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Classical and Generalized Models of Elastic Rods: Modern Mechanics and Mathematics

Autor D. Iesan
en Limba Engleză Hardback – 14 noi 2008
Reflecting new developments in the study of Saint-Venant’s problem, Classical and Generalized Models of Elastic Rods focuses on the deformation of elastic cylinders for three models of continuum: classical elastic continuum, Cosserat elastic body, and porous elastic material.
The author presents a method to construct Saint-Venant’s solutions, minimum energy characterizations of these solutions, and a proof of Saint-Venant’s principle. He then discusses the deformation of nonhomogenous and isotropic cylinders as well as the problem of loaded anisotropic elastic cylinders. The book also deals with the deformation of cylinders within the linearized theory of homogeneous Cosserat elastic solids, the deformation of nonhomogeneous Cosserat cylinders, and the extension, bending, and torsion of porous elastic cylinders.
With numerous results not found in related texts, this book provides a unique, unified point of view in the theory of the deformation of elastic cylinders.
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Specificații

ISBN-13: 9781420086492
ISBN-10: 1420086499
Pagini: 380
Ilustrații: 3 b/w images and PPI 496
Dimensiuni: 156 x 234 x 25 mm
Greutate: 0.66 kg
Ediția:New.
Editura: CRC Press
Colecția Chapman and Hall/CRC
Seria Modern Mechanics and Mathematics


Public țintă

Professional

Cuprins

Preface. Saint-Venant’s Problem. Theory of Loaded Cylinders. Deformation of Nonhomogeneous Cylinders. Anisotropic Bodies. Cosserat Elastic Continua. Nonhomogeneous Cosserat Cylinders. Porous Elastic Bodies. Answers to Selected Problems. Bibliography. Index.

Descriere

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. With numerous results not found in related texts, it presents a method to study the problem of elastic bars subjected to body forces and surface tractions on the lateral boundary. The author examines elastic bars made of inhomogenous elastic materials, studies the behavior of Cosserat cylinders, and discusses the deformation of porous elastic bars. Many exercises and examples show how the methods discussed can be used to solve engineering problems.