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首页> 外文期刊>Smart materials research >Nondestructive Wireless Monitoring of Early-Age Concrete Strength Gain Using an Innovative Electromechanical Impedance Sensing System
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Nondestructive Wireless Monitoring of Early-Age Concrete Strength Gain Using an Innovative Electromechanical Impedance Sensing System

机译:使用创新的机电阻抗传感系统对早期混凝土强度增益进行无损无线监测

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摘要

Monitoring the concrete early-age strength gain at any arbitrary time from a few minutes to a few hours after mixing is crucial for operations such as removal of frameworks, prestress, or cracking control. This paper presents the development and evaluation of a potential active wireless USB sensing tool that consists of a miniaturized electromechanical impedance measuring chip and a reusable piezoelectric transducer appropriately installed in a Teflon-based enclosure to monitor the concrete strength development at early ages and initial hydration states. In this study, the changes of the measured electromechanical impedance signatures as obtained by using the proposed sensing system during the whole early-age concrete hydration process are experimentally investigated. It is found that the proposed electromechanical impedance (EMI) sensing system associated with a properly defined statistical index which evaluates the rate of concrete strength development is very sensitive to the strength gain of concrete structures from their earliest stages.
机译:在混合后几分钟至几小时内的任意时间监控混凝土早期强度的增长对于操作如拆除框架,预应力或控制裂缝至关重要。本文介绍了潜在的有源无线USB传感工具的开发和评估,该工具由微型机电阻抗测量芯片和可重复使用的压电传感器组成,这些传感器适当地安装在基于聚四氟乙烯的机壳中,以监控混凝土在早期和初始水化状态下的强度发展。在这项研究中,实验研究了在整个早期混凝土水化过程中,使用建议的传感系统测得的机电阻抗特征的变化。结果发现,所提出的机电阻抗(EMI)传感系统与适当定义的统计指标相关,该指标评估混凝土强度的发展速度,从最早阶段就对混凝土结构的强度增益非常敏感。

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