This paper responds to the need for a theoretical model to describe the structural strength capacity of innovative hollow corrugated columns consisting of four cold-formed corrugated mild steel plates. Interest in these columns has been growing over a number of years, due to high ratio of axial load bearing capacity to weight. The paper utilises the Direct Strength Method (DSM) to calculate the axial strength of aforementioned columns while the results are compared with those obtained from experiments and finite element models. Existing formulations are extended to predict local failure of these columns over a vast range of slenderness with a good degree of accuracy. The results show the appropriateness of this method as an alternative for ...
The design of cold-formed steel channels with complex stiffeners could be quite tedious in calculati...
This paper deals with the static compression behaviour of concrete-filled double-skin tubular (CFDST...
For designing Cold-Formed Steel (CFS) structural members under compression, AISI S100 (2016) incorpo...
This paper deals with developing advanced, yet design-oriented expressions for ultimate strength of ...
AbstractThe (DSM) direct strength method [1] is used in order to predict the axial compression capac...
The Direct Strength Method (DSM) of cold-formed steel member design employs local, distortional, and...
There has recently been a growing trend of replacing conventional structural elements by novel compo...
Latest development in material and manufacturing technologies make it possible to increase the yield...
This paper evaluates the strength of unlipped channel columns using the Direct Strength Method (DSM)...
AbstractThe in-plane compressive response of corrugated core sandwich columns is investigated analyt...
This addendum provides revisions and addition to the May 2008 proposal (attached) on the Direct Stre...
The strength of thin-walled stainless steel columns has been investigated extensively over the past ...
The behaviour of austenitic, ferritic and duplex stainless steel Rectangular and Square Hollow Secti...
This paper describes the distortional buckling behaviour of a series of innovative cold-formed steel...
This study proposes a design procedure for the local buckling strength prediction of cold-formed ste...
The design of cold-formed steel channels with complex stiffeners could be quite tedious in calculati...
This paper deals with the static compression behaviour of concrete-filled double-skin tubular (CFDST...
For designing Cold-Formed Steel (CFS) structural members under compression, AISI S100 (2016) incorpo...
This paper deals with developing advanced, yet design-oriented expressions for ultimate strength of ...
AbstractThe (DSM) direct strength method [1] is used in order to predict the axial compression capac...
The Direct Strength Method (DSM) of cold-formed steel member design employs local, distortional, and...
There has recently been a growing trend of replacing conventional structural elements by novel compo...
Latest development in material and manufacturing technologies make it possible to increase the yield...
This paper evaluates the strength of unlipped channel columns using the Direct Strength Method (DSM)...
AbstractThe in-plane compressive response of corrugated core sandwich columns is investigated analyt...
This addendum provides revisions and addition to the May 2008 proposal (attached) on the Direct Stre...
The strength of thin-walled stainless steel columns has been investigated extensively over the past ...
The behaviour of austenitic, ferritic and duplex stainless steel Rectangular and Square Hollow Secti...
This paper describes the distortional buckling behaviour of a series of innovative cold-formed steel...
This study proposes a design procedure for the local buckling strength prediction of cold-formed ste...
The design of cold-formed steel channels with complex stiffeners could be quite tedious in calculati...
This paper deals with the static compression behaviour of concrete-filled double-skin tubular (CFDST...
For designing Cold-Formed Steel (CFS) structural members under compression, AISI S100 (2016) incorpo...