most citedShape Memory Alloy Nanostructures With Coupled Dynamic Thermo-Mechanical Effects

27 citations · 36 across the 5 of their papers we have counts for

collaborators

5 papers

cond-mat.mtrl-sci2014

Temperature Induced Cubic-to-Tetragonal Transformations in Shape Memory Alloys Using a Phase-Field Model

R. Dhote, H. Gomez, R. Melnik +1

Shape memory alloys (SMAs) exhibit hysteresis behaviors upon stress and temperature induced loadings. In this contribution, we focus on numerical simulations of microstructure evol…

cond-mat.mtrl-sci2014★ 1 cited

3D Coupled Thermo-Mechanical Phase-Field Modeling of Shape Memory Alloy Dynamics via Isogeometric Analysis

R. Dhote, H. Gomez, R. Melnik +1

The paper focuses on numerical simulation of the phase-field (PF) equations for modeling martensitic transformations in shape memory alloys (SMAs), their complex microstructures an…

cond-mat.mtrl-sci2014★ 7 cited

Three Dimensional Non-Isothermal Ginzburg-Landau Phase-Field Model for Shape Memory Alloys

R. Dhote, M. Fabrizio, R. Melnik +1

In this paper, a macroscopic three dimensional non-isothermal model is proposed to describe hysteresis phenomena and phase transformations in shape memory alloys (SMAs). The model…

cond-mat.mtrl-sci2014★ 27 cited

Shape Memory Alloy Nanostructures With Coupled Dynamic Thermo-Mechanical Effects

R. Dhote, H. Gomez, R. Melnik +1

Employing the Ginzburg-Landau phase-field theory, a new coupled dynamic thermo-mechanical 3D model has been proposed for modeling the cubic-to-tetragonal martensitic transformation…

cond-mat.mtrl-sci2014★ 1 cited

Effect of Aspect Ratio and Boundary Conditions in Modeling Shape Memory Alloy Nanostructures with 3D Coupled Dynamic Phase-Field Models

R. Dhote, H. Gomez, R. Melnik +1

The behavior of shape memory alloy (SMA) nanostructures is influenced by strain rate and temperature evolution during dynamic loading. The coupling between temperature, strain and…