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Modal frequency vs. Shearography in detecting and locating voids/delaminations in sandwich composites

机译:模态频率与Shearography在夹层复合材料中检测和定位空隙/分层

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This paper reports on the attempt by the authors to establish a novel non-destructive testing protocol in detecting the presence and location of subsurface defects, such as voids or de-laminations, in sandwich composites. The work performed was based on the premise that the presence of a defect in a composite structure would affect its modal frequencies, when subjected to vibratory excitation. Experiments were carried out using various types of sandwich composites fashioned as built in cantilever beams which were perturbed by airborne vibrations. As predicted by a parametric finite element analysis the modal frequencies of the cantilever were modestly affected by the presence of a defect, however its position along the length of the beam could not easily be determined. For comparison purposes the same cantilever specimens were subjected to thermal excitation and inspected using a portable digital shearography system. As expected the presence and location of the defects were readily and vividly identified.
机译:本文报告了作者在夹层复合材料中检测到夹层复合材料中的诸如空隙或去层压等地下缺陷的存在和位置的新型非破坏性测试方案的报告。所执行的工作是基于前提,即在受到振动激发的情况下,复合结构中的缺陷存在会影响其模频频率。使用各种类型的夹层复合材料进行实验,以悬臂梁制成,其被空气传播振动扰动。如通过参数有限元分析所预测的,悬臂的模态频率受到缺陷的存在,但不能容易地确定其沿着光束长度的位置。为了比较目的,将相同的悬臂标本进行热激励并使用便携式数字剪切系统进行检查。正如预期的那样,缺陷的存在和位置被易于和生动地确定。

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