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PZT-Based Detection of Compactness of Concrete in Concrete Filled Steel Tube Using Time Reversal Method

机译:基于PZT的时间反转法检测钢管混凝土中的混凝土密实度

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摘要

A smart aggregate-based approach is proposed for the concrete compactness detection of concrete filled steel tube (CFST) columns. The piezoceramic-based smart aggregates (SAs) were embedded in the predetermined locations prior to the casting of concrete columns to establish a wave-based smart sensing system for the concrete compactness detection purpose. To evaluate the efficiency of the developed approach, six specimens of the CFST columns with the rectangular cross-section were produced by placing some artificial defects during casting of concrete for simulating various uncompacted voids such as cavities, cracks, and debond. During the test, the time reversal technology was applied to rebuild the received signals and launch the reversed signals again by SAs, to overcome the issue of the lack of the prototype. Based on the proposed nonprototype, two indices of time reversibility (TR) and symmetry (SYM) were applied to relatively evaluate the level of concrete compactness in the range of the two SAs. The experimental results show that the developed method can effectively detect the compactness of concrete in CFST columns.
机译:提出了一种基于智能骨料的方法来检测钢管混凝土(CFST)柱的混凝土密实度。在铸造混凝土柱之前,将基于压电陶瓷的智能骨料(SA)嵌入预定位置,以建立基于波浪的智能感测系统,以检测混凝土的密实度。为了评估所开发方法的效率,通过在混凝土浇铸过程中放置​​一些人造缺陷以模拟各种未压实的空隙(例如空洞,裂缝和脱胶),制作了六个矩形截面的CFST柱标本。在测试过程中,采用了时间反转技术来重建接收到的信号并通过SA再次发射反转的信号,从而克服了缺乏原型的问题。基于提出的非原型,应用时间可逆性(TR)和对称性(SYM)两个指标来相对评估两个SA范围内的混凝土密实度。实验结果表明,该方法可以有效地检测CFST柱中混凝土的密实度。

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  • 来源
    《Mathematical Problems in Engineering》 |2014年第2期|909682.1-909682.11|共11页
  • 作者单位

    School of Civil Engineering, Shenyang Jianzhu University Shenyang, Liaoning 110168, China;

    Shenzhen China Overseas Construction Limited, Shenzhen, Guangdong 518057, China;

    School of Civil Engineering, Shenyang Jianzhu University Shenyang, Liaoning 110168, China;

    Building Research Institute, Angang Construction Group, Anshan, Liaoning 114001, China;

    Building Research Institute, Angang Construction Group, Anshan, Liaoning 114001, China;

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