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Damage-induced acoustic emission source monitoring in a honeycomb sandwich composite structure

机译:蜂窝夹芯复合结构的损伤声发射源监测

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摘要

A coordinated semi-analytical, finite element, and experimental analysis of damage induced acoustic emission (AE) wave propagation and source monitoring in a honeycomb sandwich composite structure (HSCS) have been carried out. Towards this, a global matrix method based two-dimensional (2D) semi-analytical formulation is first applied to obtain the AE response and dispersion characteristics in the HSCS. The finite element simulation of AE-wave propagation in the HSCS is then carried out using different AE-sensor network configurations. Eventually, the damage source locations are efficiently identified by applying a source localization algorithm, which uses the registered AE signals from the sensor networks. In order to verify the robustness of the proposed damage source monitoring technique, the localization is further broadened for randomly selected multiple damage source locations for each sensor network configuration. The obtained results distinctly represent the efficiency of the proposed online monitoring strategy for localizing the damage-source in such complex and advanced structures. Moreover, it is shown that the proposed damage source monitoring technique is reliable and independent of sensor positions.
机译:在蜂窝夹芯复合结构(HSCS)中进行了协调的半解析有限元和损伤诱导声发射(AE)波传播和源监控的实验分析。为此,首先应用基于全局矩阵方法的二维(2D)半分析公式来获得HSCS中的AE响应和色散特性。然后使用不同的AE传感器网络配置进行HSCS中AE波传播的有限元模拟。最终,通过应用源定位算法可以有效地识别损坏源位置,该算法使用来自传感器网络的已注册AE信号。为了验证所提出的损坏源监视技术的鲁棒性,针对每种传感器网络配置,针对随机选择的多个损坏源位置进一步扩大了定位范围。获得的结果清楚地代表了所提出的在线监视策略在这种复杂和高级结构中定位损坏源的效率。而且,表明所提出的损伤源监视技术是可靠的并且独立于传感器位置。

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