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Damage mode identification in transverse crack tension specimens using acoustic emission and correlation with finite element progressive damage model

机译:利用声发射和与有限元渐进损伤模型的相关性识别横向裂纹拉伸试样的损伤模式

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摘要

In this study, damage progression in unidirectional composite specimens is investigated. Transverse Crack Tension specimens are used to stimulate damage in a predetermined progressive sequence. Acoustic Emission (AE) registration technique and its location detection capability is used to identify and locate the damage modes during the tension tests. The k-means + + algorithm is applied to cluster similar AE events and obtain reliable correlations between the damage modes and AE characteristics. Damage modes at the end of interrupted tests are identified under an optical microscope and correlated with locations of AE clusters. It is seen that matrix cracks have high amplitude and duration, whereas delaminations have low amplitude and mid-duration, and fibre breaks have high average frequency characteristics. A finite element analysis was performed to predict the progressive failure behaviour including intralaminar failure and delaminations. The correlations between the AE clusters and damage modes are validated with the finite element model.
机译:在这项研究中,研究了单向复合材料试样的损伤进程。横向裂纹拉伸试样用于按预定的渐进顺序刺激损伤。声发射(AE)配准技术及其位置检测功能用于在拉伸测试过程中识别和定位损坏模式。 k-均值+ +算法应用于聚类相似的AE事件,并获得损伤模式与AE特征之间的可靠关联。中断测试结束时的损伤模式在光学显微镜下识别,并与AE簇的位置相关。可以看出,基体裂纹具有高振幅和持续时间,而分层具有低振幅和中持续时间,并且纤维断裂具有高平均频率特性。进行了有限元分析以预测进行性破坏行为,包括层内破坏和分层。利用有限元模型验证了AE簇与损伤模式之间的相关性。

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