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Detection of delamination in composite beams using frequency deviations due to concentrated mass loading

机译:使用集中质量载荷引起的频率偏差检测复合梁中的分层

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摘要

Modern composite structures are usually designed to withstand mass loading. The effects of delamination due to concentrated mass loading with respect to modal frequency variations in composite beams have been investigated in the present work numerically and experimentally. A noticeable delamination-induced modal frequency deviation has been observed when a concentrated mass loading is imposed at pre-defined sections of the delaminated composite beams compared to the intact (reference) composite beams. For delaminations of only 10% of the length of a composite beam, modal frequency deviations of about 20% were observed numerically and experimentally. Further investigations of different delamination configurations show that the modal frequency deviations are dependent on the longitudinal location as well as the interlayer positions of the defects. Higher frequency deviations are observed when delamination approaches the clamped boundary of a composite beam. The results suggest that the frequency curve deviations have a local or global characteristic depending on whether the delamination occurs at the near surface or the mid-plane of the composite beam, respectively. Consequently, the frequency curves can be employed as NDT tool for delamination identification and localisation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:现代复合结构通常被设计成承受质量载荷。在目前的工作中,已经通过数值和实验研究了由于集中质量载荷引起的分层对复合梁模态频率变化的影响。与完整(参考)复合梁相比,当在分层复合梁的预定截面处施加集中质量载荷时,会观察到明显的分层引起的模态频率偏差。对于仅占复合梁长度10%的分层,数值和实验观察到的模态频率偏差约为20%。对不同分层结构的进一步研究表明,模态频率偏差取决于缺陷的纵向位置以及层间位置。当分层接近复合梁的夹紧边界时,观察到较高的频率偏差。结果表明,频率曲线偏差具有局部或全局特性,分别取决于分层是在复合梁的近表面还是中平面发生。因此,频率曲线可以用作无损检测工具,用于分层识别和定位。 (C)2016 Elsevier Ltd.保留所有权利。

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