Reinforced and Prestressed Concrete continues to be the most comprehensive text for engineering students, instructors and practising engineers. Theoretical and practical aspects of analysis and design are presented in a clear manner and are complemented by numerous illustrative and design examples to aid students' comprehension of complex concepts.
Reinforced and Prestressed Concrete continues to be the most comprehensive text for engineering students, instructors and practising engineers. Theoretical and practical aspects of analysis and design are presented in a clear manner and are complemented by numerous illustrative and design examples to aid students' comprehension of complex concepts.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Yew-Chaye Loo is the Foundation Professor of Civil Engineering at Griffith University in Queensland. A former Dean of Engineering and Information Technology and Internationalisation Director for Griffith Sciences Group, he is now a Professor Emeritus at the University. In 2013, he was appointed a Member of the Order of Australia in the Queen's Birthday Honours List 'for significant service to civil and structural engineering'.
Inhaltsangabe
Part I. Reinforced Concrete: 1. Introduction 2. Design properties of materials 3. Analysis and design of rectangular beams for bending 4. T-beams and irregular-shaped sections 5. Deflection of beams and crack control 6. Ultimate strength design for shear 7. Ultimate strength design for torsion 8. Bond and stress development 9. Slabs 10. Columns 11. Walls 12. Footings, pile caps and retaining walls 13. Strut-and-tie modelling of concrete structures Part II. Prestressed Concrete: 14. Introduction to prestressed concrete 15. Critical stress stat analysis of beams 16. Critical stress state design of beams 17. Ultimate strength analysis of beams 18. End blocks for prestressing anchorages Appendices.
Part I. Reinforced Concrete: 1. Introduction 2. Design properties of materials 3. Analysis and design of rectangular beams for bending 4. T-beams and irregular-shaped sections 5. Deflection of beams and crack control 6. Ultimate strength design for shear 7. Ultimate strength design for torsion 8. Bond and stress development 9. Slabs 10. Columns 11. Walls 12. Footings, pile caps and retaining walls 13. Strut-and-tie modelling of concrete structures Part II. Prestressed Concrete: 14. Introduction to prestressed concrete 15. Critical stress stat analysis of beams 16. Critical stress state design of beams 17. Ultimate strength analysis of beams 18. End blocks for prestressing anchorages Appendices.
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