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Detonation effects of shallow buried explosive in sandy soil on target plate acceleration in a small-scale blast test

机译:沙土中浅埋炸药在小规模爆炸试验中的爆轰对靶板加速度的影响

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Small-scale blast tests were carried out to observe and measure the influence of sandy soil towards explosive blast intensity. The tests were to simulate blast impact imparted by anti-vehicular landmine to a lightweight armoured vehicle (LAV). Time of occurrence of the three phases of detonation phase in soil with respect to upward translation time of the test apparatus were recorded using high-speed video camera. At the same time the target plate acceleration was measured using shock accelerometer. It was observed that target plate deformation took place at early stage of the detonation phase before the apparatus moved vertically upwards. Previous data of acceleration-time history and velocity-time history from air blast detonation were compared. It was observed that effects of soil funnelling on blast wave together with the impact from soil ejecta may have contributed to higher blast intensity that characterized detonation in soil, where detonation in soil demonstrated higher plate velocity compared to what occurred in air blast detonation.
机译:进行了小型爆炸试验,以观察和测量沙土对爆炸强度的影响。测试是为了模拟反车辆地雷对轻型装甲车(LAV)的爆炸冲击。使用高速摄像机记录相对于测试装置的向上平移时间的土壤中爆轰相的三个相的发生时间。同时,使用冲击加速度计测量目标板加速度。可以观察到,在设备垂直向上移动之前,目标板变形发生在爆炸阶段的早期。比较了来自爆破爆炸的加速时间历史和速度时间历史的先前数据。观察到,土壤漏斗对爆炸波的影响以及来自土壤喷出物的影响可能导致了更高的爆炸强度,该爆炸强度表征了土壤的爆炸性,与空气爆炸相比,土壤爆炸的板速更高。

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