897188 creator A5027086407 @default.
- W2892897188 creator A5032169565 @default.
- W2892897188 creator A5091789845 @default.
- W2892897188 date "2018-06-01" @default.
- W2892897188 modified "2023-10-18" @default.
- W2892897188 title "Advances in understanding atomic-scale deformation of small-sized face-centered cubic metals with in situ transmission electron microscopy" @default.
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