IUTAM Symposium on Microstructure-Property Interactions in Composite Materials : proceedings of the IUTAM symposium held in Aalborg, Denmark, 22-25 August 1994

書誌事項

IUTAM Symposium on Microstructure-Property Interactions in Composite Materials : proceedings of the IUTAM symposium held in Aalborg, Denmark, 22-25 August 1994

edited by R. Pyrz

(Solid mechanics and its applications, v. 37)

Kluwer Academic Publishers, c1995

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内容説明・目次

内容説明

This volume contains 35 contributions presented at the "IUTAM Symposium on Microstructure - Property Interactions in Composite Materials". The subject of the symposium was the quantitative description of microstructures and linking this description to physical properties of composite material systems. The contributions emphasized the significance of the microstructure morphology in understanding the nature and origin of a multitude of properties, such as viscoelasticity, plasticity, strength and fracture for a variety of polymer, metal and ceramic-based composites. The volume should be of interest to specialists in the mechanics of solids, materials scientists and engineers investigating the use of advanced materials in structural applications.

目次

  • Comments on a variational micro-macro model for random composites and the integration of microstructural data
  • M. Arminjon, A. Bottero, B. Guessab, S. Turgeman. Correlation between fracture toughness and the microstructre morphology in transversely loaded unidirectional composites
  • M.S. Axelsen, R. Pyrz. The quantitative microstructure-property correlations of composite and porous materials: an engineering tool for designing new materials
  • A.R. Boccaccini, G. Ondracek. Crack growth in a composite with well aligned long fibres
  • J. Botsis, D. Zhao, C. Beldica. Fibre arrangement effects on the microscale stresses of continuously reinforced MMCs
  • H.J. Bohm, F.G. Rammerstorfer. Analytical/experimental study of interphase effects on composite compression strength
  • G.P. Carman, S. Eskandari. The measurement and modelling of fibre directions in composites
  • A.R. Clarke, N.C. Davidson, G. Archenhold. Transformation analysis of inelastic laminates
  • G.J. Dvorak, Y.A. Bahei-El-Din. Development of anisotropy of powder compaction
  • N.A. Fleck. Cracked laminates with imperfect interlaminar interface
  • Z. Hashin. Numerical modelling of crack growth in material models of fibrous composites
  • K.P. Hermann, F. Ferber. Analytical estimate of interaction among ellipsoidal inclusions: upper and lower bounds for strain energy due to interaction
  • M. Hori. Effective moduli of concentrated particulate solids
  • B.L. Karihaloo, J. Wang. Micromechanical analysis of the viscoelastic behaviour of composites
  • P. Kim. S. Toll, J-A.E. Manson. Construction of a stochastic macro-failure model of unidirectional fibre-reinforced composites based on dynamic failure process simulations of micro-failure models
  • I. Kimpara, T. Ozaki. On impregnation quality and resulting mechanical properties of compression moulded commingled yarn based thermoplastic composites
  • V. Klinkmuller, R. Kastel, L. Ye, K. Friedrich. Morphology/loading direction coupling on the transverse behaviour of composites
  • D. Kujawski, Z. Xia, F. Ellyin. Bounds for overall nonlinear elastic or viscoplastic properties of heterogeneous solids
  • S. Nemat-Nasser, B. Balendran, M. Hori. Anisotropic and inhomogeneous plastic flow of fibrous composites
  • J. Ning, E.C. Aifantis. A FFT-based numerical method for computing the mechanical properties from images of their microstructure
  • H. Moulinec, P. Suquet. Hysteretic effects and progressive delamination at composite interfaces
  • Z. Mroz, S. Stupkiewicz. Observation of internal damage and inelastic deformation of graphite/epoxy laminate tubes under cyclic tension-compression
  • S. Murakami, Y. Kanagawa, T. Ishida, A. Kawasaki, Q.S. Bai. Interaction between a main crack and inclusions at shear stress state
  • V. Petrova. Recent work on mesostructures and the mechanics of fiber composites
  • M.R. Piggott. Stiffness reduction in composite laminates due to transverse matrix cracks
  • G.N. Prave.

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