Cement-based piezoresistive composites have attracted significant attention as smart construction materials for embedding self-sensing capability in concrete infrastructure. Although a number of studies have been conducted using multi-walled carbon nanotubes (MWCNTs) as a functional filler for self-sensing cement-based composites, studies addressing the influence of the internal moisture state on the electrical properties are relatively scant. In this study, we aim to experimentally investigate the effect of internal moisture state on the electrical resistivity of cement-based composites containing MWCNTs as an electrically conductive medium to raise a need for calibration of self-sensing data considering the internal moisture state. To thi...
Given the continued challenge of dispersion, for practical purposes, it is of interest to evaluate t...
water/cement ratio on the piezoresistivity of CNT/cement composites Baoguo Han1,2, Xun Yu1, Eil Kwon...
Water and sand were used as the medium of multiwall carbon nanotube (MCNT) and prepared MCNT aqueous...
Carbon nanotube (CNT)/cement composites have been proposed as a multifunctional material for self-se...
Multi-walled carbon nanotube (MCNT) cement-based composites (MNTCCs) with seven different volume add...
International audienceThis study focuses on different techniques for dispersing Multi-Walled Carbon ...
Cement composites reinforced with Multi-Walled carbon NanoTubes (MWNTs) are smart materials since th...
Adding Carbon Nanotubes (CNTs) to the cement matrix, the electrical resistance of the composite mat...
Cementitious composites usually work under moisture condition. Presently, the piezoresistivity of ce...
This study was conducted to evaluate the effect of the carbon-based nanomaterial type on the electri...
This study investigates the implications of carbon nanomaterial type and amount on the electrical pr...
The self-sensing ability of cementitious materials with conductive particles for Structural Health M...
Cement-based sensors with hybrid conductive fillers using both carbon fibers (CFs) and multi-walled ...
Adding carbon nanotubes to the cement matrix, the electrical resistivity of cementitious composites ...
Given the continued challenge of dispersion, for practical purposes, it is of interest to evaluate t...
Given the continued challenge of dispersion, for practical purposes, it is of interest to evaluate t...
water/cement ratio on the piezoresistivity of CNT/cement composites Baoguo Han1,2, Xun Yu1, Eil Kwon...
Water and sand were used as the medium of multiwall carbon nanotube (MCNT) and prepared MCNT aqueous...
Carbon nanotube (CNT)/cement composites have been proposed as a multifunctional material for self-se...
Multi-walled carbon nanotube (MCNT) cement-based composites (MNTCCs) with seven different volume add...
International audienceThis study focuses on different techniques for dispersing Multi-Walled Carbon ...
Cement composites reinforced with Multi-Walled carbon NanoTubes (MWNTs) are smart materials since th...
Adding Carbon Nanotubes (CNTs) to the cement matrix, the electrical resistance of the composite mat...
Cementitious composites usually work under moisture condition. Presently, the piezoresistivity of ce...
This study was conducted to evaluate the effect of the carbon-based nanomaterial type on the electri...
This study investigates the implications of carbon nanomaterial type and amount on the electrical pr...
The self-sensing ability of cementitious materials with conductive particles for Structural Health M...
Cement-based sensors with hybrid conductive fillers using both carbon fibers (CFs) and multi-walled ...
Adding carbon nanotubes to the cement matrix, the electrical resistivity of cementitious composites ...
Given the continued challenge of dispersion, for practical purposes, it is of interest to evaluate t...
Given the continued challenge of dispersion, for practical purposes, it is of interest to evaluate t...
water/cement ratio on the piezoresistivity of CNT/cement composites Baoguo Han1,2, Xun Yu1, Eil Kwon...
Water and sand were used as the medium of multiwall carbon nanotube (MCNT) and prepared MCNT aqueous...