The use of a non-prismatic member such as a stepped beam as a design method has the ability to function as a tool for steel beams optimization. A cover plate is partially welded on the upper and lower flange of the member at the maximum bending moment location to increase its flexural strength and, under critical load, flexural members bend about its strong axis, displace to the lateral direction, and twist coincidentally through a phenomenon known as the Lateral-Torsional Buckling (LTB). There is, however, no equations in the AISC 360-16 specification to calculate the critical moment of a stepped beam (Mst). Therefore, this research focuses on developing Mst for a simply supported stepped beam which deforms on its shear center under static...
The structural steel design specification in Canada, CSA S16-14, uses the same equations for the des...
Critical moment expressions for steel beams based on elastic lateral torsional buckling as given in ...
The current South African Steel design code, SANS 10162-1, has a set of effective length factors fo...
The use of a non-prismatic member such as a stepped beam as a design method has the ability to funct...
The use of a non-prismatic member such as a stepped beam as a design method has the ability to funct...
One of the most common failure modes in a steel beam structure is lateral torsional buckling (LTB). ...
One of the most common failure modes in a steel beam structure is lateral torsional buckling (LTB). ...
Structural steel design standards recognize lateral torsional buckling as a failure mode governing t...
The numerical and experimental determination of the buckling design moment of steel I beams is influ...
Lateral torsional buckling is a limit state for I-shaped steel beams that may often be a controlling...
The study shows the results of theoretical investigations into lateral torsional buckling of bisymme...
AbstractThe resistance of steel members in bending can be influenced by the lateral-torsional stabil...
The flexural capacity of the new hollow flange steel section known as LiteSteel beam (LSB) is limite...
In the design of hot rolled steel structures, stability is one of the most important considerations...
The structural steel design specification in Canada, CSA S16-14, uses the same equations for the des...
The structural steel design specification in Canada, CSA S16-14, uses the same equations for the des...
Critical moment expressions for steel beams based on elastic lateral torsional buckling as given in ...
The current South African Steel design code, SANS 10162-1, has a set of effective length factors fo...
The use of a non-prismatic member such as a stepped beam as a design method has the ability to funct...
The use of a non-prismatic member such as a stepped beam as a design method has the ability to funct...
One of the most common failure modes in a steel beam structure is lateral torsional buckling (LTB). ...
One of the most common failure modes in a steel beam structure is lateral torsional buckling (LTB). ...
Structural steel design standards recognize lateral torsional buckling as a failure mode governing t...
The numerical and experimental determination of the buckling design moment of steel I beams is influ...
Lateral torsional buckling is a limit state for I-shaped steel beams that may often be a controlling...
The study shows the results of theoretical investigations into lateral torsional buckling of bisymme...
AbstractThe resistance of steel members in bending can be influenced by the lateral-torsional stabil...
The flexural capacity of the new hollow flange steel section known as LiteSteel beam (LSB) is limite...
In the design of hot rolled steel structures, stability is one of the most important considerations...
The structural steel design specification in Canada, CSA S16-14, uses the same equations for the des...
The structural steel design specification in Canada, CSA S16-14, uses the same equations for the des...
Critical moment expressions for steel beams based on elastic lateral torsional buckling as given in ...
The current South African Steel design code, SANS 10162-1, has a set of effective length factors fo...