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首页> 外文期刊>Materials >Characterizing Hypervelocity Impact (HVI)-Induced Pitting Damage Using Active Guided Ultrasonic Waves: From Linear to Nonlinear
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Characterizing Hypervelocity Impact (HVI)-Induced Pitting Damage Using Active Guided Ultrasonic Waves: From Linear to Nonlinear

机译:使用主动引导超声波表征超高速冲击(HVI)引起的点蚀损伤:从线性到非线性

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摘要

Hypervelocity impact (HVI), ubiquitous in low Earth orbit with an impacting velocity in excess of 1 km/s, poses an immense threat to the safety of orbiting spacecraft. Upon penetration of the outer shielding layer of a typical two-layer shielding system, the shattered projectile, together with the jetted materials of the outer shielding material, subsequently impinge the inner shielding layer, to which pitting damage is introduced. The pitting damage includes numerous craters and cracks disorderedly scattered over a wide region. Targeting the quantitative evaluation of this sort of damage (multitudinous damage within a singular inspection region), a characterization strategy, associating linear with nonlinear features of guided ultrasonic waves, is developed. Linear-wise, changes in the signal features in the time domain (e.g., time-of-flight and energy dissipation) are extracted, for detecting gross damage whose characteristic dimensions are comparable to the wavelength of the probing wave; nonlinear-wise, changes in the signal features in the frequency domain (e.g., second harmonic generation), which are proven to be more sensitive than their linear counterparts to small-scale damage, are explored to characterize HVI-induced pitting damage scattered in the inner layer. A numerical simulation, supplemented with experimental validation, quantitatively reveals the accumulation of nonlinearity of the guided waves when the waves traverse the pitting damage, based on which linear and nonlinear damage indices are proposed. A path-based rapid imaging algorithm, in conjunction with the use of the developed linear and nonlinear indices, is developed, whereby the HVI-induced pitting damage is characterized in images in terms of the probability of occurrence.
机译:超低速撞击(HVI)在低地球轨道上无处不在,撞击速度超过1 km / s,对在轨航天器的安全构成了巨大威胁。在穿透典型的两层屏蔽系统的外部屏蔽层时,破碎的弹丸与外部屏蔽材料的喷射材料一起撞击内部屏蔽层,从而引入点蚀。麻点损伤包括许多坑坑洼洼的裂纹,这些裂纹无序地散布在广阔的区域上。针对这种损坏(单个检查区域内的多个损坏)的定量评估,开发了一种将线性与引导超声波的非线性特征相关联的表征策略。线性地,提取时域中信号特征的变化(例如,飞行时间和能量耗散),以检测其特征尺寸与探测波的波长相当的严重损坏;非线性方面,探索了频域中信号特征的变化(例如,二次谐波的产生),这些变化被证明比线性对应物对小规模损伤更敏感,以表征HVI引起的点蚀损伤。内层。数值模拟与实验验证相结合,定量地揭示了导波穿过点蚀损伤时导波的非线性累积情况,并据此提出了线性和非线性损伤指标。结合使用已开发的线性和非线性指标,开发了基于路径的快速成像算法,从而根据图像的出现概率来表征HVI引起的点蚀损伤。

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