The objective of this study was to design a multifunctional cement composite that could not only bear loads but also possessed electromechanical properties that are sensitive to damage. A mainstream approach is to disperse large quantities of conductive additives in the cement matrix, which can be costly, involve complex procedures, difficult to scale-up, and degrade concrete’s inherent mechanical properties. Instead, this research proposes a new method to design multifunctional and self-sensing concrete, which is achieved by altering the cement–aggregate interface using conductive, nano-engineered coatings. Here, a carbon nanotube–based ink solution was sprayed onto the surfaces of aggregates and then dried to form electrically conductive,...
International audienceThis study focuses on different techniques for dispersing Multi-Walled Carbon ...
Concrete is the most widely used construction material in infrastructure. However, concrete structur...
2012Final ReportPDFTech ReportDTFH61-10-C-00011ConcreteStructural health monitoringStress sensingPie...
Concrete and other cementitious composites used in civil infrastructure are prone to many forms of d...
This study aims to validate the large-scale application of self-sensing concrete in airport runway p...
The self-sensing ability of cementitious materials with conductive particles for Structural Health M...
In the recent years structural health monitoring (SHM) has gathered spectacular attention in civil e...
In the field of civil engineering, Structural Health Monitoring is a topic of growing interest. Effe...
Interest in the concept of self-sensing structural materials has grown in recent years due to its po...
Early detection of damage in concrete infrastructure is critical to prolonging structural service li...
Sensing cement-based composites refer to composites that have sensing functionality that can measure...
The availability of new self-sensing cement-based strain sensors allows the development of dense sen...
The availability of new self-sensing cement-based strain sensors allows the development of dense sen...
This study was conducted to evaluate the effect of the carbon-based nanomaterial type on the electri...
International audienceThis study focuses on different techniques for dispersing Multi-Walled Carbon ...
International audienceThis study focuses on different techniques for dispersing Multi-Walled Carbon ...
Concrete is the most widely used construction material in infrastructure. However, concrete structur...
2012Final ReportPDFTech ReportDTFH61-10-C-00011ConcreteStructural health monitoringStress sensingPie...
Concrete and other cementitious composites used in civil infrastructure are prone to many forms of d...
This study aims to validate the large-scale application of self-sensing concrete in airport runway p...
The self-sensing ability of cementitious materials with conductive particles for Structural Health M...
In the recent years structural health monitoring (SHM) has gathered spectacular attention in civil e...
In the field of civil engineering, Structural Health Monitoring is a topic of growing interest. Effe...
Interest in the concept of self-sensing structural materials has grown in recent years due to its po...
Early detection of damage in concrete infrastructure is critical to prolonging structural service li...
Sensing cement-based composites refer to composites that have sensing functionality that can measure...
The availability of new self-sensing cement-based strain sensors allows the development of dense sen...
The availability of new self-sensing cement-based strain sensors allows the development of dense sen...
This study was conducted to evaluate the effect of the carbon-based nanomaterial type on the electri...
International audienceThis study focuses on different techniques for dispersing Multi-Walled Carbon ...
International audienceThis study focuses on different techniques for dispersing Multi-Walled Carbon ...
Concrete is the most widely used construction material in infrastructure. However, concrete structur...
2012Final ReportPDFTech ReportDTFH61-10-C-00011ConcreteStructural health monitoringStress sensingPie...