We devise a two-dimensional model that mimics the recently observed power-law distributions for the amplitudes and durations of the acoustic emission signals observed during martensitic transformation [Vives et al., Phys. Rev. Lett. 72, 1694 (1994)]. We include a threshold mechanism, long-range interaction between the transformed domains, inertial effects, and dissipation arising due to the motion of the interface. The model exhibits thermal hysteresis and, more importantly, it shows that the energy is released in the form of avalanches with power-law distributions for their amplitudes and durations. Computer simulations also reveal morphological features similar to those observed in real systems
Abstract: We present a simplified model which reproduces the evolution through avalanches found in a...
We present an experimental study of phase-transition avalanches during the stress-induced formation ...
Our early work showed that the evolution of the twin boundary pattern exhibits an avalanche behavior...
We devise a two-dimensional model that mimics the recently observed power-law distributions for the ...
An experimental study of the acoustic emission generated during a martensitic transformation is pres...
An experimental study of the acoustic emission generated during a martensitic transformation is pres...
Measurements of the Acoustic Emission generated during a Martensitic Transformation are presented. S...
Abstract: Measurements of the Acoustic Emission generated during a Martensitic Transformation are pr...
Using a scaling assumption, we propose a phenomenological model aimed to describe the joint probabil...
We report a detailed numerical investigation of a recently introduced two-dimensional model for squa...
We have studied the kinetics of thermoelastic martensitic transformations (MT), both experimentally ...
We have studied the kinetics of thermoelastic martensitic transformations (MT), both experimentally ...
Abstract: We have studied the kinetics of thermoelastic martensitic transformations (MT), both exper...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
International audienceVarious dynamical systems with many degrees of freedom display avalanche dynam...
Abstract: We present a simplified model which reproduces the evolution through avalanches found in a...
We present an experimental study of phase-transition avalanches during the stress-induced formation ...
Our early work showed that the evolution of the twin boundary pattern exhibits an avalanche behavior...
We devise a two-dimensional model that mimics the recently observed power-law distributions for the ...
An experimental study of the acoustic emission generated during a martensitic transformation is pres...
An experimental study of the acoustic emission generated during a martensitic transformation is pres...
Measurements of the Acoustic Emission generated during a Martensitic Transformation are presented. S...
Abstract: Measurements of the Acoustic Emission generated during a Martensitic Transformation are pr...
Using a scaling assumption, we propose a phenomenological model aimed to describe the joint probabil...
We report a detailed numerical investigation of a recently introduced two-dimensional model for squa...
We have studied the kinetics of thermoelastic martensitic transformations (MT), both experimentally ...
We have studied the kinetics of thermoelastic martensitic transformations (MT), both experimentally ...
Abstract: We have studied the kinetics of thermoelastic martensitic transformations (MT), both exper...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
International audienceVarious dynamical systems with many degrees of freedom display avalanche dynam...
Abstract: We present a simplified model which reproduces the evolution through avalanches found in a...
We present an experimental study of phase-transition avalanches during the stress-induced formation ...
Our early work showed that the evolution of the twin boundary pattern exhibits an avalanche behavior...