Hybrid Carbon Microfibers-Graphite Fillers for Piezoresistive Cementitious Composites

Author:

Birgin Hasan Borke,D’Alessandro AntonellaORCID,Laflamme SimonORCID,Ubertini FilippoORCID

Abstract

Multifunctional structural materials are very promising in the field of engineering. Particularly, their strain sensing ability draws much attention for structural health monitoring applications. Generally, strain sensing materials are produced by adding a certain amount of conductive fillers, around the so-called “percolation threshold”, to the cement or composite matrix. Recently, graphite has been found to be a suitable filler for strain sensing. However, graphite requires high amounts of doping to reach percolation threshold. In order to decrease the amount of inclusions, this paper proposes cementitious materials doped with new hybrid carbon inclusions, i.e., graphite and carbon microfibers. Carbon microfibers having higher aspect ratio than graphite accelerate the percolation threshold of the graphite particles without incurring into dispersion issues. The resistivity and strain sensitivity of different fibers’ compositions are investigated. The electromechanical tests reveal that, when combined, carbon microfibers and graphite hybrid fillers reach to percolation faster and exhibit higher gauge factors and enhanced linearity.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference34 articles.

1. Structural Health Monitoring (SHM) of Civil Structures

2. Vibration-based damage detection techniques for structural health monitoring of civil infrastructure systems;Karbhari,2009

3. Structural Health Monitoring of Buildings Using Smartphone Sensors

4. A literature review of next-generation smart sensing technology in structural health monitoring

5. Back-to-basics: Self-sensing materials for nondestructive evaluation;Laflamme;Mater. Eval,2020

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