Even for the doubly symmetric I-beams under linear distributed moment, the design formulas given by codes of different countries are quite different. This paper will derive a dimensionless analytical solution via linear stability theory and propose a new design formula of the critical moment of the lateral-torsional buckling (LTB) of the simply supported I-beams under linear distributed moment. Firstly, the assumptions of linear stability theory are reviewed, the dispute concerning the LTB energy equation is introduced, and then the thinking of Plate-Beam Theory, which can be used to fully resolve the challenge presented by Ojalvo, is presented briefly; secondly, by introducing the new dimensionless coefficient of lateral deflection, the ne...
AbstractThis paper deals with lateral-torsional buckling of web-tapered I-beams with doubly symmetri...
A torsion differential equation previously used for analysing the elastic lateral buckling of simply...
Structural steel design standards recognize lateral torsional buckling as a failure mode governing t...
Lateral torsional buckling is a limit state for I-shaped steel beams that may often be a controlling...
The study presents the results of theoretical investigations into lateral torsional buckling (LTB) o...
The study shows the results of theoretical investigations into lateral torsional buckling of bisymme...
In the past decades, great progress has been made in analyzing lateral torsional buckling of slender...
Lateral torsional buckling is a global buckling mode which should be considered in design of slender...
The paper examines the elastic lateral buckling of simply supported monosymmetric I-beams under rans...
The Wagner coefficient is a key parameter used to describe the inelastic lateral-torsional buckling ...
This paper concerns the optimal distribution of a given volume of material in I-beams so as to maxim...
The use of a non-prismatic member such as a stepped beam as a design method has the ability to funct...
The analytical approach is used for checking the stability of laterally unrestrained bisymmetric bea...
The paper investigates the elastic lateral buckling of simply supported monosymmetric I-beams under ...
One of the most common failure modes in a steel beam structure is lateral torsional buckling (LTB). ...
AbstractThis paper deals with lateral-torsional buckling of web-tapered I-beams with doubly symmetri...
A torsion differential equation previously used for analysing the elastic lateral buckling of simply...
Structural steel design standards recognize lateral torsional buckling as a failure mode governing t...
Lateral torsional buckling is a limit state for I-shaped steel beams that may often be a controlling...
The study presents the results of theoretical investigations into lateral torsional buckling (LTB) o...
The study shows the results of theoretical investigations into lateral torsional buckling of bisymme...
In the past decades, great progress has been made in analyzing lateral torsional buckling of slender...
Lateral torsional buckling is a global buckling mode which should be considered in design of slender...
The paper examines the elastic lateral buckling of simply supported monosymmetric I-beams under rans...
The Wagner coefficient is a key parameter used to describe the inelastic lateral-torsional buckling ...
This paper concerns the optimal distribution of a given volume of material in I-beams so as to maxim...
The use of a non-prismatic member such as a stepped beam as a design method has the ability to funct...
The analytical approach is used for checking the stability of laterally unrestrained bisymmetric bea...
The paper investigates the elastic lateral buckling of simply supported monosymmetric I-beams under ...
One of the most common failure modes in a steel beam structure is lateral torsional buckling (LTB). ...
AbstractThis paper deals with lateral-torsional buckling of web-tapered I-beams with doubly symmetri...
A torsion differential equation previously used for analysing the elastic lateral buckling of simply...
Structural steel design standards recognize lateral torsional buckling as a failure mode governing t...