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Localization of Hypervelocity Impact- Engendered Damage In Stiffened Curved Structures Using In-Situ Acoustic Emission

机译:利用原位声发射对加劲弯曲结构中超高速冲击引起的损伤进行定位

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Pervasive in Earth' orbit, hypervelocity impact (HVI), caused by micrometeoroids and orbital debris (MMOD), poses an immense threat to the safety and integrity of spacecraft, leading to the failure and fragmentation of the entire spacecraft structures. Addressing such an issue, HVI-induced damage in space structures is localized using in-situ acoustic emission (AE). However, conventional AE localization techniques in the stiffened curved structures require either the knowledge of the direction dependent velocity profile or a dense array of sensors, due to the attenuation and anisotropic-like propagation of AE signals. In this work, a new approach of area localization is proposed to locate the HVI-induced acoustic source in large-scale anisotropic-like plates with a sparse array of sensors, and without knowing the direction dependent velocity profile in the plate. On this basis, the impact spot can be precisely located.
机译:微流星体和轨道碎片(MMOD)造成的超高速撞击(HVI)普遍存在于地球轨道上,对航天器的安全性和完整性构成了巨大威胁,导致整个航天器结构的破裂和破碎。解决此问题的方法是使用原位声发射(AE)来对HVI引起的空间结构破坏进行定位。但是,由于AE信号的衰减和类似各向异性的传播,在刚性弯曲结构中的常规AE定位技术需要了解方向相关的速度曲线或密集的传感器阵列。在这项工作中,提出了一种新的区域定位方法,以将HVI感应声源定位在具有稀疏传感器阵列的大型各向异性板中,而无需知道板中与方向相关的速度分布。在此基础上,可以精确定位冲击点。

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