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大尺寸钢管混凝土界面脱空的声波PSD识别研究

Research on Acoustic PSD Identification of Interface Void in Large-Sized Steel Tube Concrete

  • 摘要: 钢管混凝土(concrete filled steel tube,CFST)作为广泛应用于桥梁与高层建筑的复合结构,其内部混凝土与钢管间可能因施工质量或收缩而产生脱空缺陷,导致结构承载力显著降低。为对此类缺陷进行有效评估,本文开展了基于空气声辐射测量的冲击回波无损检测研究。通过建立CFST简化二维有限元模型,并结合内置不同尺寸聚氨酯泡沫(polyurethane,简称PU)脱空的大尺寸试件进行实验,采集并分析了冲击回波信号的功率谱密度(power spectral density,PSD)特征。研究结果表明,PSD的积分面积能够有效表征脱空的存在及其尺寸变化,从而实现对CFST结构脱空的可靠评估。本研究结果可为CFST结构无损检测提供方法参考与实验依据。

     

    Abstract: Concrete-filled steel tube (CFST), a composite structure widely used in bridges and high-rise buildings, may develop void defects between the internal concrete and the steel tube due to construction quality issues or concrete shrinkage, leading to a significant reduction in structural bearing capacity. To effectively evaluate such defects, this study conducts non-destructive testing research based on the air-coupled impact-echo method. A simplified 2D finite element model of CFST was established, and experiments were performed on large-scale specimens containing polyurethane (PU) voids of varying sizes. The power spectral density (PSD) characteristics of the impact-echo signals were collected and analyzed. The results show that the integrated area under the PSD curve can effectively characterize the presence and size variation of voids, enabling reliable assessment of void conditions in CFST structures. The findings of this study provide methodological guidance and experimental evidence for the non-destructive evaluation of CFST structures.

     

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