Ultimate limit state design of steel-plated structures
โ Scribed by Paek, Jeom Kee; Thayamballi, Anil Kumar
- Publisher
- Wiley
- Year
- 2006
- Tongue
- English
- Leaves
- 661
- Edition
- 2
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Table of Contents
Content: Preface. About the Authors. How to Use This Book. Principles of Limit State Design. Buckling and Ultimate Strength Behavior of Plate-Stiffener Combinations: Beams, Columns and Beam-Columns. Elastic and Inelastic Buckling of Plates under Complex Circumstances. Post-Buckling and Ultimate Strength Behavior of Plates. Elastic and Inelastic Buckling of Stiffened Panels and Grillages. Post-buckling and Ultimate Strength Behavior of Stiffened Panels and Grillages. Ultimate Strength of Plate Assemblies: Plate Girders, Box Columns/Girders and Corrugated Panels. Ultimate Strength of Ship Hulls. Impact Mechanics and Structural Design for Accidents. Fracture Mechanics and Ultimate Strength of Cracked Structures. A Semi-analytical Method for the Elastic-Plastic Large-deflection Analysis of Plates under Combined Loading. The Nonlinear Finite Element Method. The Idealized Structural Unit Method. Appendices. Index.
โฆ Subjects
Stahlkonstruktion;Bemessung;Grenzlast;Building, Iron and steel;Plates, Iron and steel
๐ SIMILAR VOLUMES
Steel plated structures are important in a variety of marine and land-based applications, including ships, offshore platforms, power and chemical plants, box girder bridges and box girder cranes. The basic strength members in steel plated structures include support members (such as stiffeners and pl
Steel plated structures are important in a variety of marine and land-based applications, including ships, offshore platforms, power and chemical plants, box girder bridges and box girder cranes. The basic strength members in steel plated structures include support members (such as stiffeners and pl
Intro; Title Page; Copyright; Contents; Preface; About the Author; How to Use This Book; Chapter 1 Principles of Limit State Design; 1.1 Structural Design Philosophies; 1.1.1 Reliability-Based Design Format; 1.1.2 Partial Safety Factor-Based Design Format; 1.1.3 Failure Probability-Based Design Form