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Lamb Wave Propagation in Z-pin Reinforced, Co-cured Composite Pi-Joints

机译:Z销增强的共固化复合材料管接头中的兰姆波传播。

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This paper presents an initial study on Lamb wave propagation characteristics in z-pin reinforced, co-cured composite pi-joints for the purposes of structural health monitoring (SHM). Pi-joint test articles were designed and created to replicate a co-cured, all composite skin-spar joint found within a typical aircraft wing structure. Because pi-joints exhibit various complex damage modes, formal studies are required if SHM systems are to be developed to monitor these types of joints for potential damage. Experiments were conducted on a undamaged (healthy) and damaged test articles where Lamb waves were excited using one lead zirconate titanate (PZT) transducer. A three-dimensional (3D) scanning laser Doppler vibrometer (LDV) was used to collect high-density scans of both the in-plane and out-of-plane velocity measurements. In the damaged test article, where delami-nation, matrix cracking, and fiber breakage can clearly be seen, changes in both the fundamental antisymmetric Ao and symmetric S0 Lamb wave modes are apparent. In both test articles, the effects of narrow geometry, discontinuity due to the attachment of the web, and thickness has detectable effects on Lamb wave propagation. From the comparisons between Lamb waves propagating through the undamaged and damaged test articles, it is clear that damage can be detected using Lamb waves in z-pin reinforced, co-cured composite pi-joints for this case of extensive damage.
机译:本文针对结构健康监测(SHM)的目的,对La销在z钉增强共固化复合pi接头中的传播特性进行了初步研究。设计并创建了Pi接头测试物品,以复制在典型的飞机机翼结构中发现的共固化的所有复合翼梁接头。由于pi关节表现出各种复杂的损坏模式,因此,如果要开发SHM系统来监视这些类型的关节的潜在损坏,则需要进行正式研究。实验是在未损坏(健康)和损坏的测试物品上进行的,其中使用一个锆钛酸铅(PZT)换能器激发了Lamb波。三维(3D)扫描激光多普勒振动计(LDV)用于收集面内和面外速度测量的高密度扫描。在损坏的测试制品中,可以清楚地看到分层,基体破裂和纤维断裂,基本反对称Ao波和对称S0 Lamb波模均发生了明显变化。在这两篇测试文章中,狭窄的几何形状,由于纤维网的附着而引起的不连续性以及厚度对兰姆波传播的影响均可检测到。从在未损坏的和损坏的测试制品中传播的兰姆波之间的比较中可以明显看出,对于这种广泛损坏的情况,可以使用z-pin增强,共固化的复合pi型接头中的兰姆波来检测损坏。

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