用无线电干涉仪测量击头的位移和速度

V. Balandin, V. Parkhachev
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引用次数: 0

摘要

研究固体和变形体与各种物理性质障碍物的碰撞相互作用需要发展记录相互作用过程参数的实验方法。在固体碰撞相互作用的实验研究中,通常的做法是测量击打者的位移作为时间的函数,以及它们的速度和减速。为了确定打击器的位移和速度,提出了一种记录其后端位移的无线电干涉方法。与基于高速拍摄和脉冲x射线摄影的配准方法相比,该方法使用毫米范围的无线电干涉仪在大范围的位移值范围内提供了连续高精度的瞄准器后端的位移配准。为了验证该方法的有效性,进行了一系列的实验,记录了从20mm直径的气枪中发射的铝合金圆柱射手的运动。此外,还使用高速摄像监控了前锋的位移。使用这两种方法的测量结果在测量误差范围内不同。根据上述实验的结果,可以得出结论,在弹道实验中,用毫米范围的无线电干涉仪测定击头的位移和速度的方法,可以以安全的精度测量几乎连续的大位移(100毫米或更大)。本方法可用于测量与各种物理性质的障碍物(金属、陶瓷、土壤、混凝土等)相互作用的打击器后端的位移和速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MEASURING DISPLACEMENT AND VELOCITY OF A STRIKER USING A RADIO-INTERFEROMETER
Investigating impact interaction of solid and deformed bodies with obstacles of various physical natures requires developing experimental methodologies of registering the parameters of the interaction process. In experimental investigations of impact interaction of solids, it is common practice to measure displacement of strikers as a function of time, as well as their velocity and deceleration. To determine the displacement and velocity of a striker, a radio-interferometric methodology of registering the displacement of its rear end is proposed. In contrast with the registration methods based on high-speed filming and pulsed X-ray photography, the method using a millimeter-range radio-interferometer provides continuous high-accuracy registering of the displacement of the rear end of a striker in a wide range of displacement values. To test the effectiveness of the methodology, a series of experiments have been conducted on registering the motion of a cylindrical striker of an aluminum alloy, fired from a 20mm-dia gas gun. The displacement of the striker was also monitored using high-speed filming. The results of measuring using the two methodologies differ within the limits of the error of measurement. Based on the results of the above experiments, it has been concluded that the methodology of determining the displacement and velocity of strikers in a ballistic experiment using a mm-range radio-interferometer makes it possible to measure practically continuously large displacements (100 mm and larger) to a safe accuracy. The present methodology can be used for measuring the displacement and velocity of the rear end of a striker interacting with obstacles of various physical natures (metals, ceramics, soils, concretes, etc.).
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