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Theoretical and numerical modeling of shape memory alloys accounting for multiple phase transformations and martensite reorientation

Articolo
Data di Pubblicazione:
2014
Citazione:
Theoretical and numerical modeling of shape memory alloys accounting for multiple phase transformations and martensite reorientation / F. Auricchio, E. Bonetti, G. Scalet, F. Ubertini. - In: INTERNATIONAL JOURNAL OF PLASTICITY. - ISSN 0749-6419. - 59(2014 Aug), pp. 30-54. [10.1016/j.ijplas.2014.03.008]
Abstract:
The present paper develops a refined and general three-dimensional phenomenological constitutive model for shape memory alloys (SMAs), along the lines of what recently proposed by Auricchio and Bonetti (2013) in a more theoretical context. Such an improved model takes into account several physical phenomena, as martensite reorientation and different kinetics between forward/reverse phase transformations, including also smooth thermo-mechanical response, low-stress phase transformations as well as transformation-dependent elastic properties. The model is treated numerically through an effective and efficient procedure, consisting in the replacement of the classical set of Kuhn-Tucker inequality conditions by the so-called Fischer-Burmeister complementarity function. Numerical predictions are compared with experimental results and the finite element analysis of a SMA-based real device is described to assess the reliability of the proposed model as well as the effectiveness of its numerical counterpart.
Tipologia IRIS:
01 - Articolo su periodico
Keywords:
phase transformation; reorientation; shape memory alloys; constitutive modeling; fischer-burmeister function; mechanics of materials; materials science (all); mechanical engineering
Elenco autori:
F. Auricchio, E. Bonetti, G. Scalet, F. Ubertini
Autori di Ateneo:
BONETTI ELENA ( autore )
Link alla scheda completa:
https://air.unimi.it/handle/2434/424481
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Settori (2)


Settore ICAR/08 - Scienza delle Costruzioni

Settore MAT/05 - Analisi Matematica
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