Polypropylene (PP) fibers are commonly used for reinforcing cementitious composites due to their reasonable strength, good chemical stability and relatively low cost. However, chemically inert surface causes relatively inferior bond with cement matrix. Therefore, this study applies nano calcium carbonate to modify the surface of polypropylene fibers. After modification, the surface roughness increased and dense hydration product with high hydration degree can be generated around the fiber surface. Single-fiber pullout tests confirmed chemical bonding and bond strength of fiber/cement matrix interface were enhanced by modification. Although frictional bond between modified fibers and cement matrix decreased slightly, more energy can be absor...
Calcium phosphate cements (CPCs) are extensively used as synthetic bone grafts, but their poor tough...
Cement is one of the most consumed materials in the world. The cement industry is responsible for a ...
Sulfate erosion is one of the most complex and harmful chemical corrosion actions. Following sulfate...
Fibers can enhance self-healing of concrete by restricting crack propagation and supplying nucleatio...
In fiber reinforced cementitious composites (FRCC), bonding between the fibers and matrix governs ma...
A study of the effects of nano-silica treatment on the bonding properties of macro synthetic polypro...
The surface properties of polypropylene (PP) fibers have an important effect on their reinforcing ef...
Fiber reinforced cementitious composite (FRCC) materials have been widely used during last decades i...
This study evaluated the bond properties of polypropylene (PP) fiber in plain cementitious composite...
To improve the interfacial bond properties of the carbon fiber coated with a nano-SiO2 particle in a...
A comprehensive experimental investigation was performed to understand the pullout behavior of polyp...
Fibre reinforcements are often used in cementitious materials to provide enhanced strength. However,...
Calcium phosphate cements (CPCs) are frequently used as synthetic bone substitute materials due to t...
Calcium phosphate cements (CPCs) are extensively used as synthetic bone grafts, but their poor tough...
This paper focuses on the mechanical properties investigation of cement pastes reinforced with surfa...
Calcium phosphate cements (CPCs) are extensively used as synthetic bone grafts, but their poor tough...
Cement is one of the most consumed materials in the world. The cement industry is responsible for a ...
Sulfate erosion is one of the most complex and harmful chemical corrosion actions. Following sulfate...
Fibers can enhance self-healing of concrete by restricting crack propagation and supplying nucleatio...
In fiber reinforced cementitious composites (FRCC), bonding between the fibers and matrix governs ma...
A study of the effects of nano-silica treatment on the bonding properties of macro synthetic polypro...
The surface properties of polypropylene (PP) fibers have an important effect on their reinforcing ef...
Fiber reinforced cementitious composite (FRCC) materials have been widely used during last decades i...
This study evaluated the bond properties of polypropylene (PP) fiber in plain cementitious composite...
To improve the interfacial bond properties of the carbon fiber coated with a nano-SiO2 particle in a...
A comprehensive experimental investigation was performed to understand the pullout behavior of polyp...
Fibre reinforcements are often used in cementitious materials to provide enhanced strength. However,...
Calcium phosphate cements (CPCs) are frequently used as synthetic bone substitute materials due to t...
Calcium phosphate cements (CPCs) are extensively used as synthetic bone grafts, but their poor tough...
This paper focuses on the mechanical properties investigation of cement pastes reinforced with surfa...
Calcium phosphate cements (CPCs) are extensively used as synthetic bone grafts, but their poor tough...
Cement is one of the most consumed materials in the world. The cement industry is responsible for a ...
Sulfate erosion is one of the most complex and harmful chemical corrosion actions. Following sulfate...