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A shock tube facility to generate blast loading on structures

机译:一种震动管设施,可在结构上产生爆炸载荷

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摘要

This study evaluates the performance of a new shock tube facility used to produce blast loading in controlled laboratory environments. The facility was found to generate a planar shock wave over the tube cross section by measuring the pressure distribution on a massive steel plate located at the end of the tube. The properties of the shock wave proved to be a function of driver length and driver pressure, and the positive phase of the measured pressure–time histories was similar to those generated from actual far-field explosive detonations. However, the shock tube is also suited to investigate fluid–structure interaction effects and the behaviour of materials in blast events. This was demonstrated using a three-dimensional digital image correlation technique to measure the deformation field of thin steel plates. Synchronization of the three-dimensional digital image correlation and pressure measurements enabled a thorough investigation of the entire experiment and identification of fluid–structure interaction effects. Finally, one-dimensional numerical simulations were performed to investigate the wave patterns during the experiments.
机译:这项研究评估了用于在受控实验室环境中产生爆炸载荷的新型冲击管设施的性能。通过测量位于管末端的大块钢板上的压力分布,发现该设备在管横截面上产生了平面冲击波。冲击波的特性被证明是驾驶员长度和驾驶员压力的函数,并且所测得的压力-时间历史的正相位与实际远场炸药爆炸产生的正相位相似。但是,冲击管也适合于研究流体与结构的相互作用效应以及爆炸事件中材料的行为。这是通过使用三维数字图像相关技术来测量薄钢板的变形场来证明的。三维数字图像相关性和压力测量结果的同步使得可以对整个实验进行彻底的研究,并确定流固耦合效应。最后,进行一维数值模拟以研究实验期间的波型。

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