A continuum phase field model for martensitic transformations is introduced, including crystal plasticity with different slip systems for the different phases. In a 2D setting, the transformation-induced eigenstrain is taken into account for two martensitic orientation variants. With aid of the model, the phase transition and its dependence on the volume change, crystal plastic material behavior, and the inheritance of plastic deformations from austenite to martensite are studied in detail. The numerical setup is motivated by the process of cryogenic turning. The resulting microstructure qualitatively coincides with an experimentally obtained martensite structure. For the numerical calculations, finite elements together with global and local ...
The purpose of this contribution is the presentation of a micromechanical model for martensitic phas...
Iron and steels are allotropes, meaning they exhibit different crystal configurations. The martensiti...
Martensite forms under rapid cooling of austenitic grains accompanied by a change of the crystal lat...
A continuum phase field model for martensitic transformations is introduced, including crystal plasti...
A phase field model for martensitic transformations considering crystal plasticity effects is introd...
This work is motivated by cryogenic turning which allows end shape machining and simultaneously atta...
The martensitic transformation is described using a phase field model which is in mathematical terms...
A combined continuum phase field model for martensitic transformations and fracture is introduced. Th...
A time integration scheme is presented for the martensitic phase transformation model developed in r...
We study the interplay between martensitic phase transformation and plastic slip in polycrystalline ...
This thesis is concerned with a phase field model for martensitic transformations in metastable aust...
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 ...
A phase field approach for martensitic transformations is introduced. The parameters are determined ...
A three-dimensional phase field model of the martensitic transformation that produces a low symmetry...
The purpose of this contribution is the presentation of a micromechanical model for martensitic phas...
Iron and steels are allotropes, meaning they exhibit different crystal configurations. The martensiti...
Martensite forms under rapid cooling of austenitic grains accompanied by a change of the crystal lat...
A continuum phase field model for martensitic transformations is introduced, including crystal plasti...
A phase field model for martensitic transformations considering crystal plasticity effects is introd...
This work is motivated by cryogenic turning which allows end shape machining and simultaneously atta...
The martensitic transformation is described using a phase field model which is in mathematical terms...
A combined continuum phase field model for martensitic transformations and fracture is introduced. Th...
A time integration scheme is presented for the martensitic phase transformation model developed in r...
We study the interplay between martensitic phase transformation and plastic slip in polycrystalline ...
This thesis is concerned with a phase field model for martensitic transformations in metastable aust...
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 ...
A phase field approach for martensitic transformations is introduced. The parameters are determined ...
A three-dimensional phase field model of the martensitic transformation that produces a low symmetry...
The purpose of this contribution is the presentation of a micromechanical model for martensitic phas...
Iron and steels are allotropes, meaning they exhibit different crystal configurations. The martensiti...
Martensite forms under rapid cooling of austenitic grains accompanied by a change of the crystal lat...