High Strength Concrete (HSC) in Seismic Regions

By: Contributor(s): Material type: TextTextPublication details: Detroit American Concrete Institute 1998Description: 471pSubject(s): DDC classification:
  • 624.1834 HIG
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Bond and Development of Steel Reinforcement in High Strength Concrete - An Overview Bond and Anchorage of Reinforcement in Concrete - New Zealand Code Provosions Confinement of High Strength Concrete for Seismic Performance Confined Concrete with High Strength Materials Confinement of High Strength Concrete Effect of High Strength Concrete (HSC) on Flexural Members Reliability of Load Deformation Estimate for High Strength Reinforced Concrete Beams Effects of Increasing Concrete Strength on the Dimension of Beams Performance of High Strength Concrete (HSC) Columns Confined with Rectilinear Reinforcement Flexural Strength and Ductility of High Strength Concrete Columns Behavior and Design of High Strength RC Walls Tests and Analyses of High Strength Reinforced Concrete Shear Walls in Japan Evaluation of U. S. Shear Strength Provisions for Design of Beam Column Connections Constructed with High Strength Concrete Shear Strength of Beam Column Joints with High Strength Materials High Strength Concrete Beam Column Joints of Moment Resisting Frames Shear Strength of RC Members with High Strength Concrete Application of High Strength Concrete in Seismic Regions New RC Design Guidelines for High Rise Reinforced Concrete Buildings using High Strength Materials Design Concepts and Applications of High Strength Concrete in New Zealand Design Applications of High Strength Concrete in Seismic Regions Bond and Anchorage of Reinforcement in HSC: Discussion Summary Confinement: Discussion Summary Flexural Members (Beams): Discussion Summary Axially Loaded Members (Columns): Discussion Summary Axially Loaded Members (Walls): Discussion Summary Beam Column Joints: Discussion Summary Shear and Torsion: Discussion Summary Design Concepts Applications: Discussion Summary

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