Nonlinear Elasticity Theory and Applications

Nonlinear Elasticity Theory and Applications by Y. B. Fu, published by Cambridge University Press on May 7, 2001, is a comprehensive resource that delves into the principles of nonlinear elasticity. Spanning 525 pages, this book addresses the nonlinear effects associated with the deformation of elastic bodies under external forces or temperature changes, highlighting its significant applications in fields such as aerospace, rubber industries, and biomechanics.
Readers will find a detailed exploration of the fundamentals of nonlinear elasticity, along with a thorough review of current research directions in this field. The text balances coherence and detail, making it suitable for both beginners and specialists in engineering, applied mathematics, and physics. With its focus on modern topics and recent developments, this edition serves as an excellent reference for graduate courses and professionals looking to deepen their understanding of mechanics, statics, and related technologies.
Official synopsis Publisher
Nonlinear elasticity is concerned with nonlinear effects associated with deformations of elastic bodies subjected to external forces or temperature variations. It has important applications in many areas, including the aerospace and rubber industries, and biomechanics. This book, written by a group of leading researchers invited especially for the purpose, provides an up-to-date and concise account of the fundamentals of the theory of nonlinear elasticity and a comprehensive review of several major current research directions in this important field. It combines the characteristics of coherence and detail found in standard treatises with the strength and freshness of research articles. The emphasis is placed firmly on coverage of modern topics and recent developments rather than on the very theoretical approach often found. The book will be an excellent reference source for both beginners and specialists in engineering, applied mathematics and physics. It is also ideally suited for graduate courses.
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