Self-Sensing Potential of Metashale Geopolymer Mortars with Carbon Fiber/Graphite Powder Admixtures

被引:0
作者
Hotek, Petr [1 ]
Litos, Jiri [2 ]
Lin, Wei-Ting [3 ]
Fiala, Lukas [1 ]
机构
[1] Czech Tech Univ, Dept Mat Engn & Chem, Fac Civil Engn, Prague, Czech Republic
[2] Czech Tech Univ, Expt Ctr, Fac Civil Engn, Prague, Czech Republic
[3] Natl Ilan Univ, Dept Civil Engn, Yilan, Taiwan
关键词
geopolymers; self-sensing; carbon fibers; graphite powder; DC; CEMENT;
D O I
10.46604/ijeti.2024.13570
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Multifunctional building materials with self-sensing capability have great potential for civil engineering applications. The self-sensing capability of typically calcium aluminosilicate matrices of cementitious or geopolymer materials is adopted by admixing electrically conductive admixtures in an amount that ensures optimal electrical properties and their proportionality to mechanical loading. The paper aims to evaluate the self-sensing capability of 4 metashale geopolymer mortars with graphite powder (GP) and carbon fibers (CF) in different ratios, including MGF 5/0, MGF 4.5/0.5, MGF 4/1, and MGF 3/0. The 4-probe measurements at 21 V DC input voltage on (100 x 100 x 100) mm(3) samples with embedded copper-grid electrodes evaluate the gauge factor, which corresponds to the monitored changes in electrical resistivity. Despite the limitations of DC measurements, the self-sensing capability is observed for all the mixtures. The most promising response to dynamic loading with an FCR of 0.018%, is observed for the MGF 4.5/0.5 sample.
引用
收藏
页码:423 / 433
页数:11
相关论文
共 29 条
[1]  
[Anonymous], 2016, 1961722100 CSN EN
[2]   Cement-based sensors with carbon fibers and carbon nanotubes for piezoresistive sensing [J].
Azhari, Faezeh ;
Banthia, Nemkumar .
CEMENT & CONCRETE COMPOSITES, 2012, 34 (07) :866-873
[3]   Electrical resistance and self-sensing properties of pressure-sensitive materials with graphite filler in Kuralon fiber concrete [J].
Cheng, An ;
Lin, Wei-Ting ;
Fiala, Lukas ;
Hotek, Petr ;
Chao, Sao-Jeng ;
Hsu, Hui-Mi .
MATERIALS SCIENCE-POLAND, 2022, 40 (02) :223-239
[4]   A critical review of electrical-resistance-based self-sensing in conductive cement-based materials [J].
Chung, D. D. L. .
CARBON, 2023, 203 :311-325
[5]   Development of sensing concrete: Principles, properties and its applications [J].
Ding, Siqi ;
Dong, Sufen ;
Ashour, Ashraf ;
Han, Baoguo .
JOURNAL OF APPLIED PHYSICS, 2019, 126 (24)
[6]   Application of intrinsic cement-based sensor for traffic detections of human motion and vehicle speed [J].
Dong, Wenkui ;
Li, Wengui ;
Guo, Yipu ;
Sun, Zhihui ;
Qu, Fulin ;
Liang, Rui ;
Shah, Surendra P. .
CONSTRUCTION AND BUILDING MATERIALS, 2022, 355
[7]   Geopolymer concrete as sustainable material: A state of the art review [J].
Farooq, Furqan ;
Xin, Jin ;
Javed, Muhammad Faisal ;
Akbar, Arslan ;
Shah, Muhammad Izhar ;
Aslam, Fahid ;
Alyousef, Rayed .
CONSTRUCTION AND BUILDING MATERIALS, 2021, 306
[8]   Self-heating alkali activated materials: Microstructure and its effect on electrical, thermal and mechanical properties [J].
Fiala, Lukas ;
Pommer, Vojtech ;
Bohm, Martin ;
Scheinherrova, Lenka ;
Cerny, Robert .
CONSTRUCTION AND BUILDING MATERIALS, 2022, 335
[9]   BASIC PHYSICAL, MECHANICAL AND ELECTRICAL PROPERTIES OF ELECTRICALLY ENHANCED ALKALI-ACTIVATED ALUMINOSILICATES [J].
Fiala, Lukas ;
Jerman, Milos ;
Rovnanik, Pavel ;
Cerny, Robert .
MATERIALI IN TEHNOLOGIJE, 2017, 51 (06) :1005-1009
[10]   Transition to circular economy in the construction industry: Environmental aspects of waste brick recycling scenarios [J].
Fort, Jan ;
Cerny, Robert .
WASTE MANAGEMENT, 2020, 118 (118) :510-520