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Structural health monitoring and damage prognosis in composite repaired structures through the excitation of guided ultrasonic waves

机译:超声波引导下复合材料修复结构的结构健康监测和损伤预后

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The interest in composite repair technologies has been recently increased following the wide applications of composite materials in aerospace industry. Bonded repair patch technology provides an alternative to mechanically fastened repairs with significantly higher performance. The work here demonstrates two case studies: a woven composite panel repaired with an external composite patch and a woven composite panel with a scarf repair that minimises discontinuities and provides smoother surface. In the first case, piezoelectric transducers were utilized in order to excite low frequency Lamb waves while the panel was tested under static tensile loading. In the second case, piezoelectric (PZT) transducers were surface bonded and the propagation of the first anti-symmetric Lamb waves mode was investigated while the panel was subjected to fatigue loading. Along with Lamb wave testing, additional techniques were used to monitor the extent of the developed damage such as 3-dimensional Digital Image Correlation, X-ray radiography and optical microscopic analysis. All signals in both cases were further processed with outlier analysis and linear and non linear principal component analysis in order to develop an appropriate damage prognosis strategy. The current work identifies the problems of the traditionally used novelty detection approaches and proposes solutions through the concept of principal curves and appropriate feature extraction techniques.
机译:随着复合材料在航空航天工业中的广泛应用,最近人们对复合材料修复技术的兴趣有所增加。粘结式修补技术可替代机械固定的修补,性能更高。这里的工作展示了两个案例研究:用外部复合补片修复的机织复合板和用围巾修复的机织复合板,以最大程度地减少不连续性并提供平滑的表面。在第一种情况下,利用压电换能器激发低频兰姆波,同时在静态拉伸载荷下对面板进行测试。在第二种情况下,对压电(PZT)换能器进行表面粘合,并在面板承受疲劳载荷的同时研究了第一反对称Lamb波模式的传播。除了进行Lamb Wave测试外,还使用了其他技术来监测所造成损害的程度,例如3维数字图像相关性,X射线射线照相术和光学显微镜分析。两种情况下的所有信号都经过离群分析以及线性和非线性主成分分析进一步处理,以制定适当的损伤预后策略。当前的工作确定了传统上使用的新颖性检测方法的问题,并通过主曲线的概念和适当的特征提取技术提出了解决方案。

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