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Reflecting developments in the study of Saint-Venant's problem, this book focuses on the deformation of elastic cylinders for three models of continuum: classical elastic continuum, Cosserat elastic body, and porous elastic material. It includes exercises and examples that show how the methods discussed can be used to solve engineering problems.
Explores numerous stochastic models and methods used in the mechanics of random media and illustrates these in a variety of applications. This book offers a refresher in several tools used in stochastic mechanics, followed by two chapters that outline periodic and disordered planar lattice (spring) networks.
Presenting the general framework of configurational forces, this book offers an approach to material forces that can be used to predict the propagation of defects in materials ranging from dislocations and cracks in metals to domain walls in ferromagnets and many industrial components.
Presents an introduction to the variational formulation of finite element methods in solid mechanics. This book also introduces advances in the theory and applications of incompatible and multivariable finite element methods.
Describes continuum mechanics and continuum theory of plasticity. This book covers anisotropic plasticity, and incorporates research results related to the endochronic theory of plasticity that are obtained by the author. It is suitable for readers pursuing research in mechanical behavior of engineering materials.
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