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Ricochet of Spheres on Sand of Various Temperature

机译:不同温度的沙子上球的弹子

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The debris generated by the explosion of a building or ammunition is flown far away through the ricochet phenomenon. The debris contains a very large amount of energy, and a risk factor surrounding it may be applied. The safety distance from debris is set from experiments or FEM analysis. The ricochet of debris is affected not only by the initial conditions of the debris, but also by the conditions of the medium. In this paper, the effect of sand temperature on the ricochet of sphere projectiles was investigated through experiments and FEM, by measuring the shear stress and internal friction angle when the sand temperature increases. As the temperature of the sand increases, the shear stress and the internal friction angle decrease, and the penetration depth of the projectile increases. As the depth of penetration becomes longer, the kinetic energy is lost more by the friction force with the sand and, the sphere projectile speed decreases more. This is mainly caused by the energy loss of the projectile, so the kinetic energy of the ricocheted projectile is reduced. Therefore, when setting the optimized inhabited building distance (IBD), the conditions of the medium should be taken into account.
机译:建筑物或弹药爆炸产生的碎屑通过跳弹现象飞得很远。碎片包含非常大量的能量,可能会使用围绕它的危险因素。距碎片的安全距离是通过实验或有限元分析确定的。碎片的跳动不仅受到碎片的初始条件的影响,而且还受到介质条件的影响。通过实验和有限元分析,通过测量砂温升高时的剪应力和内摩擦角,研究了砂温对球形弹丸跳弹的影响。随着沙子温度的升高,剪切应力和内摩擦角减小,并且弹丸的穿透深度增大。随着穿透深度变长,动能会因与沙子的摩擦力而损失更多,并且球体的弹丸速度会进一步降低。这主要是由弹丸的能量损失引起的,因此降低了跳弹的动能。因此,在设置最佳居住建筑距离(IBD)时,应考虑介质的条件。

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