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OPTIMIZATION PRINCIPLE OF THE PROTECTIVE ATMOSPHERE FOR PINS IN HYDRODYNAMIC MEASUREMENTS

机译:水动力测量销的保护气氛优化原理

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In order to study the protective effects of different gases on self-shortening pins, three typical gases (helium, argon and methane) were investigated. Our experiments indicated that both helium and methane could more effectively protect pins than argon. On the basis of theory of normal shock waves for argon and helium, and one-dimensional fluid dynamics theory with chemical reactive sources for methane and the state parameters were calculated when the velocities of flyers impacting these gases covering the range from 3km/s to 8km/s. By comparison of the parameters, the experimental phenomena were explained, and an optimization principle was suggested to select the protective atmosphere of pins.
机译:为了研究不同气体对自缩销的保护作用,研究了三种典型的气体(氦气,氩气和甲烷)。我们的实验表明,氦气和甲烷两个比氩气更有效地保护针脚。根据氩气和氦的正常冲击波理论,当施加覆盖3km / s至8km的范围的传单的速度时,计算了与甲烷的化学反应源的一维流体动力学理论。 / s。通过比较参数,解释了实验现象,建议优化原理选择销的保护气氛。

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