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Nonlinear Solid Mechanics: Bifurcation Theory and Material Instability

Nonlinear Solid Mechanics: Bifurcation Theory and Material Instability

Nonlinear Solid Mechanics: Bifurcation Theory and Material Instability Paperback - 2014

by Davide Bigoni

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Paperback. New. New Book; Fast Shipping from UK; Not signed; Not First Edition; For researchers and graduate students, this book addresses the complex modelling of materials behaviour under extreme mechanical conditions and of failure in terms of non-linear continuum mechanics and instability theory. The theoretica
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Details

  • Title Nonlinear Solid Mechanics: Bifurcation Theory and Material Instability
  • Author Davide Bigoni
  • Binding Paperback
  • Condition New
  • Pages 554
  • Volumes 1
  • Language ENG
  • Publisher Cambridge University Press
  • Publication date 2014-07-17
  • Illustrated Yes
  • Features Illustrated
  • Bookseller's Inventory # ria9781107699502_inp
  • ISBN 9781107699502 / 1107699509
  • Weight 2.09 lbs (0.95 kg)
  • Dimensions 10 x 7 x 1.12 in (25.40 x 17.78 x 2.84 cm)
  • Themes
    • Aspects (Academic): Science/Technology Aspects
  • Category Science
  • Dewey Decimal Code 620.112
  • Quantity available 562

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Reader reviews for Nonlinear Solid Mechanics: Bifurcation Theory and Material Instability

From the publisher

This book covers solid mechanics for nonlinear elastic and elastoplastic materials, describing the behavior of ductile material subject to extreme mechanical loading and its eventual failure. The book highlights constitutive features to describe the behavior of frictional materials such as geological media. On the basis of this theory, including large strain and inelastic behaviors, bifurcation and instability are developed with a special focus on the modeling of the emergence of local instabilities such as shear band formation and flutter of a continuum. The former is regarded as a precursor of fracture, while the latter is typical of granular materials. The treatment is complemented with qualitative experiments, illustrations from everyday life, and simple examples taken from structural mechanics.
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