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      Experimental and Numerical Investigations on the Mechanical Characteristics of Carbon Fiber Sensors

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          Abstract

          Carbon fiber-based materials possess excellent mechanical properties and show linear piezoresistive behavior, which make them good candidate materials for strain measurements. They have the potential to be used as sensors for various applications such as damage detection, stress analysis and monitoring of manufacturing processes and quality. In this paper, carbon fiber sensors are prepared to perform reliable strain measurements. Both experimental and computational studies were carried out on commercially available carbon fibers in order to understand the response of the carbon fiber sensors due to changes in the axial strain. Effects of parameters such as diameter, length, and epoxy-hardener ratio are discussed. The developed numerical model was calibrated using laboratory-based experimental data. The results of the current study show that sensors with shorter lengths have relatively better sensitivity. This is due to the fact short fibers have low initial resistance, which will increase the change of resistance over initial resistance. Carbon fibers with low number of filaments exhibit linear behavior while nonlinear behavior due to transverse resistance is significant in fibers with large number of filaments. This study will allow researchers to predict the behavior of the carbon fiber sensor in real life and it will serve as a basis for designing carbon fiber sensors to be used in different applications.

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          Smart fabric sensors and e-textile technologies: a review

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            Load and failure analyses of CFRP laminates by means of electrical resistivity measurements

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              Damage detection of carbon fiber reinforced polymer composites via electrical resistance measurement

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                Author and article information

                Journal
                Sensors (Basel)
                Sensors (Basel)
                sensors
                Sensors (Basel, Switzerland)
                MDPI
                1424-8220
                04 September 2017
                September 2017
                : 17
                : 9
                : 2026
                Affiliations
                Mechanical Engineering Department, King Fahd University of Petroleum & Minerals (KFUPM), Dhahran 31261, Saudi Arabia; masiddiqui@ 123456kfupm.edu.sa (M.S.); afmarif@ 123456kfupm.edu.sa (A.F.M.A.)
                Author notes
                [* ]Correspondence: bashmal@ 123456kfupm.edu.sa ; Tel.: +966-13-860-2342.
                Author information
                https://orcid.org/0000-0002-6985-0316
                https://orcid.org/0000-0002-3278-0983
                Article
                sensors-17-02026
                10.3390/s17092026
                5621047
                28869538
                aefa088f-d355-4522-93bf-e853b95e3dc8
                © 2017 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 31 July 2017
                : 28 August 2017
                Categories
                Article

                Biomedical engineering
                strain measurements,piezoresistive materials,health monitoring,carbon fibers,composite materials

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