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Research on the Ionization Degree of the Plasma Generated by 2A12 Aluminum Target During Hypervelocity Impact

机译:2A12铝靶在超高速撞击过程中产生的等离子体电离度的研究

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The theories of impact dynamics and adiabatic temperature change were adopted to investigate the ionization degree of the plasma generated by the 2A12 aluminum target during 2A12 aluminum projectile hypervelocity impact, and the radiant temperature was also estimated during hypervelocity impact. A two-stage light gas gun combined with the plasma characteristic parameters measured by a triple Langmuir probe was applied, and then the fitting relationship between the plasma ionization degree and the theoretical impact temperature as well as the fitting relationship between the maximum electron density and impact velocity were obtained with the aid of the theoretical derivation of the plasma ionization degree and the electron temperature and electron density extracted from experiments.
机译:采用冲击动力学和绝热温度变化理论研究了2A12铝弹丸超高速撞击过程中2A12铝靶产生的等离子体的电离度,并估算了超高速撞击过程中的辐射温度。应用两级轻型气枪,结合三重朗缪尔探针测得的等离子体特征参数,然后进行等离子体电离度与理论冲击温度之间的拟合关系以及最大电子密度与冲击之间的拟合关系借助等离子电离度的理论推导以及从实验中提取的电子温度和电子密度来获得速度。

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