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Shock-Structure Interaction Using Background Oriented Schlieren and Digital Image Correlation

机译:使用背景面向的Schlieren和数字图像相关性的冲击结构相互作用

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摘要

Flight-critical structures can be subjected to blast or shock loadings, e.g., during conflict situations or during supersonic flight operations. It is therefore necessary that structural behavior of the materials used be well understood in such extreme environments. The Background Oriented Schlieren (BOS) technique is applied to study the reflection of shockwave over an inclined aluminum plate in tandem with the 3D DIC technique to study the full field deformation of the back face of the aluminum plates. The mathematical formulation of the BOS technique is used to observe pressure and shock wave fronts. Back face DIC of the aluminum plates can be correlated to the BOS data at the same time and hence providing a more comprehensive way to study fluid structure interaction during a shock wave reflection.
机译:飞行 - 临界结构可以进行喷射或冲击载荷,例如在冲突情况下或超音速飞行期间。 因此,在这种极端环境中使用的材料的结构行为非常理解。 施加背景面向的Schlieren(BOS)技术以研究倾斜铝板的反射与3D DIC技术的倾斜铝板,研究铝板背面的全场变形。 BOS技术的数学制剂用于观察压力和冲击波前沿。 铝板的背面DIC同时可以与BOS数据相关,从而提供更全面的方法来研究冲击波反射期间的流体结构相互作用。

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