A novel characterization tool for identification of full cohesive laws is introduced. Cohesive zones, with associated traction separation laws, are most commonly used either to describe or to simulate delamination phenomena. Our tool is based on the Global Digital Image Correlation, in which the kinematic space is defined. After summarizing the principle of the method, we focus on its validation and then on its behavior with noisy input data. This validation is numerically made (i) by building a set of images using an advanced simulation tool, and (ii) by identifying, from theses images, interface behavior characteristics. First successful results already show the effectivity of the proposed method and its robustness
International audienceWe present a new methodology for the identification of a zone cohesive model t...
Abstract The accuracy of an adopted cohesive zone model (CZM) can affect the simulated fracture resp...
Adhesive bonding modelling is often realised using cohesive zone models (CZM). For pure mode I loadi...
International audienceIn recent years, cohesive-zone models have been formulated and used to numeric...
International audienceIn recent years, cohesive-zone models have been formulated and used to numeric...
A procedure is proposed for the identification of spatial interfacial traction profiles of peel load...
Interfacial delamination is a key reliability challenge in composites and micro-electronic systems d...
Accurate characterization of adhesion properties in microelectronic systems is challenging due to (1...
This paper represents a further contribution to the study of identification procedures for material ...
This paper represents a contribution to the study of identification procedures resting on kinematic ...
International audienceWe present a new methodology for the identification of a zone cohesive model t...
Abstract The accuracy of an adopted cohesive zone model (CZM) can affect the simulated fracture resp...
Adhesive bonding modelling is often realised using cohesive zone models (CZM). For pure mode I loadi...
International audienceIn recent years, cohesive-zone models have been formulated and used to numeric...
International audienceIn recent years, cohesive-zone models have been formulated and used to numeric...
A procedure is proposed for the identification of spatial interfacial traction profiles of peel load...
Interfacial delamination is a key reliability challenge in composites and micro-electronic systems d...
Accurate characterization of adhesion properties in microelectronic systems is challenging due to (1...
This paper represents a further contribution to the study of identification procedures for material ...
This paper represents a contribution to the study of identification procedures resting on kinematic ...
International audienceWe present a new methodology for the identification of a zone cohesive model t...
Abstract The accuracy of an adopted cohesive zone model (CZM) can affect the simulated fracture resp...
Adhesive bonding modelling is often realised using cohesive zone models (CZM). For pure mode I loadi...