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Spatially modulated thermal excitations for shearography non-destructive inspection of thick composites

机译:用于厚复合材料的Shearography非破坏性检查的空间调制热激发

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With the increasing application of thick composites in marine, wind energy and aerospace industries, the inspection of thick composites becomes more and more challenging when considering the variety of thick structures (e.g., laminate, sandwich, honeycomb structures). Shearography is a full-field and non-contact optical non-destructive testing (NDT) method which is normally used to inspect composite laminates up to 10 mm while for the thick composite laminates (e.g., with the thickness of more than 50 mm), its performance is not clear yet. In shearography NDT, a defect-induced anomaly is revealed from fringe or phase maps obtained by comparing two states of deformation of the specimen to be inspected. Thermal loading is widely used to deform the specimen due to its advantages of convenience for on-site inspection and cost-effectiveness. The objective of this study is to improve the defect detection capabilities of shearography when used to inspect thick composites. For that, spatial modulated thermal excitations are investigated. A thick composite model has been built in Abaqus to assist the shearography inspection. Various kinds of spatially modulated heating including local heating and global heating are explored for thick composite inspection with shearography in order to evaluate the corresponding efficacies in defect detection. We will present both experimental and numerical results on spatial modulated thermal loading. Defect-induced shearographic responses subjected to local and global thermal excitations will be discussed in this paper, including the influence of short-time heating and long-time heating on thick composite inspection. Current results indicate that long-time heating is more favorable when inspecting deep defects in thick composites, and with local heating it is possible to increase the defect-induced signal when compared with global heating.
机译:随着厚厚的复合材料在海洋,风能和航空航天行业的应用越来越多,厚复合材料的检查在考虑各种厚结构时变得越来越具有挑战性(例如,层压板,三明治,蜂窝结构)。 Shearography是一种全场和非接触式光学非破坏性测试(NDT)方法,通常用于检查高达10mm的复合层压板,而厚复合层压板(例如,厚度大于50mm),它的表现尚不清楚。在Shearography NDT中,通过比较要检查样本的变形的两种变形状态而获得的边缘或相位图揭示了缺陷诱导的异常。热负荷广泛用于使样品变形,因为它的方便现场检查和成本效益。本研究的目的是当用于检查厚复合材料时,提高沉焦的缺陷检测能力。为此,研究了空间调制的热激发。 ABAQUS建立了厚重的复合模型,以协助牧草检查。探讨了各种空间调制的加热,包括局部加热和全球加热,用于厚复合检查,以评价缺陷检测的相应效率。我们将在空间调制的热负荷上呈现实验性和数值结果。本文将讨论对局部和全球热激发进行局部和全球热激发的缺陷诱导的抗剪切响应,包括短时加热和长时间加热对厚复合检查的影响。当前结果表明,当在厚复合材料中检查深缺陷时,长时间加热更有利于,并且通过局部加热,可以在与全球加热相比时增加缺陷诱导的信号。

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