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Investigation into debris cloud characterizations for oblique hypervelocity impact of projectiles on bumper

机译:弹丸对保险杠的倾斜超高速冲击的碎片云表征研究

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摘要

All long-duration spacecraft in low-earth-orbit are subject to high velocity impacts by meteoroids and space debris. Such impacts are expected to occur at non-normal incidence angles and can cause severe damage to the spacecraft and its external flight-critical systems and possibly lead to catastrophic failure of the spacecraft. In order to ensure crew safety and proper function of internal and external spacecraft systems, the characteristics of a debris cloud generated by such impacts must be known. An analytical model is therefore developed for the characterization of the penetration and ricochet debris clouds created by the hypervelocity impact of an aluminum spherical projectile on an aluminum plate. This model employs normal and oblique shock wave theory to characterize the penetration and ricochet processes. The prediction results of center-of-mass trajectory and leading velocity of penetration and ricochet debris clouds are obtained and compared with numerical and experimental results in figures.
机译:低地轨道上的所有长寿命航天器都受到流星体和空间碎片的高速撞击。预计这种撞击会以非法线入射角发生,并且可能对航天器及其外部关键飞行系统造成严重损害,并可能导致航天器发生灾难性故障。为了确保机组人员安全以及内部和外部航天器系统的适当功能,必须知道由这种撞击产生的碎片云的特征。因此,开发了一种分析模型,用于表征铝球形弹丸在铝板上的超高速冲击所产生的穿透和跳弹碎片云。该模型采用法向和斜向冲击波理论来表征穿透和跳弹过程。获得了质心轨迹的预测结果以及穿透和跳弹碎片云的超前速度,并将其与数值和实验结果进行了比较。

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