Analysis of Thin-Walled Beams /

This book presents a comprehensive introduction to an advanced beam theory applicable to thin-walled beams of rectangular and arbitrarily-shaped cross-sections. Furthermore, it describes a unique beam-based approach to handling joint structures consisting of thin-walled beams, compiled here for the...

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Bibliographic Details
Main Authors: Kim, Yoon Young (Professor of mechanical engineering) (Author), Kim, Yoon Young (Author), Choi, Soomin (://id.loc.gov/vocabulary/relators/aut), Jang, Gang-Won (://id.loc.gov/vocabulary/relators/aut)
Corporate Author: SpringerLink (Online service)
Format: Book
Language:English
Published: Singapore : Springer Nature Singapore : Imprint: Springer, 2023
Edition:1st ed. 2023
Series:Solid Mechanics and Its Applications, 257
Subjects:
Description
Summary:This book presents a comprehensive introduction to an advanced beam theory applicable to thin-walled beams of rectangular and arbitrarily-shaped cross-sections. Furthermore, it describes a unique beam-based approach to handling joint structures consisting of thin-walled beams, compiled here for the first time. This higher-order beam theory (HoBT), developed by the authors over the past two decades, uses more than six degrees of freedom (DOFs) in contrast to the classical theories, which use only six DOFs. The additional degrees of freedom describe sectional deformations such as warping and distortion. This book presents a novel systematic procedure to derive the sectional deformations analytically for rectangular cross-sections and numerically for arbitrarily-shaped cross-sections. This book is a must for structural/mechanical engineers who wish to understand and design structures involving thin-walled beams
Physical Description:1 online resource (381 pages) : illustrations (black and white, and color)
1 online resource (XII, 373 p. 143 illus., 115 illus. in color.) online resource
Bibliography:Includes bibliographical references and index
ISBN:9789811977718
9789811977725
9789811977732
9789811977749
ISSN:2214-7764 ;
2214-7764