Engineering Rheology. Second Edition

Roger-I Tanner

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Roger-I Tanner - Engineering Rheology. Second Edition.
This book sets out to provide a guide, with examples, for those who wish to make predictions about the mechanical and thermal behaviour of non-Newtonian... Lire la suite
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Résumé

This book sets out to provide a guide, with examples, for those who wish to make predictions about the mechanical and thermal behaviour of non-Newtonian materials in engineering and processing technology. After an introductory survey of the field and a review of basic continuum mechanics, the radical differences between elongational and shear behaviour are shown. Two chapters, one based on a continuum approach and the other using microstructural approaches, lead to useful mathematical descriptions of materials for engineering applications. As examples of nearly-viscometric and nearly-elongational flows, there is a discussion of lubrication and related shearing flows, and fibre-spinning and film-blowing respectively. A long chapter is devoted to the important new field of computational rheology, and this is followed by chapters on stability and turbulence and the all-important temperature effects in flow. This second edition contains much new material not available in book form elsewhere-for example wall slip, suspension rheology, computational rheology and new results in stability theory.

Sommaire

    • Introduction to rheology
    • Review of continuum mechanics
    • Viscometric and elongational flows
    • Continuum-derived theories and experimental data
    • Microstructural theories
    • Lubrication, calendaring and related flows
    • Fibre spinning and film blowing
    • Computational rheology and applications
    • Temperature and pressure effects
    • Stability of flow and turbulence

Caractéristiques

  • Date de parution
    03/03/2000
  • Editeur
  • Collection
    oxford engineering science ser
  • ISBN
    0-19-856473-2
  • EAN
    9780198564737
  • Présentation
    Relié
  • Nb. de pages
    559 pages
  • Poids
    1.125 Kg
  • Dimensions
    16,1 cm × 24,1 cm × 3,8 cm

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À propos de l'auteur

Biographie de Roger-I Tanner

Roger I. Tanner is P. N. Russell Professor of Mechanical Engineering at the University of Sydney.

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