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Characterization of light flash signatures using optical-fiber pyrometer detectors during hypervelocity impact

机译:在超高速撞击过程中使用光纤高温计探测器表征闪光信号

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摘要

Impact light flash is an intense light flash released when a target is impacted by a hypervelocity projectile. Light flash is caused by emissions from a jet of shocked material which is thrown from the impact site. Impact light flash phenomenology is now being considered for applications where remote diagnostics are required to observe and diagnose impacts on satellites and spacecraft. Additionally, this phenomena and remote diagnostics are under consideration for deep space exploration and missile defense applications. Currently, optical signatures created from hypervelocity impact can be utilized as the basis for detectors (spectrometers, pyrometers), which characterize the material composition and temperature. To establish this capability technically in the laboratory, we have conducted a series of experiments on a two-stage light gas gun at impact velocities ranging from 1.96 to 4.21 km/s. The focus of this work is to develop a flash signatures collected methods for use as a reliable light flash, and late time radiating evolution to characterize material behavior in the shocked and expanding state; ascertain scaling of light flash with impact velocity, and determine the temperature of the impact flash resulting from radiating emissions when photomultiplier tube (PMT) are used in conjunction with narrow band pass filtering at specific wavelengths as a pyrometer. The results of these experiments are discussed in detail using natural dolomite target.
机译:撞击闪光灯是当目标受到超高速弹丸撞击时释放的强光闪光灯。闪光是由撞击部位喷射的冲击材料产生的。现在,对于需要进行远程诊断以观察和诊断对卫星和航天器的影响的应用,正在考虑使用撞击灯闪光现象学。此外,这种现象和远程诊断正在考虑用于深空探索和导弹防御应用。当前,由超高速撞击产生的光学信号可以用作检测器(光谱仪,高温计)的基础,该检测器表征材料的成分和温度。为了从技术上在实验室中建立这种能力,我们对两级轻型气枪进行了一系列实验,冲击速度为1.96至4.21 km / s。这项工作的重点是开发一种收集闪光特征的方法,以用作可靠的闪光,并在后期辐射演化过程中表征在震动和膨胀状态下的材料行为。当光电倍增管(PMT)与特定波长的窄带通滤作为高温计结合使用时,确定闪光的比例随冲击速度变化,并确定由辐射发射引起的冲击闪光的温度。使用天然白云石靶材详细讨论了这些实验的结果。

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