Comparative Study of Two Multiscale Thermomechanical Models of Polycrystalline Shape Memory alloys: Application to a Representative volUme Element of Titanium–Niobium
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanics of Materials,General Materials Science
Link
http://link.springer.com/content/pdf/10.1007/s40830-019-00216-7.pdf
Reference20 articles.
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2. Mohd Jani J, Leary M, Subic A, Gibson MA (2014) A review of shape memory alloy research, applications and opportunities. Mater Des 56:1078–1113
3. Auricchio F, Bonetti E, Scalet G, Ubertini F (2014) Theoretical and numerical modeling of shape memory alloys accounting for multiple phase transformations and martensite reorientation. Int J Plast 59:30–54
4. Chemisky Y, Duval A, Patoor E, Zineb TB (2011) Constitutive model for shape memory alloys including phase transformation, martensitic reorientation and twins accommodation. Mech Mater 43(7):361–376
5. Lagoudas D, Hartl D, Chemisky Y, Machado L, Popov P (2012) Constitutive model for the numerical analysis of phase transformation in polycrystalline shape memory alloys. Int J Plast 32:155–183
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1. Microstructural modeling of a TiNi beam bending;MATER PHYS MECH;2023
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3. Stochastic multiscale modeling of the thermomechanical behavior of polycrystalline shape memory alloys;Mechanics of Materials;2020-05
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