AISC Design Guide 07 – Industrial Buildings Roofs to Column Anchorage, contents
PART 1
1. INDUSTRIAL BUILDINGS – GENERAL
2. LOADING CONDITIONS AND LOADING COMBINATIONS
3. OWNER-ESTABLISHED CRITERIA
3.1 Slab-on-Grade Design
3.2 Gib Cranes
3.3 Interior Vehicular Traffic
3.4 Future Expansion
3.5 Dust Control/Ease of Maintenance
4. ROOF SYSTEMS
4.1 Steel Deck for Built-up or Membrane Roofs
4.2 Metal Roofs
4.3 Insulation and Roofing
4.4 Expansion Joints
4.5 Roof Pitch, Drainage, and Ponding
4.6 Joists and Purlins
5. ROOF TRUSSES
5.1 General Design and Economic Considerations
5.2 Connection Considerations
5.3 Truss Bracing
5.4 Erection Bracing
5.5 Other Considerations
6. WALL SYSTEMS
6.1 Field-Assembled Panels
6.2 Factory-Assembled Panels
6.3 Precast Wall Panels
6.4 Mansory Walls
6.5 Girts
6.6 Wind Columns
7. FRAMING SCHEMES
7.1 Braced Frames vs. Rigid Frames
7.2 HSS Columns vs. W Shapes
7.3 Mezzanine and Platform Framing
7.4 Economic Considerations
8. BRACING SYSTEMS
8.1 Rigid Frame Systems
8.2 Braced Systems
8.3 Temporary Bracing
9. COLUMN ANCHORAGE
9.1 Resisting Tension Forces with Anchore Rods
9.2 Resisting Shear Forces Using Anchore Rods
9.3 Resisting Shear Forces Through Bearing and with Reinforcing Bards
9.4 Column Anchorage Examples (Pinned Base)
9.5 Partial Base Fixity
10. SERVICEABILITY CRITERIA
10.1 Serviceability Criteria for Roof Design
10.2 Metal Wall Panels
10.3 Precast Wall Panels
10.4 Masonry Walls
PART 2
11. INTRODUCTION
11.1 AISE Technical Report 13 Building Classifications
11.2 CMAA 70 Crane Classifications
12. FATIGUE
12.1 Fatigue Damage
12.2 Crane Runway Fatigue Considerations
13. CRANE INDUCED LOADS AND LOAD COMBINATIONS
13.1 Vertical Impact
13.2 Side Thrust
13.3 Longitudinal or Tractive Force
13.4 Crane Stop Forces
13.5 Eccentricities
13.6 Seismic Loads
13.7 Load Combinations
14. ROOF SYSTEMS
15. WALL SYSTEMS
16. FRAMING SYSTEMS
17. BRACING SYSTEMS
17.1 Roof Bracing
17.2 Wall Bracing
18. CRANE RUNWAY DESIGN
18.1 Crane Runway Beam Design Procedure (ASD)
18.2 Plate Girders
18.3 Simple Span vs. Continuous Runways
18.4 Channel Caps
18.5 Runway Bracing Concepts
18.6 Crane Stops
18.7 Crane Rail Attachments
18.7.1 Hook Bolts
18.7.2 Rail Clips
18.7.3 Rail Clamps
18.7.4 Patented Rail Clips
18.7.5 Design of Rail Attachments
18.8 Crane Rails and Crane Rail Joints
19. CRANE RUNWAY FABRICATION AND ERECTION TOLERANCES
20. COLUMN DESIGN
20.1 Base Fixity and Load Sharing
20.2 Preliminary Design Methods
20.2.1 Obtaining Trial Moments of Inertia for Stepped Columns
20.2.2 Obtaining Trial Moments of Inertia for Double Columns
20.3 Final Design Procedures (Using ASD)
20.4 Economic Considerations
21. OUTSIDE CRANES
22. UNDERHUNG CRANES
23. MAINTENANCE AND REPAIR
24. SUMMARY AND DESIGN PROCEDURES
AISC Design Guide 07 – Industrial Buildings Roofs to Column Anchorage
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