Elastic, plastic and yield design of reinforced structures
Language: English Series: Mechanical engineering and solid mechanics | / edited by Noel ChallamelPublication details: 2017 London ISTE PressDescription: xiv, 328pISBN:- 9781785482052
- 620.1126 B866e
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PK Kelkar Library, IIT Kanpur | General Stacks | 620.1126 B866e (Browse shelf(Opens below)) | Checked out to Pritam Chakraborty (E0576500) | 10/10/2024 | A183248 |
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620.1126 B785e3 ELEMENTARY ENGINEERING FRACTURE MECHANICS | 620.1126 B785e3 ELEMENTARY ENGINEERING FRACTURE MECHANICS | 620.1126 B785T THE PRACTICAL USE FOR FRACTURE MECHANICS | 620.1126 B866e Elastic, plastic and yield design of reinforced structures | 620.1126 C632m Modern applied fracture mechanics | 620.1126 C841A CRACK ARREST CONCEPTS FOR FAILURE PREVENTION AND LIFE EXTENSION | 620.1126 D993 DYNAMIC FRACTURE MECHANICS |
Elastic, Plastic and Yield Design of Reinforced Structures presents a whole set of new results which have been published by the authors over the last 30 years in the field of continuum solid mechanics applied to the analysis and design of reinforced civil engineering structures.
The focus is on the development and application of up-scaling/homogenization methods in the design of such composite structures, with a special emphasis on the plastic behavior and ultimate strength of materials.
The specificity of the book is highlighted by at least two completely innovative concepts which lie at the very heart of the book’s originality: the elaboration of a fully comprehensive homogenization-based method for the design of reinforced structures (and not only materials), through the study of macroscopic behavior, and the development of a multiphase model for materials reinforced by linear inclusions, which considerably extends the range of applicability of the classical homogenization procedure.
Sums up almost thirty years of original research in the field of mechanics applied to the analysis and design of reinforced civil engineering structures
Focuses on the application of upscaling/homogenization methods to the design of civil engineering structures
Highlights the elaboration of a fully comprehensive homogenization-based method for the design of reinforced structures (and not only materials), through the concept of macroscopic behavior
Features development of a multiphase model for materials reinforced by linear inclusions, which considerably extends the range of applicability of the classical homogenization procedure.
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