This paper presents an experimental study on the effects of elevated temperature and water quenching on compressive strength and microstructure of ultra-high performance concrete (UHPC) containing polypropylene (PP) fiber, steel fiber, and larger aggregates. UHPC samples were exposed to elevated temperature up to 900 °C. The residual strengths of the samples were measured after furnace cooling or immediate quenching in water. Microstructures and phase change of UHPCs were investigated by using X-ray Diffraction (XRD) and Field Emission Scanning Electron Microscope (FESEM). Test results show that the compressive strength increased significantly after exposure to 300 °C due to further hydration of unhydrated cement clinkers but start to decre...
The properties of high-strength concrete (HSC) are significantly influenced by environmental conditi...
124, [77] leaves : ill. ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577M CSE 2003 LauThis thesis re...
This study aimed to investigate fire resistance of strain hardening ultra-high performance concrete ...
This paper investigates the individual and combined effects of polypropylene (PP) fibers, steel fibe...
Compared with ordinary concrete, ultra-high performance concrete (UHPC) has excellent toughness and ...
This paper presents the results of a study on the effect of elevated temperatures on the compressive...
With the recent development of Ultra High Performance Fiber Reinforced Concrete (UHPFRC), there has ...
The high compressive and tensile strengths of ultra-high performance concrete (UHPC) result in perfo...
This study has investigated the changes that might appear in post-peak flexural response. Before the...
Ultra-high performance concretes (UHPC) are advanced cement-based materials characterised by superio...
Ultra-High Performance Concretes (UHPC) has high strength (greater than 150 MPa), high durability, a...
A concrete exposed to environments of high temperature or directly to fire undergoes microstructural...
Concrete is a heterogeneous material compounded of aggregates embedded in a cement paste matrix. Th...
Equipped with excellent strength and energy absorption capacity, ultra-high performance concrete (UH...
For optimum production of ultra-high performance concrete (UHPC), the material and microstructural p...
The properties of high-strength concrete (HSC) are significantly influenced by environmental conditi...
124, [77] leaves : ill. ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577M CSE 2003 LauThis thesis re...
This study aimed to investigate fire resistance of strain hardening ultra-high performance concrete ...
This paper investigates the individual and combined effects of polypropylene (PP) fibers, steel fibe...
Compared with ordinary concrete, ultra-high performance concrete (UHPC) has excellent toughness and ...
This paper presents the results of a study on the effect of elevated temperatures on the compressive...
With the recent development of Ultra High Performance Fiber Reinforced Concrete (UHPFRC), there has ...
The high compressive and tensile strengths of ultra-high performance concrete (UHPC) result in perfo...
This study has investigated the changes that might appear in post-peak flexural response. Before the...
Ultra-high performance concretes (UHPC) are advanced cement-based materials characterised by superio...
Ultra-High Performance Concretes (UHPC) has high strength (greater than 150 MPa), high durability, a...
A concrete exposed to environments of high temperature or directly to fire undergoes microstructural...
Concrete is a heterogeneous material compounded of aggregates embedded in a cement paste matrix. Th...
Equipped with excellent strength and energy absorption capacity, ultra-high performance concrete (UH...
For optimum production of ultra-high performance concrete (UHPC), the material and microstructural p...
The properties of high-strength concrete (HSC) are significantly influenced by environmental conditi...
124, [77] leaves : ill. ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577M CSE 2003 LauThis thesis re...
This study aimed to investigate fire resistance of strain hardening ultra-high performance concrete ...