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| موضوع: حل كتاب Steel Design Fifth Edition Solution Manual الأحد 18 مارس 2018, 11:11 pm | |
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أخوانى فى الله أحضرت لكم حل كتاب Steel Design Fifth Edition Solution Manual William T. Segui The University of Memphis About the Author v
ويتناول الموضوعات الأتية :
Preface xi 1 Introduction 3 1.1 Structural Design 3 1.2 Loads 6 1.3 Building Codes 7 1.4 Design Specifications 7 1.5 Structural Steel 8 1.6 Standard Cross-Sectional Shapes 12 Problems 17 2 Concepts in Structural Steel Design 21 2.1 Design Philosophies 21 2.2 American Institute of Steel Construction Specification 23 2.3 Load Factors, Resistance Factors, and Load Combinations for LRFD 24 2.4 Safety Factors and Load Combinations for ASD 26 2.5 Probabilistic Basis of Load and Resistance Factors 30 2.6 Steel Construction Manual 34 2.7 Design Computations and Precision 36 Problems 38 3 Tension Members 41 3.1 Introduction 41 3.2 Tensile Strength 42 3.3 Effective Area 50 3.4 Staggered Fasteners 57 3.5 Block Shear 64 3.6 Design of Tension Members 67 3.7 Threaded Rods and Cables 76 3.8 Tension Members in Roof Trusses 79 3.9 Pin-Connected Members 88 Problems 90 4 Compression Members 109 4.1 Introduction 109 4.2 Column Theory 110 4.3 AISC Requirements 117 4.4 Local Stability 121 4.5 Tables for Compression Members 130 4.6 Design 132 4.7 More on Effective Length 138 4.8 Torsional and Flexural-Torsional Buckling 155 4.9 Built-Up Members 162 Problems 171 Contents 5 Beams 189 5.1 Introduction 189 5.2 Bending Stress and the Plastic Moment 190 5.3 Stability 196 5.4 Classification of Shapes 198 5.5 Bending Strength of Compact Shapes 199 5.6 Bending Strength of Noncompact Shapes 211 5.7 Summary of Moment Strength 215 5.8 Shear Strength 216 5.9 Deflection 224 5.10 Design 226 5.11 Floor and Roof Framing Systems 239 5.12 Holes in Beams 245 5.13 Open-Web Steel Joists 248 5.14 Beam Bearing Plates and Column Base Plates 251 5.15 Biaxial Bending 265 5.16 Bending Strength of Various Shapes 276 Problems 281 6 Beam–Columns 299 6.1 Definition 299 6.2 Interaction Formulas 300 6.3 Methods of Analysis for Required Strength 305 6.4 The Moment Amplification Method 307 6.5 Braced versus Unbraced Frames 310 6.6 Members in Braced Frames 311 6.7 Members in Unbraced Frames 327 6.8 Design of Beam–Columns 339 6.9 Trusses with Top-Chord Loads Between Joints 358 Problems 363 7 Simple Connections 377 7.1 Introduction 377 7.2 Bolted Shear Connections: Failure Modes 380 7.3 Bearing Strength, Spacing, and Edge-Distance Requirements 382 7.4 Shear Strength 388 7.5 Installation of High-Strength Bolts 394 7.6 Slip-Critical and Bearing-Type Connections 396 7.7 Design Examples 402 7.8 High-Strength Bolts in Tension 416 7.9 Combined Shear and Tension in Fasteners 428 7.10 Welded Connections 441 7.11 Fillet Welds 443 Problems 461 8 Eccentric Connections 477 8.1 Examples of Eccentric Connections 477 8.2 Eccentric Bolted Connections: Shear Only 478 8.3 Eccentric Bolted Connections: Shear Plus Tension 491 8.4 Eccentric Welded Connections: Shear Only 496 8.5 Eccentric Welded Connections: Shear Plus Tension 511 8.6 Moment-Resisting Connections 519 8.7 Column Stiffeners and Other Reinforcement 536 8.8 End Plate Connections 558 8.9 Concluding Remarks 572 Problems 572 9 Composite Construction 593 9.1 Introduction 593 9.2 Shored versus Unshored Construction 604 9.3 Effective Flange Width 606 9.4 Steel Headed Stud Anchors 610 9.5 Design 613 9.6 Deflections 620 9.7 Composite Beams with Formed Steel Deck 624 9.8 Tables for Composite Beam Analysis and Design 636 9.9 Continuous Beams 644 9.10 Composite Columns 645 Problems 65510 Plate Girders 665 10.1 Introduction 665 10.2 General Considerations 667 10.3 AISC Requirements for Proportions of Plate Girders 670 10.4 Flexural Strength 672 10.5 Shear Strength 675 10.6 Bearing Stiffeners 680 10.7 Design 695 Problems 713 Appendix Plastic Analysis and Design 718 A.1 Introduction 718 A.2 AISC Requirements 720 A.3 Analysis 721 A.4 Design 726 A.5 Concluding Remarks 729 References 730 Answers to Selected Problems 735 Index 739
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