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Design of concrete structures / Arthur H. Nilson, David Darwin, Charles W. Dolan. - Fifteenth edition. - New York : McGraw-Hill Education, copyright 2016. - XIII, 786 stron : ilustracje ; 30 cm.
Bibliografia przy rozdziałach.
Concrete, Reinforced Concrete, and Prestressed Concrete Structural Forms Loads Serviceability, Strength, and Structural Safety Design Basis Design Codes and Specifications Safety Provisions of the ACI Code Developing Factored Gravity Loads References Materials Cement Aggregates Proportioning and Mixing Concrete Conveying, Placing, Compacting, and Curing Quality Control Admixtures Properties in Compression Properties in Tension Strength under Combined Stress Shrinkage and Temperature Effects High-Strength Concrete Reinforcing Steels for Concrete Reinforcing Bars Welded Wire Reinforcement Prestressing Steels Fiber Reinforcement References Design of Concrete Structures and Fundamental Assumptions Members and Sections Theory, Codes, and Practice Fundamental Assumptions for Reinforced Concrete Behavior Behavior of Members Subject to Axial Loads Bending of Homogeneous Beams References Problems Chapter Flexural Analysis and Design of Beams Reinforced Concrete Beam Behavior Design of Tension-Reinforced Rectangular Beams Design Aids Practical Considerations in the Design of Beams Rectangular Beams with Tension and Compression Reinforcement TBeams References Problems Shear and Diagonal Tension in Beams Diagonal Tension in Homogeneous Elastic Beams Reinforced Concrete Beams without Shear Reinforcement Reinforced Concrete Beams with Web Reinforcement ACI Code Provisions for Shear Design Effect of Axial Forces 155 Beams with Varying Depth Alternative Models for Shear Analysis and Design Shear-Friction Design Method References Bond, Anchorage, and Development Length Fundamentals of Flexural Bond Bond Strength and Development Length ACI Code Provisions for Development of Tension Reinforcement Anchorage of Tension Bars by Hooks Anchorage in Tension Using Headed Bars Anchorage Requirements for Web Reinforcement Welded Wire Reinforcement Development of Bars in Compression Bundled Bars Bar Cutoff and Bend Points in Beams Structural Integrity Provisions Integrated Beam Design Example Bar Splices Serviceability Cracking in Flexural Members ACI Code Provisions for Crack Control Control of Deflecticms Immediate Deflections Deflections Due to Long-Term Loads ACI Code Provisions for Control of Deflections Deflections Due to Shrinkage and Temperature Changes Moment vs. Curvature for Reinforced Concrete Sections Analysis and Design for Torsion Torsion in Plain Concrete Members Torsion in Reinforced Concrete Members Torsion Plus Shear ACI Code Provisions for T-0rsion Design References Problems Short Columns Axial Compression Transverse Ties and Spirals Compression Plus Bending of Rectangular Columns Strain Compatibility Analysis and Interaction Diagrams Balanced Failure Distributed Reinforcement Unsymmetrical Reinforcement Circular Columns ACI Code Provisions for Column Design Design Aids Biaxial Bending Load Contour Method Reciprocal Load Method Computer Analysis for Biaxial Bending of Columns Bar Splicing in Columns und Ties Near Beam-Column Joints Transmission of Column Loads through Floor Systems References Problems Slender Columns Concentrically Loaded Columns Compression Plus Bending ACI Criteria for Slendemess Effects in Columns ACI Criteria for Nonsway vs. Sway Structures ACI Moment Magnifier Method for Nonsway Frames ACI Moment Magnifier Method for Sway Frames Second-Order Analysis for Slendemess Effects Analysis of lndeterminate Beams and Frames Continuity Loading Simplifications in Frame Analysis Methods for Elastic Analysis Idealization of the Structure Preliminary Design and Guidelines for Proportioning Members Approximate Analysis ACI Moment Coefficients Limit Analysis Problems Analysis and Design of One-Way Slabs Types of Slabs Design of One-Way Slabs Temperature and Shrinkage Reinforcement Analysis and Design of Two-Way Slabs Behavior of Two-Way Edge-Supported Slabs Two-Way Column-Supported Slabs Direct Design Method Column-Supported Slabs Flexural Reinforcement for Column-Supported Slabs Depth Limitations of the ACI Code Equivalent Frame Method Shear Design in Flat Plates and Flat Slabs Transfer of Moments at Columns Openings in Slabs Deflection Calculations Analysis for Horizontal Loads Walls General Design Considerations Simplified Method for Axial Load and Out-of-Plane Moment Alternative Method for Out-of-Plane Slender Wall Analysis Shear Walls Footings and Foundations Types and Functions Spread Footings Design Factors Loads, Bearing Pressures, and Footing Size Wall Footings Column Footings Combined Footings Two-Column Footings Strip, Grid, and Mat Foundations Pile Caps Retaining Walls Function and Types Of Retaining Walls Barth Pressure Barth Pressure for Common Conditions of Loading Eternal Stability Basis of Structural Design Drainage and Other Details Exarnple: Design of a Gravity Retaining Wall: Design of a Cantilever Retaining Wall Counterfort Retaining Walls Precast Retaining Walls Strut-and-Tie Models Development of Strut-and-Tie Models Strut-and-Tie Design Methodology ACI Provisions for Strut-and-Tie Models Applications References Problems Contents Design of Reinforcement at Joints Beam-Column Joints Strut-and-Tie Model for Joint Behavior Beam-to-Girder Joints Ledge Girders Corners and T Joints Brackets and Corbels Concrete Building Systems Floor and Roof Systems Precast Concrete for Buildings Diaphragms Engineering Drawings for Buildings Seismic Design Structural Response Seismic Loading Criteria ACI Provisions for Earthquake-Resistant Structures ACI Provisions for Special Moment Frames ACI Provisions for Special Structural Walls, Coupling Beams, Diaphragms, and Trosses ACI Provisions for Shear Strength ACI Provisions for Intermediate Moment Frames Anchoring to Concrete Behavior of Anchors Concrete Breakout Capacity Anchor Design ACI Provisions for Concrete Breakout Capacity Steel Strength Concrete Breakout Capacity of Single Cast-In and Post-Installed Anchors Pullout Strength of Anchors Side-Face Blowout Pryout of Anchors Combined Shear and Normal Force Anchor Reinforcement Adhesive Anchors Earthquake Design Problems Prestressed Concrete Effects of Prestressing Sources of Prestress Force Prestressing Steels Concrete for Prestressed Construction Elastic Flexural Analysis Flexural Strength Partial Prestressing Flexural Design Based on Concrete Stress Limits Shape Selection Tendon Profiles Flexural Design Based on Load Balancing Loss of Prestress Shear, Diagonal Tension, and Web Reinforcement Bond Stress, Transfer Length, and Development Length Anchorage Zone Design Deflection Crack Control for Class C Flexural Members.
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