AbstractWe develop a multiscale thermomechanical model to analyze martensitic phase transformations from a cubic crystalline lattice to a tetragonal crystalline lattice. The model is intended for simulating the thermomechanical response of single-crystal grains of austenite. Based on the geometrically nonlinear theory of martensitic transformations, we incorporate microstructural effects from several subgrain length scales. The effective stiffness tensor at the grain level is obtained through an averaging scheme, and preserves crystallographic information from the lattice scale as well as the influence of volumetric changes due to the transformation. The model further incorporates a transformation criterion that includes a surface energy te...
The remarkable mechanical properties of many advanced steels, e.g. metastable austenitic stainless s...
The remarkable mechanical properties of many advanced steels, e.g. metastable austenitic stainless s...
The remarkable mechanical properties of many advanced steels, e.g. metastable austenitic stainless s...
We develop a multiscale thermomechanical model to analyze martensitic phase transformations from a c...
We develop a multiscale thermomechanical model to analyze martensitic phase transformations from a c...
AbstractWe develop a multiscale thermomechanical model to analyze martensitic phase transformations ...
We develop a multiscale thermomechanical model to analyze martensitic phase transformations from a c...
We develop a multiscale thermomechanical model to analyze martensitic phase transformations from a c...
We develop a multiscale thermomechanical model to analyze martensitic phase transformations from a c...
The remarkable mechanical engineering properties of many advanced steels, e.g. TRIP steels and metas...
The remarkable mechanical engineering properties of many advanced steels, e.g. TRIP steels and metas...
The remarkable mechanical engineering properties of many advanced steels, e.g. TRIP steels and metas...
The purpose of this contribution is the presentation of a micromechanical model for martensitic phas...
International audienceModern scale transition methods developed in mechanics of materials these last...
The remarkable mechanical properties of many advanced steels, e.g. metastable austenitic stainless s...
The remarkable mechanical properties of many advanced steels, e.g. metastable austenitic stainless s...
The remarkable mechanical properties of many advanced steels, e.g. metastable austenitic stainless s...
The remarkable mechanical properties of many advanced steels, e.g. metastable austenitic stainless s...
We develop a multiscale thermomechanical model to analyze martensitic phase transformations from a c...
We develop a multiscale thermomechanical model to analyze martensitic phase transformations from a c...
AbstractWe develop a multiscale thermomechanical model to analyze martensitic phase transformations ...
We develop a multiscale thermomechanical model to analyze martensitic phase transformations from a c...
We develop a multiscale thermomechanical model to analyze martensitic phase transformations from a c...
We develop a multiscale thermomechanical model to analyze martensitic phase transformations from a c...
The remarkable mechanical engineering properties of many advanced steels, e.g. TRIP steels and metas...
The remarkable mechanical engineering properties of many advanced steels, e.g. TRIP steels and metas...
The remarkable mechanical engineering properties of many advanced steels, e.g. TRIP steels and metas...
The purpose of this contribution is the presentation of a micromechanical model for martensitic phas...
International audienceModern scale transition methods developed in mechanics of materials these last...
The remarkable mechanical properties of many advanced steels, e.g. metastable austenitic stainless s...
The remarkable mechanical properties of many advanced steels, e.g. metastable austenitic stainless s...
The remarkable mechanical properties of many advanced steels, e.g. metastable austenitic stainless s...
The remarkable mechanical properties of many advanced steels, e.g. metastable austenitic stainless s...