Effects of the fiber type, dosage and length on the explosive spalling of ultra-high-strength concrete under rapid heating and rapid cooling were experimentally investigated. The mechanism of spalling resistance was examined by comprehensive thermal analysis, X-ray diffraction analysis, scanning electron microscopy and mercury porosimetry. The burst time is extended but the spalling is unaffected by the addition of steel fiber. The spalling resistance is improved with the addition of polypropylene (PP) fiber or PP and steel fibers. Ultra-high-strength concrete with 0.20% (vol.) PP fiber has excellent spalling resistance. The resistance to explosive spalling is enhanced with 12- or 19-mm-long PP fibers. PP fiber improves the spalling resista...
Concrete are widely used in the construction industry and with the increase in demand of high streng...
In this study different mixtures of high strength concretes (70 MPa) were prepared with different na...
This paper investigates the individual and combined effects of polypropylene (PP) fibers, steel fibe...
This study aimed to investigate fire resistance of strain hardening ultra-high performance concrete ...
In the past two centuries, concrete has made a remarkable impact on human history. Nowadays, Ultra-h...
The phisyco-mechanical processes triggering concrete explosive spalling are related to the heat-indu...
The phisyco-mechanical processes triggering concrete explosive spalling are related to the heat-indu...
Experimental results of spalling and residual mechanical properties of ultra-high performance concre...
Ultra-High Performance Concretes (UHPC) has high strength (greater than 150 MPa), high durability, a...
High strength construction materials are now attractive owing to their economic and architectural ad...
A sufficient resistance of concrete structures to fire was always taken for granted. The concrete’s ...
Ultra-high performance concrete (UHPC), due to its dense microstructure, is highly susceptible to ex...
This study investigated synergetic effects of hybrid polypropylene (PP) and steel fibers on explosiv...
Heat-induced spalling in concrete is a problem that has been the subject of intense debate. The rese...
To investigate the influence of steel fiber on improving the high-temperature resistance of hybrid f...
Concrete are widely used in the construction industry and with the increase in demand of high streng...
In this study different mixtures of high strength concretes (70 MPa) were prepared with different na...
This paper investigates the individual and combined effects of polypropylene (PP) fibers, steel fibe...
This study aimed to investigate fire resistance of strain hardening ultra-high performance concrete ...
In the past two centuries, concrete has made a remarkable impact on human history. Nowadays, Ultra-h...
The phisyco-mechanical processes triggering concrete explosive spalling are related to the heat-indu...
The phisyco-mechanical processes triggering concrete explosive spalling are related to the heat-indu...
Experimental results of spalling and residual mechanical properties of ultra-high performance concre...
Ultra-High Performance Concretes (UHPC) has high strength (greater than 150 MPa), high durability, a...
High strength construction materials are now attractive owing to their economic and architectural ad...
A sufficient resistance of concrete structures to fire was always taken for granted. The concrete’s ...
Ultra-high performance concrete (UHPC), due to its dense microstructure, is highly susceptible to ex...
This study investigated synergetic effects of hybrid polypropylene (PP) and steel fibers on explosiv...
Heat-induced spalling in concrete is a problem that has been the subject of intense debate. The rese...
To investigate the influence of steel fiber on improving the high-temperature resistance of hybrid f...
Concrete are widely used in the construction industry and with the increase in demand of high streng...
In this study different mixtures of high strength concretes (70 MPa) were prepared with different na...
This paper investigates the individual and combined effects of polypropylene (PP) fibers, steel fibe...