Description
Analytical Approaches for Reinforced Concrete presents mathematically-derived theories and equations for RC design and construction. The book applies deductive reasoning, logic and mathematics to RC. Laying out, deductively, the principles of RC, it encourages researchers to re-imagine and innovate using a solid conceptual framework. Sections consider the reasoning behind key theories, as well as problems that remain unsolved. The title presents key ideas in simple language and illustrates them clearly to help the reader grasp difficult concepts and develop a solid foundation, grounded in mathematics, for further study and research.The book is future-oriented, demonstrating theories that are applicable not only to conventional reinforced concrete members, but also to the envisaged structures of tomorrow. Such developments will increasingly require a deep, deductive understanding of RC. This title is the first of its kind, presenting a fresh analytical approach to reinforced concrete design and construction.- Takes an analytical approach to reinforced concrete using mathematics and deduction- Lays out the reasoning behind key theories and models in reinforced concrete design and construction- Encourages researchers-new and established- to re-imagine and innovate using a solid conceptual framework- Presents difficult concepts that are clearly and analytically presented with accompanying illustrations- Looks forward to the use of reinforced concrete in the complex structures of the future
Table of Contents
1. Failure of Reinforced Concrete Members2. Flexural Failure and Design Theory3. Deductive Approach to Flexural Theory4. Applications of the Flexural Theorems5. Bond Between Reinforcement and Concrete6. Analytical Modeling of Composite Members7. Flexural Deflection8. Confined Concrete9. Ductility Modification Technologies10. Shear Failure of RC Members11. Modeling
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