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Parametric study and modeling of PZT based wave propagation technique related to practical issues in monitoring of concrete curing

机译:基于PZT的波传播技术参数化研究与建模与混凝土养护监测中的实际问题

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This paper presents a series of investigative studies, mainly parametric and numerical, into various issues related to the practical application of the wave propagation (WP) technique in monitoring of concrete curing using smart material (PZT). This paper is an extension of a range of experimental studies presented in the authors' recent publication. Coupled field finite element (FE) simulation of the PZT-structure interaction in WP technique is conducted on mortar and concrete specimens. Identification of the pressure wave (P-wave) and the surface wave (R-wave) velocities simulated in the FE model is attempted. Results are found to be matching closely with the experiment. The verified FE model, together with the theoretical model are then used to perform parametric study on selected factors related to the practical application of the technique, in particular those uncontrollable in the experiment, including the dynamic modulus of elasticity, the Poisson's ratio and the damping coefficient. Further experimental and analytical studies on the effect of varying temperature and humidity are also presented. A semi analytical model previously proposed by the authors is finally adopted to generate a strength calibration chart for concrete with different coarse aggregates. The theoretical and FE models are proven to be useful alternatives to the experiment, which can be used in future design and optimization of the PZT based WP technique in monitoring of concrete curing. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文对与波传播(WP)技术在使用智能材料(PZT)的混凝土养护监测中的实际应用相关的各种问题进行了一系列的研究,主要是参数研究和数值研究。本文是作者最新出版物中提出的一系列实验研究的扩展。在砂浆和混凝土试件上进行了WP技术中PZT-结构相互作用的耦合场有限元模拟。试图识别在有限元模型中模拟的压力波(P波)和表面波(R波)的速度。发现结果与实验非常匹配。然后,将经过验证的有限元模型与理论模型一起用于对与该技术的实际应用相关的选定因素进行参数研究,尤其是那些在实验中无法控制的因素,包括动态弹性模量,泊松比和阻尼系数。还提出了关于温度和湿度变化影响的进一步实验和分析研究。最后采用了作者先前提出的半解析模型来生成具有不同粗骨料的混凝土的强度校准图。理论模型和有限元模型被证明是该实验的有用替代方法,可用于将来基于PZT的可湿性粉剂技术的设计和优化,以监测混凝土的养护。 (C)2018 Elsevier Ltd.保留所有权利。

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