We study a one-dimensional model of a dislocation pileup driven by an external stress and interacting with random quenched disorder, focusing on the predictability of the plastic deformation process. Upon quasistatically ramping up the externally applied stress from zero, the system responds by exhibiting an irregular stress-strain curve consisting of a sequence of strain bursts, i.e., critical-like dislocation avalanches. The strain bursts are power-law distributed up to a cutoff scale that increases with the stress level up to a critical flow stress value. There, the system undergoes a depinning phase transition and the dislocations start moving indefinitely, i.e., the strain burst size diverges. Using sample-specific information about th...
The theory of the depinning transition of elastic manifolds in random media provides a framework for...
We study the properties of strain bursts (dislocation avalanches) occurring in two-dimensional discr...
Here we present a model to study the micro-plastic regime of a stress–strain curve. In this model an...
| openaire: EC/H2020/857470/EU//NOMATENCollective motion of dislocations is governed by the obstacle...
Predicting the behavior of complex systems is one of the main goals of science. An important example...
Plastic deformation of micron-scale crystalline solids exhibits stress-strain curves with significan...
Predicting the behaviour of complex systems is one of the main goals of science. An important exampl...
We study the properties of strain bursts (dislocation avalanches) occurring in two-dimensional discr...
| openaire: EC/H2020/857470/EU//NOMATENThe sequence of deformation bursts during plastic deformation...
An artificial neural network (ANN) is used to model nonlinear, large deformation plastic behavior of...
We study strain-controlled plastic deformation of crystalline solids via two-dimensional discrete di...
We study the properties of strain bursts (dislocation avalanches) occurring in two-dimensional discr...
Present experiments and computational simulations furnish a fundamental background to the understand...
Computational design of materials processes has received great interests during the past few decades...
8 pages, 3 figures, presented at ICSMA-13, August 2003, BudapestRecently, mechanical tests on ice as...
The theory of the depinning transition of elastic manifolds in random media provides a framework for...
We study the properties of strain bursts (dislocation avalanches) occurring in two-dimensional discr...
Here we present a model to study the micro-plastic regime of a stress–strain curve. In this model an...
| openaire: EC/H2020/857470/EU//NOMATENCollective motion of dislocations is governed by the obstacle...
Predicting the behavior of complex systems is one of the main goals of science. An important example...
Plastic deformation of micron-scale crystalline solids exhibits stress-strain curves with significan...
Predicting the behaviour of complex systems is one of the main goals of science. An important exampl...
We study the properties of strain bursts (dislocation avalanches) occurring in two-dimensional discr...
| openaire: EC/H2020/857470/EU//NOMATENThe sequence of deformation bursts during plastic deformation...
An artificial neural network (ANN) is used to model nonlinear, large deformation plastic behavior of...
We study strain-controlled plastic deformation of crystalline solids via two-dimensional discrete di...
We study the properties of strain bursts (dislocation avalanches) occurring in two-dimensional discr...
Present experiments and computational simulations furnish a fundamental background to the understand...
Computational design of materials processes has received great interests during the past few decades...
8 pages, 3 figures, presented at ICSMA-13, August 2003, BudapestRecently, mechanical tests on ice as...
The theory of the depinning transition of elastic manifolds in random media provides a framework for...
We study the properties of strain bursts (dislocation avalanches) occurring in two-dimensional discr...
Here we present a model to study the micro-plastic regime of a stress–strain curve. In this model an...