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Modelling of functionally graded materials by numerical homogenization
Authors:S. Schmauder  U. Weber
Affiliation:(1) Staatliche Materialprüfungsanstalt (MPA) University of Stuttgart, Pfaffenwaldring 32, D-70569 Stuttgart, Germany e-mail: siegfried.schmauder@mpa.uni-stuttgart.de Fax: (0711)685 2635, DE
Abstract:Summary  In this contribution, the mechanical behaviour of different ZrO2/NiCr 80 20 compositions is analysed and compared with experimental findings. The microwave-sintered material is found to possess a slightly dominant ceramic matrix for intermediate volume fractions. Its thermal expansion coefficient deviates from the rule of mixture. The modulus and the stress strain behaviour can be simulated by a numerical homogenization procedure, and the influence of residual stresses is found to be negligible. A newly introduced parameter (matricity) describes the mutual circumvention of the phases and is found to strongly control the stress level of the composite, globally as well as locally. Finally, a graded component and a metal/ceramic bi-material are compared for thermal as well as mechanical loading. Received 23 November 1999; accepted for publication 26 May 2000
Keywords:  finite element method  interpenetrating microstructures  matricity  residual stress  homogenization
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