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Applied Mechanics of Solids

Autor Allan F. Bower
en Limba Engleză Hardback – 21 mai 2025
The second edition of Applied Mechanics of Solids provides a concise description of all the concepts needed to predict how solid materials deform and fail under stress. With its companion volume of solved example problems, it is an invaluable class textbook or reference for personal study or review.
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Specificații

ISBN-13: 9781041019954
ISBN-10: 1041019955
Pagini: 600
Dimensiuni: 210 x 280 mm
Ediția:2. Auflage
Editura: Taylor & Francis Ltd.

Cuprins

Overview of Solid Mechanics. Governing Equations. Constitutive Equations: Relations between Stress and Strain. Simple Boundary and Initial Value Problems. Solutions for Linear Elastic Solids. Solutions for Plastic Solids. Finite Element Analysis: An Introduction . Finite Element Analysis: Theory and Implementation. Modeling Material Failure. Solutions for Rods, Beams, Membranes, Plates and Shells. Appendix A: Review of Vectors and Matrices. Appendix B: A Brief Introduction to Tensors and Their Properties. Appendix C: Index Notation for Vector and Tensor Operations. Appendix D: Vector and Tensor Operations in Polar Coordinates. Appendix E: Miscellaneous Derivations.

Recenzii

"It’s an impressive piece of work. It covers an immense amount of material and is well written."
—James R. Barber, University of Michigan, Ann Arbor, USA
"A valuable treatise in mechanics of solids."
—David L. McDowell, Georgia Institute of Technology, Atlanta, USA
"This book is great for materials science and engineering students who are interested in both classic and state-of-the-art materials research. With both in-depth discussion and authoritative summary, it will be widely used in teaching and research in theoretical and computational mechanics of materials."
—Yanfei Gao, University of Tennessee, Knoxville, USA

Notă biografică

Allan Bower is a professor of engineering at Brown University, where he teaches in the undergraduate mechanical engineering program and the graduate program in mechanics of solids. He earned undergraduate and graduate degrees from the University of Cambridge and spent a short period on the faculty at Cambridge before joining Brown in 1992. His research involves developing and using computer simulations to model deformation and failure in materials. Applications of interest include modeling wear, plasticity, and contact fatigue between contacting surfaces; fracture in composites and ceramics; and mechanical failure processes in microelectronic circuits.