An extensive experimental study was conducted to investigate the co-effects of surface area and distance between electrodes as well as filler scales on the percolation threshold of piezoresistive cement-stabilised sand. In this route, the electrical resistivity of numerous specimens of different sizes and composed of different content of carbon-based conductive fillers was measured, including carbon nanotubes (CNTs), graphene nanoplatelets (GNPs), and carbon fibres (CFs) with different aspect ratios. In addition, the numerical relations between the electrical percolation threshold and matrix dimensions were expressed for different conductive fillers. Furthermore, the electrical percolation threshold of two large-scale specimens with differe...
Carbon nanofibers (CNFs) were directly synthesized on Portland cement particles by chemical vapor de...
The possible use of industrial by-products as carbon-based fillers and/or fibers to produce Multifun...
In this study, the geotechnical and piezoresistivity properties of a sustainable self-sensing cement...
In this study, the effects of multiscale conductive carbon fillers, including carbon nanotubes (CNTs...
Structural monitoring systems are gaining increasing interest in the field of civil engineering rese...
This paper presents the resistivity and piezoresistivity behavior of cement-based mortars manufactur...
Conductive carbon nanomaterials have been extensively developed for smart cementitious composites to...
Electrical resistivity of cementitious composites reinforced with Carbon Nanotubes (CNTs) is based o...
Cement-based sensors with hybrid conductive fillers using both carbon fibers (CFs) and multi-walled ...
In recent years, infrastructures have become of primary importance for society and for the economic ...
iezo-resistive characteristics of cement-based materials were investigated using gra-phene nanoplate...
Unlike conventional approaches of direct addition of carbon-based conductive fillers into cement mat...
The electrical, mechanical properties, and piezoresistive performances of intrinsic graphene nanopla...
High piezoresistivity of cement-based composites tuned by conductible fillers provides a feasible wa...
This study investigates the implications of carbon nanomaterial type and amount on the electrical pr...
Carbon nanofibers (CNFs) were directly synthesized on Portland cement particles by chemical vapor de...
The possible use of industrial by-products as carbon-based fillers and/or fibers to produce Multifun...
In this study, the geotechnical and piezoresistivity properties of a sustainable self-sensing cement...
In this study, the effects of multiscale conductive carbon fillers, including carbon nanotubes (CNTs...
Structural monitoring systems are gaining increasing interest in the field of civil engineering rese...
This paper presents the resistivity and piezoresistivity behavior of cement-based mortars manufactur...
Conductive carbon nanomaterials have been extensively developed for smart cementitious composites to...
Electrical resistivity of cementitious composites reinforced with Carbon Nanotubes (CNTs) is based o...
Cement-based sensors with hybrid conductive fillers using both carbon fibers (CFs) and multi-walled ...
In recent years, infrastructures have become of primary importance for society and for the economic ...
iezo-resistive characteristics of cement-based materials were investigated using gra-phene nanoplate...
Unlike conventional approaches of direct addition of carbon-based conductive fillers into cement mat...
The electrical, mechanical properties, and piezoresistive performances of intrinsic graphene nanopla...
High piezoresistivity of cement-based composites tuned by conductible fillers provides a feasible wa...
This study investigates the implications of carbon nanomaterial type and amount on the electrical pr...
Carbon nanofibers (CNFs) were directly synthesized on Portland cement particles by chemical vapor de...
The possible use of industrial by-products as carbon-based fillers and/or fibers to produce Multifun...
In this study, the geotechnical and piezoresistivity properties of a sustainable self-sensing cement...