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Guide to Stability Design Criteria for Metal Structures

Guide to Stability Design Criteria for Metal Structures
Author: Theodore V. Galambos
Publisher: Wiley-Interscience
Total Pages: 826
Release: 1988-03-22
Genre: Technology & Engineering
ISBN:

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This Guide, compiled and updated by the Structural Stability Research Council, has long been an indispensable bridge between research and practice. Provides simplified and refined procedures applicable to design and to assessing design limitations, and offers guidance to design specifications, codes, and standards currently applied to the stability of metal structures. Most chapters have been rewritten and three new chapters cover stability theory, box girders, and the application of the finite element method to the solution of stability problems. Illustrated with over 250 figures.


Stability of Metal Structures

Stability of Metal Structures
Author: Lynn S. Beedle
Publisher:
Total Pages: 1008
Release: 1991
Genre: Technology & Engineering
ISBN:

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Do you know how many specifications deal with stability design of metal structures? Do you know which provisions are the same, which are different, & why they are different? Do you know which specifications use allowable stress design & which use Limit States Design (or LFRD)? At your fingertips you will find all the major specifications of the world, an indication of some of their differences, & some of the reasons why these differences exist. Geographical regions covered - Australia, China, Eastern Europe, Japan, North America & Western Europe. Topics covered - Compression Members; Built-Up Members; Beams; Plate & Box Girders; Beam-Columns; Frames; Arches; Triangulated Structures; Tubular Structures; Shells; Cold-formed Members; Composite Members; Earthquakes; & General Provisions & Design Requirements. This book is a 940 page comprehensive world-wide study of over 100 specifications & codes on stability design of metal structures. It is the only book in the world which evaluates specifications & codes, compares & contrasts them & explores some of the major reasons for their differences. Order from: Structural Stability Research Council, Fritz Engineering Laboratory 13, Lehigh University, Bethlehem, PA 18015.


Guide to Stability Design Criteria for Metal Structures

Guide to Stability Design Criteria for Metal Structures
Author: Ronald D. Ziemian
Publisher: John Wiley & Sons
Total Pages: 1120
Release: 2010-02-08
Genre: Technology & Engineering
ISBN: 0470085258

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The definitive guide to stability design criteria, fully updated and incorporating current research Representing nearly fifty years of cooperation between Wiley and the Structural Stability Research Council, the Guide to Stability Design Criteria for Metal Structures is often described as an invaluable reference for practicing structural engineers and researchers. For generations of engineers and architects, the Guide has served as the definitive work on designing steel and aluminum structures for stability. Under the editorship of Ronald Ziemian and written by SSRC task group members who are leading experts in structural stability theory and research, this Sixth Edition brings this foundational work in line with current practice and research. The Sixth Edition incorporates a decade of progress in the field since the previous edition, with new features including: Updated chapters on beams, beam-columns, bracing, plates, box girders, and curved girders. Significantly revised chapters on columns, plates, composite columns and structural systems, frame stability, and arches Fully rewritten chapters on thin-walled (cold-formed) metal structural members, stability under seismic loading, and stability analysis by finite element methods State-of-the-art coverage of many topics such as shear walls, concrete filled tubes, direct strength member design method, behavior of arches, direct analysis method, structural integrity and disproportionate collapse resistance, and inelastic seismic performance and design recommendations for various moment-resistant and braced steel frames Complete with over 350 illustrations, plus references and technical memoranda, the Guide to Stability Design Criteria for Metal Structures, Sixth Edition offers detailed guidance and background on design specifications, codes, and standards worldwide.


Buckling And Postbuckling Structures: Experimental, Analytical And Numerical Studies

Buckling And Postbuckling Structures: Experimental, Analytical And Numerical Studies
Author: Brian G Falzon
Publisher: World Scientific
Total Pages: 526
Release: 2008-05-23
Genre: Technology & Engineering
ISBN: 1908979240

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This book provides an in-depth treatment of the study of the stability of engineering structures. Contributions from internationally recognized leaders in the field ensure a wide coverage of engineering disciplines in which structural stability is of importance, in particular the analytical and numerical modelling of structural stability applied to aeronautical, civil, marine and offshore structures. The results from a number of comprehensive experimental test programs are also presented, thus enhancing our understanding of stability phenomena as well as validating the analytical and computational solution schemes presented. A variety of structural materials are investigated with special emphasis on carbon-fibre composites, which are being increasingly utilized in weight-critical structures. Instabilities at the meso- and micro-scales are also discussed. This book will be particularly relevant to professional engineers, graduate students and researchers interested in structural stability./a


Stability and Ductility of Steel Structures under Cyclic Loading

Stability and Ductility of Steel Structures under Cyclic Loading
Author: Yuhshi Fukumoto
Publisher: CRC Press
Total Pages: 386
Release: 1991-12-07
Genre: Technology & Engineering
ISBN: 9780849301445

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The U.S.-Japan Joint Seminar on Stability and Ductility of Steel Structures under Cyclic Loading was held in Osaka, Japan on July 1-3, 1991. This three-day seminar was devoted to five main topics: 1) materials properties and plasticity models, which featured experimental investigations of the material properties of structural steels and plasticity models of the material characteristics under dynamic and cyclic loading conditions; 2) experimental observations, which featured experimental studies of cyclic buckling behavior of steel structural members and frames subjected to dynamic and cyclic loading conditions; 3) analytical modeling, which discussed analytical modeling of the cyclic buckling behavior of steel structural members and frames; 4) design implementation, which emphasized earthquake engineering design of steel structures against cyclic buckling; and 5) future research needs, in which future analytical and experimental research needs on the behavior and design of steel structures subjected to dynamic and cyclic loading conditions were identified. This book contains 30 contributed papers presented at the seminar.