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- W2797572236 abstract "A microscale phase field model for the multivariant martensitic phase transformation is advanced and utilized for studying the pseudoelastic behavior of a thin film of equiatomic single crystal NiTi under tensile loading. The thermomechanical model includes the strain softening as a mechanism leading to strain (transformation) localization and discrete microstructure formation. To avoid a small scale limitation, gradient term is dropped. Numerical solutions have shown a negligible mesh sensitivity for different element shapes and densities, which is due to rate-dependent kinetic equations for phase transformation. Microstructure evolution and corresponding stress-strain curves are presented for several cases. Obtained stress-strain curves, band-like martensitic microstructure, a sudden drop in the stress at the beginning of the martensitic transformation, residual austenite, and multiple stress oscillations due to nucleation events are qualitatively similar to those in known experiments." @default.
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- W2797572236 date "2018-01-01" @default.
- W2797572236 modified "2023-09-23" @default.
- W2797572236 title "Modeling the Microstructure Evolutions of NiTi Thin Film During Tension" @default.
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- W2797572236 doi "https://doi.org/10.1007/978-3-319-76968-4_9" @default.
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