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S-wave tracing technique to investigate the damage and failure behavior of brittle materials subjected to shock loading

机译:S波跟踪技术研究承受冲击载荷的脆性材料的破坏和破坏行为

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摘要

To reveal the intrinsic rules of dynamic damage and failure behavior for brittle materials subjected to shock loading, a so-called transversal shear wave tracing technique (SWT) is proposed and discussed in detail in the present paper based on the wave propagation theory and the combined compression-shear impact technique. The idea of the SWT method is to diagnose the material state at real time by measuring the propagation features of loading and unloading shear waves. By using SWT technique, the preliminary experimental results of fiber-reinforced cement (FCEM) with electromagnetic particle velocity gauges embedded in the sample at different locations are reported and analyzed. By tracing the shear wave propagation, it is found that the amplitude and speed of unloading shear wave (S~-) are related to the damage degree of the material. Particularly, S~- vanishes when impact velocities exceed 197m/s, which discloses clearly a transition point from damage state to failure state of FCEM. It is significant for there is no obvious cusp to indicate such transition on the Hugoniot of FCEM. Some further studies are needed for understanding and developing of SWT method.
机译:为了揭示承受冲击载荷的脆性材料的动态损伤和破坏行为的内在规律,提出了一种所谓的横向剪切波跟踪技术(SWT),并基于波传播理论和组合理论进行了详细讨论。压缩剪切冲击技术。 SWT方法的思想是通过测量加载和卸载剪切波的传播特征实时诊断材料状态。通过SWT技术,报告并分析了在不同位置嵌入样品中的电磁颗粒速度计对纤维增强水泥(FCEM)的初步实验结果。通过追踪剪切波的传播,发现卸载剪切波的幅度和速度(S〜-)与材料的损伤程度有关。特别地,当冲击速度超过197m / s时,S-消失,这清楚地揭示了FCEM从破坏状态到破坏状态的过渡点。重要的是,没有明显的迹象表明FCEM的Hugoniot发生了这种转变。为了理解和发展SWT方法,还需要进行一些进一步的研究。

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