© 2017 EW MATERIALS. All rights reserved. This paper presents the latest advances in the development of multiplane cohesive-zone models that are able to account for damage, friction and interlocking, including in particular their extension to a general three-dimensional (3D) case. Starting from the work proposed in a recent article by some of the authors, a simplified micromechanical formulation is used, whose main idea is to represent the asperities of the developing fracture surface in the form of a periodic arrangement of distinct inclined elementary planes, denominated Representative Multiplane Element (RME). The interaction between the two faces of each of these elementary planes is governed by the interface formulation proposed by Alf...
The paper presents an interphase cohesive zone model (CZM) incorporating stress multi-axiality devis...
A new method to combine interface damage and friction in a cohesive-zone model is proposed. Starting...
Purpose: In this work, the cohesive zone model (CZM) developed by some of the authors to simulate th...
A three-dimensional (3D) two-scale Cohesive Zone Model (CZM), which is based on a multiplane approac...
A 3D multi-scale cohesive-zone model (CZM) combining friction and finite dilation by a multi-plane a...
In this study, a general frictional cohesive zone model (FCZM) dedicated to quasi-brittle fracture i...
The present paper deals with the derivation of an interface model characterized by macroscopic fract...
Computational modeling of failure in quasi-brittle materials at various length scales is important. ...
A cohesive zone model is formulated to describe the mechanics of initiation and propagation of crack...
A recently proposed cohesive-zone model which effectively combines damage, friction and mechanical i...
International audienceModeling the fracture of a material can take two different approaches. A first...
The fracture and failure of quasi-brittle materials such as concrete and rock is a complicated proce...
In the cohesive surface model cohesive tractions are transmitted across a two-dimensional surface, w...
Incorporating softening behaviors in scales transition problems is a complex task, especially due to...
The paper presents an interphase cohesive zone model (CZM) incorporating stress multi-axiality devis...
A new method to combine interface damage and friction in a cohesive-zone model is proposed. Starting...
Purpose: In this work, the cohesive zone model (CZM) developed by some of the authors to simulate th...
A three-dimensional (3D) two-scale Cohesive Zone Model (CZM), which is based on a multiplane approac...
A 3D multi-scale cohesive-zone model (CZM) combining friction and finite dilation by a multi-plane a...
In this study, a general frictional cohesive zone model (FCZM) dedicated to quasi-brittle fracture i...
The present paper deals with the derivation of an interface model characterized by macroscopic fract...
Computational modeling of failure in quasi-brittle materials at various length scales is important. ...
A cohesive zone model is formulated to describe the mechanics of initiation and propagation of crack...
A recently proposed cohesive-zone model which effectively combines damage, friction and mechanical i...
International audienceModeling the fracture of a material can take two different approaches. A first...
The fracture and failure of quasi-brittle materials such as concrete and rock is a complicated proce...
In the cohesive surface model cohesive tractions are transmitted across a two-dimensional surface, w...
Incorporating softening behaviors in scales transition problems is a complex task, especially due to...
The paper presents an interphase cohesive zone model (CZM) incorporating stress multi-axiality devis...
A new method to combine interface damage and friction in a cohesive-zone model is proposed. Starting...
Purpose: In this work, the cohesive zone model (CZM) developed by some of the authors to simulate th...