A constitutive model for shape memory alloys accounting for thermomechanical coupling
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Publication:414358
DOI10.1016/j.ijplas.2010.09.005zbMath1426.74082OpenAlexW2004411421WikidataQ61778740 ScholiaQ61778740MaRDI QIDQ414358
Claire Morin, Wael Zaki, Ziad Moumni
Publication date: 11 May 2012
Published in: International Journal of Plasticity (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.ijplas.2010.09.005
Finite element methods applied to problems in solid mechanics (74S05) Large-strain, rate-dependent theories of plasticity (74C20) Thermal effects in solid mechanics (74F05) Crystals in solids (74N05) Problems involving hysteresis in solids (74N30)
Related Items (10)
A thermomechanically coupled finite deformation constitutive model for shape memory alloys based on hencky strain ⋮ Tailoring the anisotropic (positive/zero/negative) thermal expansion in shape memory alloys through phase transformation and martensite (re)orientation ⋮ Gradient structures for the thermomechanics of shape-memory materials ⋮ Temperature variation of a NiTi wire considering the effects of test machine grips ⋮ A two-scale thermo-mechanically coupled constitutive model for grain size- and rate-dependent deformation of nano-crystalline NiTi shape memory alloy ⋮ On non-monotonic rate dependence of stress hysteresis of superelastic shape memory alloy bars ⋮ Thermomechanical coupling in shape memory alloys under cyclic loadings: experimental analysis and constitutive modeling ⋮ Explicit finite element implementation of an improved three dimensional constitutive model for shape memory alloys ⋮ A multiscale magneto-thermo-mechanically coupled model for ultra-low-field induced magneto-elastocaloric effect in magnetostrictive-shape memory alloy composite system ⋮ Modeling the martensite reorientation and resulting zero/negative thermal expansion of shape memory alloys
Cites Work
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