An electromechanical impedance measurement-based solution for monitoring fresh concrete maturity

Author:

Hu Guobiao12ORCID,Yang Yaowen2ORCID,Mohanty Lipi2,Chae Soungho3,Ishizeki Kohsuke3,Tang Lihua4ORCID

Affiliation:

1. Thrust of the Internet of Things, The Hong Kong University of Science and Technology, Guangzhou, Guangdong, China

2. School of Civil and Environmental Engineering, Nanyang Technological University, Singapore

3. Japan Kajima Technical Research Institute Singapore, Kajima Corporation, Singapore

4. Department of Mechanical Engineering, University of Auckland, Auckland, New Zealand

Abstract

This paper proposes an electromechanical impedance measurement (EIM)-based solution for monitoring concrete maturity that refers to concrete strength development at the early stage. A smart aggregate (SMA) that consists of a waterproofed piezoelectric patch is developed. The working principle is explained based on the impedance theory of an electromechanically coupled system. A finite element (FE) model of the EIM-SMA unit is established. The stiffness of the applied spring foundation is varied to emulate the concrete hardening process. The simulation results reveal that a peak located between 60 and 70 kHz in the impedance plot could be used as an indication to reflect the stiffness variation of the spring foundation. A 3D-printed mold is designed for rapid production of the EIM-SMA units. In the experiment, two sample EIM-SMA units are used to monitor fresh concrete maturity in the first 6 h after casting. The results of the two sample EIM-SMA units agreed well. The experimental results matched the simulation prediction. Compared to a bar-dropping test that is widely adopted at construction sites, the impedance evolution of an EIM-SMA unit is much smoother and has better monotonicity. In general, the proposed method has been proven to be a reliable solution to monitor the maturity development of concrete.

Funder

JTC Corporation

Publisher

SAGE Publications

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