A numerical analysis of relationship between ductility and nucleation and critical void volume fraction parameters of Gurson–Tvergaard–Needleman model

Author:

Miloud M Hadj12,Imad A3,Benseddiq N3,Bachir Bouiadjra B4,Bounif A2,Serier B4

Affiliation:

1. Département de Mécanique, Université Hassiba Benbouali de Chlef, Chlef, Algérie

2. Département de Mécanique, Université des Sciences et de la Technologie ‘Mohamed Boudiaf’ Oran, Algérie

3. Laboratoire de Mécanique de Lille, UMR CNRS 8107, Cité Scientifique, France

4. LMPM, Department of Mechanical Engineering, University of de Sidi Belabes, Sidi Belabès, Algéria

Abstract

Gurson–Tvergaard–Needleman model is widely used to describe the three stages of ductile tearing: nucleation, growth and the coalescence of micro-voids. The aim of this article is to study the relationship between volume fraction of voids and the fracture strain ɛf. The effects of the volume fraction of nucleation, fN, and the critical volume fraction, fc, were analysed. These parameters play crucial roles in the process of ductile damage. A phenomenological analysis is carried out to study the relationship between the different void volume parameters and the fracture strain ɛf. A method is proposed for the determination of fNand fc, knowing the experimental fracture strain ɛf. The experimental parameters are extracted from the load–diametric contraction curve of an axisymmetric notched tensile bar test AN2.

Publisher

SAGE Publications

Subject

Mechanical Engineering

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