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- W2621111312 abstract "Abstract The understanding of the non-Schmid behavior in shape memory alloy NiTi is considered a significant breakthrough because this alloy still remains enigmatic. We utilize an Eshelby-Stroh formalism in conjunction with Molecular Statics-Peierls stress calculation to predict the experimental CRSS results for three different crystal orientations and tension-compression cases. These combination of tools incorporating elastic anisotropy and core displacements are necessary to develop a precise understanding of non-Schmid behavior. We note the different extents of core spreading produce a highly asymmetric tension-compression behavior and strong orientation dependence governed by the non-glide shear and normal stress components. The experimental results and empiricism free modeling produces excellent agreement, and most importantly enlisting scientific insight into the shape memory response." @default.
- W2621111312 created "2017-06-09" @default.
- W2621111312 creator A5028546515 @default.
- W2621111312 creator A5072268797 @default.
- W2621111312 date "2017-10-01" @default.
- W2621111312 modified "2023-10-01" @default.
- W2621111312 title "Dislocation core effects on slip response of NiTi- a key to understanding shape memory" @default.
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- W2621111312 doi "https://doi.org/10.1016/j.ijplas.2017.05.012" @default.
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