Concrete-filled steel tubes present excellent structural and constructional performances because they ideally combine the advantage of concrete and steel tube. Thus, they are widely used in civil infrastructures. However, they inevitably suffer from either hard compacting or high costs. Thus, convenient and rapid construction for compacting concrete and cost saving are the urgent challenges for concrete-filled steel tubes. Therefore, this study investigates filling a thin-walled steel tube with self-compacting concrete to solve the challenges presented by traditional concrete-filled steel tube columns, such as poor compacting performance and high costs. This experimental study tests self-compacting concrete-filled thin-walled steel tube (SC...
This paper investigates the axial behavior of slender reinforced concrete (RC) columns strengthened ...
Concrete-encased concrete-filled steel tube (CECFST), an innovative type of concrete-steel composite...
This report aims to investigate the structural performance of self-compacting concrete-filled stainl...
This study explores the effect of length to diameter (L/D) ratio on the axial load capacity of small...
Developed more than 80 years ago, the design procedure of concrete filled steel tubes (CFST) has sev...
The development of self-compacting concrete-filled thin-walled steel tubular columns is a potential ...
Two columns of thin-walled concrete-filled steel tubes (CFSTs), in which tube seams are connected by...
This study investigates the behavior of self-compacting concrete (SCC) specimens reinforced with sma...
The Concrete Filled Steel Tubular (CFST) columns have several benefits in comparison to the ordinary...
Local buckling in steel tubes was observed to be capable of reducing the ultimate loads of thin-wall...
Among the great variety of applications of self-compacting concrete (SCC), steel-concrete composite...
Concrete-filled steel tube (CFST) columns are used in tall buildings and bridges, and they provide m...
Concrete filled tubes are likely to be economical with the use of very high strength concretes and ...
Special-shaped concrete-filled steel tube (SS-CFST) columns can be embedded in the wall, thus preven...
This study explores the effect of length to diameter (/) ratio on the axial load capacity of selfcom...
This paper investigates the axial behavior of slender reinforced concrete (RC) columns strengthened ...
Concrete-encased concrete-filled steel tube (CECFST), an innovative type of concrete-steel composite...
This report aims to investigate the structural performance of self-compacting concrete-filled stainl...
This study explores the effect of length to diameter (L/D) ratio on the axial load capacity of small...
Developed more than 80 years ago, the design procedure of concrete filled steel tubes (CFST) has sev...
The development of self-compacting concrete-filled thin-walled steel tubular columns is a potential ...
Two columns of thin-walled concrete-filled steel tubes (CFSTs), in which tube seams are connected by...
This study investigates the behavior of self-compacting concrete (SCC) specimens reinforced with sma...
The Concrete Filled Steel Tubular (CFST) columns have several benefits in comparison to the ordinary...
Local buckling in steel tubes was observed to be capable of reducing the ultimate loads of thin-wall...
Among the great variety of applications of self-compacting concrete (SCC), steel-concrete composite...
Concrete-filled steel tube (CFST) columns are used in tall buildings and bridges, and they provide m...
Concrete filled tubes are likely to be economical with the use of very high strength concretes and ...
Special-shaped concrete-filled steel tube (SS-CFST) columns can be embedded in the wall, thus preven...
This study explores the effect of length to diameter (/) ratio on the axial load capacity of selfcom...
This paper investigates the axial behavior of slender reinforced concrete (RC) columns strengthened ...
Concrete-encased concrete-filled steel tube (CECFST), an innovative type of concrete-steel composite...
This report aims to investigate the structural performance of self-compacting concrete-filled stainl...