In contrast to many numerical methods, the eigenerosion approach yields a convenient description of fracture handled in the postprocessing part of a Finite Element Analysis (FEA). Its fully energetic formulation avoids the introduction of extra degrees of freedom to model fracture propagation. Following previous works on eigenerosion, in this publication, a modified formulation of eigenfracture it is introduced, where it is distinguished between compression and tension loaded state. This formulation has the advantage that it relates the crack propagation process only to tensile loading. The procedure is implemented using a spectral decomposition of the strain field. The application of the method to brittle fracture makes it suitable for mat...
Numerical techniques to simulate crack propagation can roughly be divided into sharp and diffuse int...
Dynamic fracture phenomena are studied employing low cost computational tools based on Finite Elemen...
An integrated strategy is proposed for the simulation of damage development and crack propagation in...
In contrast to many numerical methods, the eigenerosion approach yields a convenient description of ...
The objective of this work is twofold. First, we develop an eigensoftening algorithm to capture the...
The present work is concerned with the verification and validation of a variant of the eigenfracture...
In this paper, a framework for the simulation of crack propagation in brittle and ductile materials ...
We propose an approximation scheme for a variational theory of brittle fracture. In this scheme, the...
We propose an approximation scheme for a variational theory of brittle fracture. In this scheme, the...
We describe through static and dynamic applications the implementation of the eigenerosion scheme wi...
The paper presents a numerical implementation of a novel approximation scheme for Griffith’s theory ...
This work is a numerical simulation of nonlinear problems of the damage process and fracture of quas...
SummaryIn the context of eigenfracture scheme, the work at hand introduces a variational eigenerosio...
Failure analysis is a crucial step in design and assessment of many concrete structures such as dams...
Numerical techniques to simulate crack propagation can roughly be divided into sharp and diffuse int...
Dynamic fracture phenomena are studied employing low cost computational tools based on Finite Elemen...
An integrated strategy is proposed for the simulation of damage development and crack propagation in...
In contrast to many numerical methods, the eigenerosion approach yields a convenient description of ...
The objective of this work is twofold. First, we develop an eigensoftening algorithm to capture the...
The present work is concerned with the verification and validation of a variant of the eigenfracture...
In this paper, a framework for the simulation of crack propagation in brittle and ductile materials ...
We propose an approximation scheme for a variational theory of brittle fracture. In this scheme, the...
We propose an approximation scheme for a variational theory of brittle fracture. In this scheme, the...
We describe through static and dynamic applications the implementation of the eigenerosion scheme wi...
The paper presents a numerical implementation of a novel approximation scheme for Griffith’s theory ...
This work is a numerical simulation of nonlinear problems of the damage process and fracture of quas...
SummaryIn the context of eigenfracture scheme, the work at hand introduces a variational eigenerosio...
Failure analysis is a crucial step in design and assessment of many concrete structures such as dams...
Numerical techniques to simulate crack propagation can roughly be divided into sharp and diffuse int...
Dynamic fracture phenomena are studied employing low cost computational tools based on Finite Elemen...
An integrated strategy is proposed for the simulation of damage development and crack propagation in...