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首页> 外文期刊>Journal of intelligent material systems and structures >Macro-fiber composite-based structural health monitoring system for axial cracks in cylindrical structures
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Macro-fiber composite-based structural health monitoring system for axial cracks in cylindrical structures

机译:基于宏纤维复合材料的圆柱结构轴向裂缝结构健康监测系统

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摘要

In cylindrical structures such as pipelines and pressure vessels, cracks are most likely to occur along the longitudinal (axial) direction, and they can be fatal to the serviceability of the structures. However, the conventional wave propagation-based crack detection techniques are not sensitive to this type of cracks. This article focuses on the identification of axial cracks in cylindrical structures using torsional wave generated by piezoelectric macro-fiber composite. The first-order torsional wave, which is a nondispersive pure shear wave propagating at a fixed wave speed, is utilized in this work because, intuitively, it is more sensitive to axial cracks than the longitudinal waves. The crack position is determined by the time of flight of the wave pack, while the crack propagation is monitored by measuring the variation in the crack-induced disturbances. Numerical simulations have been conducted to investigate the feasibility of the proposed method, and experimental tests on aluminum pipes have been carried out for verification. Macro-fiber composite transducers oriented at 45° against the axis of the specimen were used to generate and receive the torsional waves. The experimental results demonstrated that the crack position can be identified, and its growth can be well monitored with the proposed approach.
机译:在诸如管道和压力容器之类的圆柱形结构中,裂纹最有可能沿纵向(轴向)方向发生,并且它们可能会对结构的使用寿命造成致命影响。然而,常规的基于波传播的裂纹检测技术对这种类型的裂纹不敏感。本文着重利用压电大纤维复合材料产生的扭转波识别圆柱结构中的轴向裂纹。一阶扭转波是一种以固定波速传播的非分散纯剪切波,在这项工作中得到了使用,因为从直觉上讲,它比纵向波对轴向裂纹更敏感。裂纹的位置由波包的飞行时间确定,而裂纹的传播则通过测量裂纹引起的扰动的变化来监测。通过数值模拟研究了该方法的可行性,并对铝管进行了实验测试以进行验证。相对于样品轴成45°角的大纤维复合材料换能器用于产生和接收扭转波。实验结果表明,利用所提出的方法可以识别裂纹位置,并且可以很好地监控裂纹的扩展。

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