This paper presents the behavior of hollow-core fiber-reinforced polymer-concrete-steel (HC-FCS) columns under cyclic torsional loading combined with constant axial load. The HC-FCS consists of an outer fiber-reinforced polymer (FRP) tube and an inner steel tube, with a concrete shell sandwiched between the two tubes. The FRP tube was stopped at the surface of the footing, and provided confinement to the concrete shell from the outer direction. The steel tube was embedded into the footing to a length of 1.8 times the diameter of the steel tube. The longitudinal and transversal reinforcements of the column were provided by the steel tube only. A large-scale HC-FCS column with a diameter of 24 in. (610 mm) and applied load height of 96 in. (2...
Hollow concrete columns (HCCs) constitute a structurally efficient construction system for marine an...
This paper presents the behavior of an innovative accelerated bridge construction system of hollow-c...
PDFTech ReportNUTC R357Project #00043006DTRT06-G-0014Fiber reinforced polymersColumnsAxial compressi...
This paper presents the behavior of hollow-core fiber-reinforced polymer–concrete–steel (HC-FCS) col...
The effect of torsional loads could be significant along with axial and flexural loads on bridge col...
This study introduces an investigation of the behavior of innovative, resilient, and quickly-constru...
This paper experimentally investigates the seismic behavior of three large-scale hollow-core fiber-r...
This paper presents the behavior of hollow fiber reinforced polymer-concrete-steel (HC-FCS) columns ...
This paper presents the seismic behavior of hollow-core fiber-reinforced polymer (FRP)-concrete-stee...
This article presents a numerical study on the behavior of hollow-core fiber-reinforced polymer-conc...
This paper presents the seismic behavior of hollow-core fiber-reinforced polymer-concrete-steel (HC-...
The torsional behavior of hollow-core steel-concrete-steel (HC-SCS) columns is presented using finit...
“This study investigates experimentally and numerically the seismic behavior of large-scale hollow-c...
This paper presents the difference in behavior between hollow-core fiber reinforced polymer-concrete...
This paper numerically investigates the behavior of hollow-core fiber-reinforced polymer-concrete-st...
Hollow concrete columns (HCCs) constitute a structurally efficient construction system for marine an...
This paper presents the behavior of an innovative accelerated bridge construction system of hollow-c...
PDFTech ReportNUTC R357Project #00043006DTRT06-G-0014Fiber reinforced polymersColumnsAxial compressi...
This paper presents the behavior of hollow-core fiber-reinforced polymer–concrete–steel (HC-FCS) col...
The effect of torsional loads could be significant along with axial and flexural loads on bridge col...
This study introduces an investigation of the behavior of innovative, resilient, and quickly-constru...
This paper experimentally investigates the seismic behavior of three large-scale hollow-core fiber-r...
This paper presents the behavior of hollow fiber reinforced polymer-concrete-steel (HC-FCS) columns ...
This paper presents the seismic behavior of hollow-core fiber-reinforced polymer (FRP)-concrete-stee...
This article presents a numerical study on the behavior of hollow-core fiber-reinforced polymer-conc...
This paper presents the seismic behavior of hollow-core fiber-reinforced polymer-concrete-steel (HC-...
The torsional behavior of hollow-core steel-concrete-steel (HC-SCS) columns is presented using finit...
“This study investigates experimentally and numerically the seismic behavior of large-scale hollow-c...
This paper presents the difference in behavior between hollow-core fiber reinforced polymer-concrete...
This paper numerically investigates the behavior of hollow-core fiber-reinforced polymer-concrete-st...
Hollow concrete columns (HCCs) constitute a structurally efficient construction system for marine an...
This paper presents the behavior of an innovative accelerated bridge construction system of hollow-c...
PDFTech ReportNUTC R357Project #00043006DTRT06-G-0014Fiber reinforced polymersColumnsAxial compressi...