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A transmittance-based methodology for damage detection under uncertainty: An application to a set of composite beams with manufacturing variability subject to impact damage and varying operating conditions

机译:基于透射率的不确定性损伤检测方法:应用于制造可变性受冲击损伤和运行条件变化影响的一组复合梁的应用

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摘要

Oftentimes, the complexity in manufacturing composite materials leads to corresponding structures which although they may have the same design specifications they are not identical. Thus, composite parts manufactured in the same production line present differences in their dynamics which combined with additional uncertainties due to different operating conditions may lead to the complete concealment of effects caused by small, incipient, damages making their detection highly challenging. This damage detection problem in nominally identical composite structures is pursued in this study through a novel data-based response-only methodology that is founded on the autoregressive with exogenous (ARX) excitation parametric representation of the transmittance function between vibration measurements at two different locations on the structure. This is a statistical time series methodology within which two schemes are formulated. In the first, a single-reference transmittance model representing the healthy structure is employed, while multiple transmittance models from a sample of available healthy structures are used in the second. The model residual signal constitutes for both schemes the damage detection characteristic quantity that is used in appropriate hypothesis testing procedures with the likelihood ratio test. The methodology is experimentally assessed via damage detection for a population of composite beams which are manufactured in the same production line representing the half of the tail of a twin-boom unmanned aerial vehicle. The damage detection results demonstrate the superiority of the multiple transmittance models based scheme that may effectively detect damages under significant manufacturing variability and varying boundary conditions.
机译:通常,制造复合材料的复杂性导致相应的结构,尽管它们可能具有相同的设计规格,但并不相同。因此,在同一条生产线上生产的复合零件会表现出动态差异​​,再加上由于不同的工作条件而带来的其他不确定性,可能会完全掩盖由微小的,初期的损坏所造成的影响,从而使它们的检测极具挑战性。在这项研究中,通过使用基于数据的仅基于响应的新颖方法建立了名义上相同的复合结构中的损伤检测问题,该方法建立在自回归与外生(ARX)激发参数表示下两个不同位置上振动测量之间的透射率函数之间。结构。这是一种统计时间序列方法,其中制定了两种方案。在第一个中,使用代表健康结构的单参考透射率模型,而在第二个中,使用来自可用健康结构的样本的多个透射率模型。对于这两种方案,模型残差信号均构成了在似然比检验的适当假设检验程序中使用的损坏检测特征量。该方法是通过损伤检测对一组复合梁进行实验评估的,这些复合梁是在代表双臂无人飞行器尾部一半的同一条生产线中制造的。损伤检测结果证明了基于多个透射率模型的方案的优越性,该方案可以在明显的制造可变性和变化的边界条件下有效检测损伤。

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