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Investigation of Shock Initiation in Covered Charges under Shock Wave and Fragment Impacts

机译:冲击波下覆盖电荷的冲击发起调查及碎片影响

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In the current work, a series of step-by-step research methods have been applied to address the damaging effects of near-field strong shock waves and high-speed fragments on covered charge. In the first step, the defects of covered plates due to high-speed fragments were simplified to penetrated notches, and then, these notches were used to evaluate the impact of shock wave loads on charges covered with metal plates. In the next step, we developed a theoretical model to take into account the shock initiation of charges covered with defected metal plates. Explosive initiation standards coupled with shock wave evolution characteristics were applied to specify the crucial conditions of explosive detonation. Finite element program, for instance, was applied for the simulation of shock initiation processes in pressed charges (when TNT was covered with a steel plate containing a penetrated notch), and then, numerical simulations were validated by experimental findings. Finally, the results obtained from the numerical simulations and theoretical model were applied to evaluate the impacts of shock wave intensity, the thickness of covered metal plate, and the geometrical features of penetrated notch on pressed charge shock initiation. The least squares method was applied to determine critical initiation criteria ( n and K). Theoretical calculation results were found to be highly consistent with those obtained from numerical simulations, indicating that covered metal plates significantly contributed to charge protection. The results also revealed that notches could undermine the protective function of covered plates and the size and shape of notch significantly affected charge critical detonation distance. Critical detonation distances of noncontact explosions were found to be 25 and 81?mm for a 3 mm thick pressed TNT in the presence and absence of 45# steel-covered plate, respectively. According to the results, increase in the diameter of covered plates containing a cylindrical notch increased pressed TNT critical detonation distance. When dealing with a covered plate containing a normally reflected frustum notch, however, we figured out that any increase in normal reflection slope could decrease pressed TNT critical detonation distance.
机译:在目前的工作中,已经应用了一系列逐步的研究方法来解决近场强震波浪和高速碎片对覆盖的电荷的破坏性影响。在第一步中,由于高速碎片引起的覆盖板的缺陷被简化为穿透的凹口,然后,这些凹口用于评估冲击波载荷对金属板覆盖的电荷的影响。在下一步中,我们开发了一个理论模型,以考虑到有缺陷的金属板覆盖的电荷的冲击启动。应用爆炸性启动标准与冲击波演化特性相结合,以指定爆炸性爆炸的关键条件。例如,有限元件用于模拟压制电荷中的冲击起始过程(当TNT被含有穿透凹口的钢板覆盖时),然后通过实验结果验证数值模拟。最后,应用了从数值模拟和理论模型获得的结果来评估冲击波强度,覆盖金属板厚度的影响,以及在压制电荷冲击开始上的穿透凹口的几何特征。应用最小二乘法以确定关键起始标准(N和K)。发现理论计算结果与从数值模拟中获得的那些高度一致,表明覆盖的金属板显着促成了充电保护。结果还透露,缺口可以破坏盖板的保护功能,缺口的尺寸和形状显着影响临界爆炸距离。在存在和不存在45#钢板的情况下,发现非接触爆炸的临界爆炸距离为25和81Ωmm。根据结果​​,覆盖板的直径增加,含有圆柱形凹口的压制TNT临界爆轰距离增加。然而,当处理含有通常反射的截肢槽凹口的盖板时,我们想出了正常反射斜率的任何增加都可以降低压力的TNT临界爆轰距离。

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