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Time-Resolved Measurement of Deformation of Metal Plates Due to High-Velocity Impacts

机译:由于高速冲击,金属板变形的时间分辨测量

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A methodology is presented for analysing the rear surface deformation of metal plates impacted at ordnance velocities to hypervelocities. Ultra-high-speed imaging and Photonic Doppler Velocimetry are used concurrently to provide a real-time, quantitative description of the plate bulge development and morphology. The utility of the described approach is demonstrated through time-resolved terminal ballistic experiments on metal plates impacted by copper spheres at 2200 m/s. The rear surface damage evolution was evaluated for projectile diameter to target thickness ratios of 1 and 2. The impactor diameter was held constant at 6.4 mm and two different plate thicknesses of approximately 3.2 and 6.4 mm were examined. The target materials included rolled homogenous armour (RHA) steel, titanium alloy Ti-6A1-4V, aluminium alloy A1-6061-T6, and magnesium alloy Mg-AZ31B-H24.
机译:提出了一种方法,用于分析撞击施力速度的金属板的后表面变形。超高速成像和光子多普勒速度同时使用,以提供对板凸起发展和形态的实时定量描述。通过在2200m / s的铜球撞击的金属板上的时间分辨终端弹道实验来证明所描述的方法的效用。评价后表面损伤进化的射弹直径为1和2的目标厚度比。撞击直径在6.4mm处保持恒定,检查两种不同的板厚度约为3.2和6.4mm。目标材料包括轧制均匀铠装(RHA)钢,钛合金Ti-6a1-4V,铝合金A1-6061-T6和镁合金Mg-AZ31B-H24。

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