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Hassoun, M. Nadim / Al-Manaseer, Akthem
Structural Concrete
Theory and Design

5. Auflage Mai 2012
142,- Euro
2012. 1032 Seiten, Hardcover
ISBN 978-1-118-13134-3 - John Wiley & Sons

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Kurzbeschreibung
Emphasizing a conceptual understanding of concrete design and analysis, this revised and updated edition builds the student's understanding by presenting design methods in an easy to understand manner supported with the use of numerous examples and problems. Written in intuitive, easy-to-understand language, it includes SI unit examples in all chapters, equivalent conversion factors from US customary to SI throughout the book, and SI unit design tables. In addition, the coverage has been completely updated to reflect the latest ACI 318-11 code.

Aus dem Inhalt
Preface xiii

Notation xvii

Conversion Factors xxiii

1 Introduction 1

References 14

2 Properties of Reinforced Concrete 15

Summary 70

Referecnces 72

Problems 73

3 Flexural Analysis of Reinforced Concrete Beams 75

Summary 138

References 141

Problems 142

4 Flexural Design of Reinforced Concrete Beams 146

Summary 175

Problems 179

5 Shear and Diagonal Tension 183

Summary 217

References 218

Problems 218

6 Deflection and Control of Cracking 222

Summary 248

References 249

Problems 250

7 Development Length of Reinforcing Bars 253

Summary 282

References 283

Problems 283

8 Design of Deep Beams by the Strut-and-Tie Method 287

*8.1 Introduction 287

*8.2 B- and D-Regions 287

*8.3 Strut-and-Tie Model 287

*8.4 ACI Design Procedure to Build a Strut-and-Tie Model 290

*8.5 Strut-and-Tie Method According to AASHTO LRFD 299

*8.6 Deep Members 300

References 316

9 One-Way Slabs 317

*9.7 One-Way Joist Floor System 328

Summary 331

References 333

Problems 333

10 Axially Loaded Columns 335

Summary 345

References 346

Problems 346

11 Members in Compression and Bending 348

*11.10 Rectangular Columns with Side Bars 369

*11.11 Load Capacity of Circular Columns 373

*11.14 Biaxial Bending 389

*11.15 Circular Columns with Uniform Reinforcement under Biaxial Bending 391

*11.16 Square and Rectangular Columns under Biaxial Bending 394

*11.17 Parme Load Contour Method 395

*11.18 Equation of Failure Surface 400

*11.19 SI Example 403

Summary 405

References 407

Problems 407

12 Slender Columns 412

Summary 431

References 432

Problems 433

13 Footings 435

*13.6 Combined Footings 464

*13.7 Footings Under Eccentric Column Loads 470

*13.8 Footings Under Biaxial Moment 472

*13.9 Slabs On Ground 475

*13.10 Footings On Piles 475

Summary 476

References 479

Problems 479

14 Retaining Walls 482

Summary 509

References 510

Problems 510

15 Design for Torsion 515

*15.1 Introduction 515

*15.2 Torsional Moments in Beams 516

*15.3 Torsional Stresses 517

*15.4 Torsional Moment in Rectangular Sections 520

*15.5 Combined Shear and Torsion 521

*15.6 Torsion Theories for Concrete Members 521

*15.7 Torsional Strength of Plain Concrete Members 526

*15.8 Torsion in Reinforced Concrete Members (ACI Code Procedure) 526

*15.9 Summary of ACI Code Procedures 534

Summary 542

References 543

Problems 544

16 Continuous Beams and Frames 547

Summary 598

References 599

Problems 600

17 Design of Two-Way Slabs 603

Summary 684

References 686

Problems 686

18 Stairs 689

Summary 715

References 715

Problems 716

19 Introduction to Prestressed Concrete 718

Summary 774

References 776

Problems 777

20 Seismic Design of Reinforced Concrete Structures 780

References 849

Problems 849

21 Beams Curved in Plan 851

Summary 878

References 879

Problems 879

22 Prestressed Concrete Bridge Design Based on AASHTO LRFD Bridge Design Specifications 880

References 937

23 Design and Analysis Flowcharts 938

Appendix A: Design Tables (U.S. Customary Units) 962

Appendix B: Design Tables (SI Units) 972

Appendix C: Structural Aids 980

Index 1001

 





 

        

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