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Guided wave propagation and damage detection in composite pipes using piezoelectric sensors

机译:用压电传感器测量复合管内导波传播和损伤

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摘要

Composite materials have many attractive properties, e.g. light-weight combined with high mechanical strength and are recognized as an enabling technology for deep-water high pressure high temperature (HPHT) and corrosive environment applications. However, composite piping is still expensive compared to the steel option and failure prediction and long term properties characterization require further development. Cost reduction and advances in such areas would enable the use of composites in a wider range of applications. Evaluation of in-service prototypes offers a partial solution but is costly. Thus a method that allows constant health monitoring of the composite in real-time and in-situ would be extremely useful. Ultrasonic guided wave-based structural health monitoring (SHM) technology is one of the most prominent options in non-destructive evaluation and testing (NDE/NDT) techniques. To investigate the feasibility of guided wave-based SHM for composite pipes, propagation characteristics of guided waves in an epoxy hybrid carbon/glass fibres pipe are systematically studied using finite element (FE) simulation and experiments. Both axisymmetric modes of propagation, the longitudinal L(0,m) and torsional T(0,m) modes are considered in the simulation process, however only the longitudinal modes can be captured by the piezoelectric sensors. Additionally, the tuning curves experimentally plotted are used to obtain the frequency with the maximum amplitude of each guided mode. Finally, guided waves in the composite pipe are tested with simulated defects to understand the behaviour of guided waves after interaction with the defects. The different condition of simulated defects, e.g., the defect size and defect location are studied to find out the proper condition and limitation of using guided waves to monitor and inspect composite pipes
机译:复合材料具有许多吸引人的特性,例如重量轻,机械强度高,是公认的深水高压高温(HPHT)和腐蚀性环境应用的使能技术。但是,与钢制选件相比,复合管道仍然昂贵,并且故障预测和长期性能表征需要进一步发展。成本的降低和这些领域的进步将使复合材料能够在更广泛的应用中使用。对在役原型的评估提供了部分解决方案,但成本很高。因此,一种允许实时和就地对复合材料进行持续健康监测的方法将非常有用。基于超声波导波的结构健康监测(SHM)技术是无损评估和测试(NDE / NDT)技术中最突出的选择之一。为了研究基于导波的SHM用于复合管的可行性,使用有限元(FE)模拟和实验系统地研究了导波在环氧混合碳/玻璃纤维复合管中的传播特性。在仿真过程中考虑了两种轴对称传播模式,即纵向L(0,m)和扭转T(0,m)模式,但是压电传感器只能捕捉纵向模式。另外,实验绘制的调谐曲线用于获得每个引导模式的最大振幅的频率。最后,对复合管中的导波进行模拟缺陷测试,以了解与缺陷相互作用后导波的行为。研究了模拟缺陷的不同条件,例如缺陷尺寸和缺陷位置,以找出使用导波监测和检查复合管的合适条件和局限性

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