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SOME BASIC FINITE ELEMENT ANALYSIS OF MICROVOID NUCLEATION, GROWTH AND COALESCENCE

B. BENNANI (Laboratoire de Génie Mécanique, Unité de recherche associée au CNRS, Université de Valenciennes et du Hainaut Cambrésis, 59236 Valenciennes Cedex, France)
P. PICART (Laboratoire de Génie Mécanique, Unité de recherche associée au CNRS, Université de Valenciennes et du Hainaut Cambrésis, 59236 Valenciennes Cedex, France)
J. OUDIN (Laboratoire de Génie Mécanique, Unité de recherche associée au CNRS, Université de Valenciennes et du Hainaut Cambrésis, 59236 Valenciennes Cedex, France)

Engineering Computations

ISSN: 0264-4401

Article publication date: 1 May 1993

55

Abstract

Microstructure void volume fraction is taken into account in finite element models developed for large strain elastoplastic problems. Void nucleation rate is related to matrix effective strain rate, void growth to material strain rate and associated elastoplastic potential available for porous material, void coalescence to matrix effective strain rate. The related radial return algorithm is described. Three types of computations are proposed: first, axisymmetric Q4 element traction are given as validation example; second, collar cylinder compression are computed as reference example; third, bulk forming are analysed as large strain specific example. Void volume fraction and hydrostatic stress are mainly discussed according to microvoids nucleation, growth and coalescence. Finally, the main interests of those computations are enhanced.

Keywords

Citation

BENNANI, B., PICART, P. and OUDIN, J. (1993), "SOME BASIC FINITE ELEMENT ANALYSIS OF MICROVOID NUCLEATION, GROWTH AND COALESCENCE", Engineering Computations, Vol. 10 No. 5, pp. 409-421. https://doi.org/10.1108/eb023917

Publisher

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MCB UP Ltd

Copyright © 1993, MCB UP Limited

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