This paper presents the resistivity and piezoresistivity behavior of cement-based mortars manufactured with graphene nanoplatelet filler (GNP), virgin carbon fibers (VCF) and recycled carbon fibers (RCF). GNP was added at 4% of the cement weight, whereas two percentages of carbon fibers were chosen, namely 0.05% and 0.2% of the total volume. The combined effect of both filler and fibers was also investigated. Mortars were studied in terms of their mechanical properties (under flexure and compression) and electrical resistivity. Mortars with the lowest electrical resistivity values were also subjected to cyclic uniaxial compression to evaluate the variations in electrical resistivity as a function of strain. The results obtained show that mo...
This study was conducted to evaluate the effect of the carbon-based nanomaterial type on the electri...
There is an increasing ongoing research on concrete compositions with enhanced properties such as se...
Graphene nanoplate (GNP) and graphite plate (GP) are promising functional nanofillers for smart self...
This paper presents the resistivity and piezoresistivity behavior of cement-based mortars manufactur...
Structural monitoring systems are gaining increasing interest in the field of civil engineering rese...
In recent years, infrastructures have become of primary importance for society and for the economic ...
The possible use of industrial by-products as carbon-based fillers and/or fibers to produce Multifun...
This work investigates the potential of recycled carbon-based materials, obtained from industrial by...
iezo-resistive characteristics of cement-based materials were investigated using gra-phene nanoplate...
The electrical, mechanical properties, and piezoresistive performances of intrinsic graphene nanopla...
This paper is aimed at exploring mechanical, electrical and self-sensing properties of cement-based ...
Conventional concrete is a dielectric whose properties change based on the constituents of the mixtu...
Structural health monitoring to assess the safety, durability and performance of structures can be ...
This study was conducted to evaluate the effect of the carbon-based nanomaterial type on the electri...
There is an increasing ongoing research on concrete compositions with enhanced properties such as se...
Graphene nanoplate (GNP) and graphite plate (GP) are promising functional nanofillers for smart self...
This paper presents the resistivity and piezoresistivity behavior of cement-based mortars manufactur...
Structural monitoring systems are gaining increasing interest in the field of civil engineering rese...
In recent years, infrastructures have become of primary importance for society and for the economic ...
The possible use of industrial by-products as carbon-based fillers and/or fibers to produce Multifun...
This work investigates the potential of recycled carbon-based materials, obtained from industrial by...
iezo-resistive characteristics of cement-based materials were investigated using gra-phene nanoplate...
The electrical, mechanical properties, and piezoresistive performances of intrinsic graphene nanopla...
This paper is aimed at exploring mechanical, electrical and self-sensing properties of cement-based ...
Conventional concrete is a dielectric whose properties change based on the constituents of the mixtu...
Structural health monitoring to assess the safety, durability and performance of structures can be ...
This study was conducted to evaluate the effect of the carbon-based nanomaterial type on the electri...
There is an increasing ongoing research on concrete compositions with enhanced properties such as se...
Graphene nanoplate (GNP) and graphite plate (GP) are promising functional nanofillers for smart self...