Applied Plasticity
Applied Plasticity begins with the fundamentals of the mathematical theory of plasticity. The discussion then turns to the theory of plastic stress and its applications to structural analysis. It concludes with a wide range of topics in dynamic plasticity including wave propagation, armor penetration, and structural impact in the plastic range. In view of the rapidly growing interest in computational methods, an appendix presents the fundamentals of a finite-element analysis of metal-forming problems.
chapters(Applied Plasticity):
The fundamentals of the mathematical theory of plasticity are discussed in Chapter 1 with sufficient details, in order to eliminate the need for frequent references to the author’s earlier volume.
The theory of plane plastic stress and its applications to structural analysis and sheet metal forming are presented in Chapter 2.
The axially symmetrical plastic state, as well as a few three-dimensional problems of plasticity, is treated in Chapter 3.
The plastic behavior of plates and shells, mainly from the point of view of limit analysis, is discussed with several examples in Chapters 4 and 5.
The plasticity of metals with fully developed or thotropic anisotropy and its application to the plastic behavior of an isotropic sheets are presented in Chapter 6.
The generalized tangent modulus theory of buckling in the plastic range for columns, plates, and shells is treated in Chapter 7 from the point of view of the bifurcation phenomenon.
Chapter 8 deals with a wide range of topics in dynamic plasticity, including the wave propagation, armor penetration, and structural impact in the plastic range.
The fundamentals of the rigid/plasticfiniteelement method, with special reference to its application to metal-forming processes, are presented in Chapter 9, where several examples are included for illustration.
Applied Plasticity: The book in its present form would be suitable for teaching advanced graduate level courses on plasticity and metal forming to students of mechanical and manufacturing engineering, as well as on structural plasticity to students of civil and structural engineering.
The book will also be found useful for teaching courses on dynamic plasticity to both the mechanical and civil engineering students. Though intended primarily for research workers in the field of plasticity, senior undergraduate students and practicing engineers are also likely to benefit from this book to a large extent.
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