Kumar et al., 2017 - Google Patents
Simulation of magnetostrictive properties of Galfenol under thermomechanical deformationKumar et al., 2017
View PDF- Document ID
- 13305492930030269870
- Author
- Kumar A
- Sundararaghavan V
- Publication year
- Publication venue
- Finite Elements in Analysis and Design
External Links
Snippet
A recently discovered alloy, Galfenol, has been shown to exhibit magnetostrictive strains up to 400 micro-mm in single crystal form (more than 10 times that of Alpha Fe). However, it has proved difficult to retain the property in the polycrystalline form, for example, cold rolled …
- 230000000930 thermomechanical 0 title description 4
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Ahadi et al. | Reversible elastocaloric effect at ultra-low temperatures in nanocrystalline shape memory alloys | |
Kumar et al. | Simulation of magnetostrictive properties of Galfenol under thermomechanical deformation | |
Gao et al. | Constitutive modelling of plasticity of fcc metals under extremely high strain rates | |
Khadyko et al. | Latent hardening and plastic anisotropy evolution in AA6060 aluminium alloy | |
Wang et al. | Modeling inelastic behavior of magnesium alloys during cyclic loading–unloading | |
Kim et al. | A crystal plasticity model for describing the anisotropic hardening behavior of steel sheets during strain-path changes | |
Yoon et al. | Anisotropic strain hardening behavior in simple shear for cube textured aluminum alloy sheets | |
Sinha et al. | Modeling cyclic ratcheting based fatigue life of HSLA steels using crystal plasticity FEM simulations and experiments | |
Abd El-Aty et al. | Computational homogenization of tensile deformation behaviors of a third generation Al-Li alloy 2060-T8 using crystal plasticity finite element method | |
Aoyagi et al. | Crystal plasticity modeling and simulation considering the behavior of the dislocation source of ultrafine-grained metal | |
Kim et al. | Crystal plasticity finite element analysis of ferritic stainless steel for sheet formability prediction | |
Agaram et al. | Dislocation density based crystal plasticity model incorporating the effect of precipitates in IN718 under monotonic and cyclic deformation | |
Gencturk et al. | Loading rate and temperature dependency of superelastic Cu–Al–Mn alloys | |
Guo et al. | Determination of fracture toughness of AZ31 Mg alloy using the cohesive finite element method | |
Meraghni et al. | Parameter identification of a thermodynamic model for superelastic shape memory alloys using analytical calculation of the sensitivity matrix | |
Dong et al. | Dislocation evolution in 316 L stainless steel during multiaxial ratchetting deformation | |
Zhang et al. | Effects of texture and twinning on the torsional behavior of magnesium alloy solid rod: a crystal plasticity approach in comparison with uniaxial tension/compression | |
Liu et al. | Mean-field polycrystal plasticity modeling with grain size and shape effects for laser additive manufactured FCC metals | |
Wang et al. | An experimental study of the superelastic behavior in NiTi shape memory alloys under biaxial proportional and non-proportional cyclic loadings | |
Banabic et al. | Application of various FLD modelling approaches | |
Naumenko et al. | A phase mixture model for anisotropic creep of forged Al–Cu–Mg–Si alloy | |
Iadicola et al. | Crystal plasticity analysis of constitutive behavior of 5754 aluminum sheet deformed along bi-linear strain paths | |
Li et al. | Numerical simulations of adiabatic shear localization in textured FCC metal based on crystal plasticity finite element method | |
Liu et al. | A strain-gradient plasticity theory of bimodal nanocrystalline materials with composite structure | |
Xiong et al. | Energy storage and dissipation of elastic-plastic deformation under shock compression: Simulation and Analysis |