This paper focuses on sustainable cementitious composites in terms of their conductivity, hydration and self-sensing properties, which are key features for smart city infrastructures. Smart cities have massive infrastructures that are interconnected, transmitting data and information for health-monitoring and performance optimization. In this regard, having them made of sustainable building materials (concrete) that are also sufficiently conductive, will be a suitable solution for structures’ performance. The studied sustainable cementitious mixtures are made by sea components (sea water and sea sand), which are abundant resources. The primary goal of this study is to improve the mixes’ electrical conductivity and sensitivity. To achieve th...
Structural health monitoring to assess the safety, durability and performance of structures can be ...
International audienceSelf-obtained by including electrically conductive fibers in cement-based mate...
This paper is aimed at exploring mechanical, electrical and self-sensing properties of cement-based ...
Sensing cement-based composites refer to composites that have sensing functionality that can measure...
The stability of electrical conductivity of self-sensing cementitious composites under different env...
Conventional concrete is a dielectric whose properties change based on the constituents of the mixtu...
Conductive carbon nanomaterials have been extensively developed for smart cementitious composites to...
Conductive cementitious materials have gained immense attention in recent years owing to the possibi...
This study investigates the implications of carbon nanomaterial type and amount on the electrical pr...
Carbon fibers can be used to improve both mechanical properties and electrical conductivity of cemen...
International audienceSmart concrete is a construction material designed to perform structural and s...
This paper proposes a new sustainable earth–cement building composite with multifunctional sensing f...
AbstractThe self-healing and self-sensing performances of Engineered Cementitious Composite (ECC) mi...
Cementitious composites are the most widely used construction materials; however, their poor durabil...
This work investigates the potential of recycled carbon-based materials, obtained from industrial by...
Structural health monitoring to assess the safety, durability and performance of structures can be ...
International audienceSelf-obtained by including electrically conductive fibers in cement-based mate...
This paper is aimed at exploring mechanical, electrical and self-sensing properties of cement-based ...
Sensing cement-based composites refer to composites that have sensing functionality that can measure...
The stability of electrical conductivity of self-sensing cementitious composites under different env...
Conventional concrete is a dielectric whose properties change based on the constituents of the mixtu...
Conductive carbon nanomaterials have been extensively developed for smart cementitious composites to...
Conductive cementitious materials have gained immense attention in recent years owing to the possibi...
This study investigates the implications of carbon nanomaterial type and amount on the electrical pr...
Carbon fibers can be used to improve both mechanical properties and electrical conductivity of cemen...
International audienceSmart concrete is a construction material designed to perform structural and s...
This paper proposes a new sustainable earth–cement building composite with multifunctional sensing f...
AbstractThe self-healing and self-sensing performances of Engineered Cementitious Composite (ECC) mi...
Cementitious composites are the most widely used construction materials; however, their poor durabil...
This work investigates the potential of recycled carbon-based materials, obtained from industrial by...
Structural health monitoring to assess the safety, durability and performance of structures can be ...
International audienceSelf-obtained by including electrically conductive fibers in cement-based mate...
This paper is aimed at exploring mechanical, electrical and self-sensing properties of cement-based ...