Structural Plasticity Limit, Shakedown and Dynamic Plastic Analyses of Structures /

Limit and shakedown analysis for structures can provide a very useful tool for design and analysis of engineering structures. "Structural Plasticity - Limit, Shakedown and Dynamic Plastic Analyses of Structure" provides more general solutions of limit and shakedown analysis for structures...

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Bibliographic Details
Main Authors: Yu, Maohong. (Author), Li, Jianchun. (Author), Ma, Guowei. (Author)
Corporate Author: SpringerLink (Online service)
Format: Electronic
Language:English
Published: Berlin, Heidelberg : Springer Berlin Heidelberg, 2009.
Series:Advanced Topics in Science and Technology in China,
Subjects:
Online Access:https://ezaccess.library.uitm.edu.my/login?url=http://dx.doi.org/10.1007/978-3-540-88152-0
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505 0 # |a Preface -- 1. Introduction -- 2 Stress, strain and strain-rate tensor -- 3 Yield Function -- 4 Limit Analysis Theorem -- 5 Unified solution for Plastic Limit Analysis of Circular Plates -- 6 Unified solution for Plastic Limit Analysis of Circular Plate Under Arbitrary Load -- 7 Unified solution for Plastic Limit Analysis of Annular Plate -- 8 Unified solution for Plastic Limit Analysis of Oblique plate, Rhombus plate, Rectangle plate and Square Plate -- 9 Unified solution for Plastic Limit Analysis of Pressure Vessels -- 10 Unified solution for Dynamic Plastic Behavior of Circular Plate Under Soft Impact -- 11 Unified solution for Limit Angular Velocity of Rotating Disc -- 12 Unified solution for Plastic Analysis of Orthorgonal Circular Plate -- 13 Shakedown Theorem -- 14 Unified solution for Shakedown Analyses of Pressure Vessel and Rotating Disc. 
520 # # |a Limit and shakedown analysis for structures can provide a very useful tool for design and analysis of engineering structures. "Structural Plasticity - Limit, Shakedown and Dynamic Plastic Analyses of Structure" provides more general solutions of limit and shakedown analysis for structures by using a unified strength theory. A series of solutions of plates from circular, annular plates to rhombus plates and square plates, rotating discs and cylinders, pressure vessels are presented. These results encompass the Tresca-Mohr-Coulomb solution of structure as special cases. The unified solution, which cannot be obtained by using a single criterion, is suitable to more materials and structures. Maohong Yu is professor of Department of Civil Engineering at Xi'an Jiaotong University, China. He has authored 12 books including "Unified Strength Theory and Its Applications" and "Generalized Plasticity". 
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