Fundamentals of Structural Stability
Autor George Simitses, Dewey H Hodgesen Limba Engleză Hardback – 26 ian 2006
This engineering textbook will provide a focused treatment on the study of how structures behave and perform when under stress loading, including plastic deformation and buckling. All advanced engineering students studying engineering mechanics, structural analysis and design, fatigue and failure, and other related subjects need to have this knowledge, and this book will provide it in a thorough and coherent fashion. Written by two of the world’s leading engineering professors in this subject area, the pedagogy has been classroom-tested over many years and should find a receptive readership among both students and instructors.
- An understandable introduction to the theory of structural stability, useful for a wide variety of engineering disciplines, including mechanical, civil and aerospace engineering
- Covers both static and dynamic loads, for both conservative and nonconservative systems
- Emphasizes elastic behavior under loads, including vertical buckling, torsional buckling and nonlinear affects of structural system buckling and stability
- Case examples to illustrate real-world applications of Stability Theory
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Specificații
ISBN-13: 9780750678759
ISBN-10: 0750678755
Pagini: 480
Ilustrații: 1
Dimensiuni: 184 x 260 x 25 mm
Greutate: 1.02 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0750678755
Pagini: 480
Ilustrații: 1
Dimensiuni: 184 x 260 x 25 mm
Greutate: 1.02 kg
Editura: ELSEVIER SCIENCE
Public țintă
•Upper Undergraduate and First-year Graduate students in Mechanical, Civil, and Aerospace Engineering•Students in Materials Engineering, Solid Mechanics, Engineering Mechanics
Cuprins
Mechanical Stability Models, Elastic Buckling of Columns, Buckling of Frames, The Energy Criterion and Energy-Based Models, Columns on Elastic Foundations, Buckling of Shafts, Buckling of Rings and Arches, Flexural-Torsional Buckling of Thin-Walled Beam Columns, Lateral-Torsional Buckling of Deep Beams, Nonconservative Systems and Dynamic Buckling, Work and Energy Related Principles and Theorems.