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- W2213001966 endingPage "140" @default.
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- W2213001966 abstract "In this chapter two approaches for the 1D modelling of Shape Memory Alloys are presented. The first approach is based on a phenomenological description of the Austenite-Martensite transformation, assuming that the two configurations are always at equilibrium and the fractions of Martensite and Austenite are a cosine function of the temperature and the stress, which matches experimental measurement. The approach is extended to account for both the stress and the thermal variant of the Martensite and can handle incomplete transformations. The second model is able to reproduce the pseudoelastic and shape memory behavior of SMA and to take into account the asymmetric response in tension and in compression, the different elastic properties of austenite and martensite and the reorientation process. Furthermore, the model is able to simulate the cyclic behavior, including training and two way memory effects. This approach is based on the time integration of the transformation kinetic equations that are function of the strain and the temperature. The prediction of the models for SMA elements subject to different loading histories have been compared to experimental results and have shown very good agreement." @default.
- W2213001966 created "2016-06-24" @default.
- W2213001966 creator A5023721120 @default.
- W2213001966 creator A5048025790 @default.
- W2213001966 date "2015-01-01" @default.
- W2213001966 modified "2023-09-24" @default.
- W2213001966 title "1D SMA Models" @default.
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- W2213001966 doi "https://doi.org/10.1016/b978-0-08-099920-3.00005-x" @default.
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