In this study, we rely on a ’bond-based’ peridynamic approach to investigate the strength and failure of 2D particles containing a collection of 1D microcracks. The mechanical tests were performed on disks under diametral compression. In an extensive parametric study, the distribution of microcracks was varied for different particle sizes. The evolution of yield stress with diameter and the probability of failure in terms of Weibull distributions are investigated in detail. Finally, by means of a floodfill algorithm, we analyze the variation of the mean fragment size as a function of the density of defects
A multi-scale damage percolation model has been developed to predict fracture in advanced materials ...
To improve design and reliability, extensive efforts has been devoted to understanding damage and fa...
The critical effect of micro level defects should be examined at macro level to better understand th...
In this study, we rely on a ’bond-based’ peridynamic approach to investigate the strength and failur...
International audienceBy means of Peridynamic simulations [1], we investigate the breakage ...
Comminution is a complex process that consists in reducing (by crushing, grinding, cutting…) solid p...
This paper assesses the accuracy and convergence of the bond-based Peridynamic model with brittle fa...
In this study we investigate the quasi-static failure of 2D composites composed with cylindrical dis...
This paper assesses the accuracy and convergence of the linear-elastic, bond-based Peridynamic model...
This study focuses on the numerical modeling of the fragmentation under impact of individual 2D part...
The simulation of the structural behavior and particularly damage response is a key instrument for t...
In this study, we use a bond-based peridynamic approach to investigate the mechanical strengthand cr...
AbstractThis paper presents the first application of peridynamics theory for crystal plasticity simu...
Reliable simulation methods and failure criteria are required during the sizing of fibre reinforced ...
To improve design and reliability, extensive efforts has been devoted to understanding damage and fa...
A multi-scale damage percolation model has been developed to predict fracture in advanced materials ...
To improve design and reliability, extensive efforts has been devoted to understanding damage and fa...
The critical effect of micro level defects should be examined at macro level to better understand th...
In this study, we rely on a ’bond-based’ peridynamic approach to investigate the strength and failur...
International audienceBy means of Peridynamic simulations [1], we investigate the breakage ...
Comminution is a complex process that consists in reducing (by crushing, grinding, cutting…) solid p...
This paper assesses the accuracy and convergence of the bond-based Peridynamic model with brittle fa...
In this study we investigate the quasi-static failure of 2D composites composed with cylindrical dis...
This paper assesses the accuracy and convergence of the linear-elastic, bond-based Peridynamic model...
This study focuses on the numerical modeling of the fragmentation under impact of individual 2D part...
The simulation of the structural behavior and particularly damage response is a key instrument for t...
In this study, we use a bond-based peridynamic approach to investigate the mechanical strengthand cr...
AbstractThis paper presents the first application of peridynamics theory for crystal plasticity simu...
Reliable simulation methods and failure criteria are required during the sizing of fibre reinforced ...
To improve design and reliability, extensive efforts has been devoted to understanding damage and fa...
A multi-scale damage percolation model has been developed to predict fracture in advanced materials ...
To improve design and reliability, extensive efforts has been devoted to understanding damage and fa...
The critical effect of micro level defects should be examined at macro level to better understand th...