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Wall-Propelled, In-Tube Propulsion with Repetitive-PulseLaser Ablation

机译:墙壁推进,带有重复性粉丝的管道推进器

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Proof-of-principle experiments of in-tube propulsion in which the propellant was supplied from the launch tube wall were conducted. The launch tube had a 25 mm x 25 mm square inner cross-section. A pair of opposing launch tube walls were made of polyacetal (POM), which was ablated using repetitive Transeversely-Excited Atmospheric (TEA) CO_2 laser pulses. The laser beam was sent through a ZnSe window at the tube bottom to the symmetric parabolic surfaces of the projectile, and focused onto the ablator surfaces. The momentum coupling coefficient was measured from a vertical launch trajectory. When the breech of the launch tube was plugged, a momentum coupling coefficient of 4 mN-s/J at least was obtained. Even when the breech was connected to a vacuum chamber at a pressure lower than 20 Pa, the projectile could be vertically launched with a constant momentum coupling coefficient of 0.14 mN-s/J, the value of which was the same order as that obtained by directly irradiating a laser pulse onto a POM ablator.
机译:进行了管道内推进剂的原理原则试验,其中推进剂从发射管壁供应。发射管具有25 mm x 25 mm的方形内横截面。一对相对的发射管壁由聚缩醛(POM)制成,其使用重复的Transeversey-Expited大气(TEA)CO_2激光脉冲烧蚀。激光束通过管底部的ZnSe窗口送到射弹的对称抛物面,并聚焦到消烧器表面上。从垂直发射轨迹测量动量耦合系数。当堵塞发射管的后膛时,至少获得4mN-S / J的动量耦合系数。即使当臀位在低于20Pa的压力下连接到真空室时,射弹可以垂直发射,其恒定的动量耦合系数为0.14mn-s / j,其值与通过的值相同直接照射激光脉冲到POM烧蚀器上。

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