External confinement of concrete by means of high-strength fiber composites can significantly enhance its strength and ductility as well as result in large energy absorption capacity. The confinement mechanism may include fiber-wrapping of existing columns as a retrofitting measure or encasement of concrete in a fiber reinforced plastic (FRP) tube for new construction. Proper design of such hybrid columns, however, requires an accurate estimate of the performance enhancement. Current design methods use simple extension of the models developed for conventional reinforced concrete columns. Results from a series of uniaxial compression tests on concrete-filled FRP tubes are compared with the available confinement models in the literature. The ...
The need to satisfy aerospace industry\u27s demand not met by traditional materials motivated resear...
The use of fiber-reinforced polymer (FRP) composites for strengthening and/or rehabilitation of conc...
Large rupture strain (LRS) fiber-reinforced polymer (FRP) composites, typically formed from polyethy...
External confinement of concrete by means of high-strength fiber composites can significantly enhanc...
External confinement of concrete by means of high-strength fiber composites can significantly enhanc...
Fiber-wrapping or encasement of concrete in fiber-reinforced plastic (FRP) shells significantly enha...
One important application of fiber reinforced polymer (FRP) composites in the retrofit of reinforced...
The use of fibre reinforced polymer (FRP) composites has been successfully promoted for external con...
ABSTRACT: External confinement of concrete by means of FRP external wrapping can significantly enhan...
A novel composite column is proposed that is similar to the classic concrete-filled steel tubes, exc...
Advanced fibre reinforced polymer (FRP) composites have been increasingly used over the last two dec...
This paper presents an experimental investigation carried out on concrete filled fibre reinforced po...
Confinement of concrete enhances its strength and ductility by restraining lateral dilation. The acc...
Confinement of concrete enhances its strength and ductility by restraining lateral dilation. The acc...
Confinement of concrete enhances its strength and ductility by restraining lateral dilation. The acc...
The need to satisfy aerospace industry\u27s demand not met by traditional materials motivated resear...
The use of fiber-reinforced polymer (FRP) composites for strengthening and/or rehabilitation of conc...
Large rupture strain (LRS) fiber-reinforced polymer (FRP) composites, typically formed from polyethy...
External confinement of concrete by means of high-strength fiber composites can significantly enhanc...
External confinement of concrete by means of high-strength fiber composites can significantly enhanc...
Fiber-wrapping or encasement of concrete in fiber-reinforced plastic (FRP) shells significantly enha...
One important application of fiber reinforced polymer (FRP) composites in the retrofit of reinforced...
The use of fibre reinforced polymer (FRP) composites has been successfully promoted for external con...
ABSTRACT: External confinement of concrete by means of FRP external wrapping can significantly enhan...
A novel composite column is proposed that is similar to the classic concrete-filled steel tubes, exc...
Advanced fibre reinforced polymer (FRP) composites have been increasingly used over the last two dec...
This paper presents an experimental investigation carried out on concrete filled fibre reinforced po...
Confinement of concrete enhances its strength and ductility by restraining lateral dilation. The acc...
Confinement of concrete enhances its strength and ductility by restraining lateral dilation. The acc...
Confinement of concrete enhances its strength and ductility by restraining lateral dilation. The acc...
The need to satisfy aerospace industry\u27s demand not met by traditional materials motivated resear...
The use of fiber-reinforced polymer (FRP) composites for strengthening and/or rehabilitation of conc...
Large rupture strain (LRS) fiber-reinforced polymer (FRP) composites, typically formed from polyethy...