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Analysis of the Cracking Mechanism of an Elliptical Bipolar Linear-Shaped Charge Blasting

机译:椭圆形双极线状电荷喷射裂缝机理分析

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This study investigates the cracking mechanism of an elliptical bipolar linear-shaped charge blasting via theoretical analysis, experimentation, and numerical simulation. The results show that in the shaped charge blasting, due to the effect of the shaped jet in the direction of the shaped energy, a certain initial crack length is formed. In the action phase of the stress wave, the energy accumulation direction reduces the load required for crack initiation and propagation. The crack propagation length generated in the energy accumulation direction is greater than the nonenergy accumulation direction. The load value of the initial shock wave in the shaped energy direction is significantly greater, by about 1.64 times than the nonshaped energy direction, and the peak load acting time is earlier than the nonshaped energy direction. A large amount of impact explosion energy is consumed in the area close to the charged energy explosion due to the crushing area, regardless of the charged or noncharged energy direction. In the energy accumulation direction, the shock wave attenuation rate is faster in the near explosion area and the stress wave attenuation rate is slower in the mid and far areas of the explosion. The difference in the explosion load in the mid and far areas is small. In the nonconcentrated direction, owing to the reflected compression wave, the second stress peak appears in the nonconcentrated direction. However, its value is smaller than that of the initial shock wave peak.
机译:本研究通过理论分析,实验和数值模拟研究了椭圆形双极线状电荷喷射的裂缝机理。结果表明,在成形电荷爆破中,由于成形射流在成形能量方向上,形成了一定的初始裂缝长度。在应力波的动作阶段,能量累积方向减少了裂纹启动和传播所需的负载。在能量累积方向上产生的裂缝传播长度大于不合累积方向。成形能量方向上的初始冲击波的负载值比非角性能方向显着更大,并且峰值负荷作用时间比非角性能量方向更早。无论带电或非充电的能量方向如何,在接近靠近带电的能量爆炸的区域中消耗大量的冲击爆炸能量。在能量累积方向上,在近爆地区的冲击波衰减速率越快,爆炸的中间和远区域的应力波衰减速率较慢。中游和远区爆炸载荷的差异很小。在不抚养的方向上,由于反射的压缩波,第二应力峰值出现在不浓度的方向上。然而,其值小于初始冲击波峰值的值。

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