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Momentum Flux Measuring Instrument for Neutral and Charged Particle Flows

机译:中性和带电粒子流的动量通量测量仪

摘要

An instrument to measure the momentum flux (total pressure) of plasma and neutral particle jets onto a surface has been developed. While this instrument was developed for magnetized plasmas, the concept works for non-magnetized plasmas as well. We have measured forces as small as 10(exp -4) Newtons on a surface immersed in the plasma where small forces are due to ionic and neutral particles with kinetic energies on the order of a few eV impacting the surface. This instrument, a force sensor, uses a target plate (surface) that is immersed in the plasma and connected to one end of an alumina rod while the opposite end of the alumina rod is mechanically connected to a titanium beam on which four strain gauges are mounted. The force on the target generates torque causing strain in the beam. The resulting strain measurements can be correlated to a force on the target plate. The alumina rod electrically and thermally isolates the target plate from the strain gauge beam and allows the strain gauges to be located out of the plasma flow while also serving as a moment arm of several inches to increase the strain in the beam at the strain gauge location. These force measurements correspond directly to momentum flux and may be used with known plasma conditions to place boundaries on the kinetic energies of the plasma and neutral particles. The force measurements may also be used to infer thrust produced by a plasma propulsive device. Stainless steel, titanium, molybdenum, and aluminum flat target plates have been used. Momentum flux measurements of H2, D2, He, and Ar plasmas produced in a magnetized plasma device have been performed.
机译:已经开发出一种测量等离子体和中性粒子射流到表面上的动量通量(总压力)的仪器。虽然该仪器是为磁化等离子体开发的,但该概念也适用于非磁化等离子体。我们已经测量到浸入等离子体中的表面上的力小至10(exp -4)牛顿,其中小力是由于离子和中性粒子以及动能影响表面的电子能量大约为几个eV。该仪器是一种力传感器,使用的靶板(表面)浸入等离子体中并连接到氧化铝棒的一端,而氧化铝棒的另一端则机械连接到钛梁上,钛梁上装有四个应变仪已安装。施加在目标上的力会产生扭矩,从而导致光束变形。所得的应变测量结果可以与目标板上的力相关。氧化铝棒将靶板与应变片束电隔离并热隔离,并允许应变片位于等离子流之外,同时还充当几英寸的力矩臂,以增加应变片位置处束流中的应变。这些力的测量值直接对应于动量通量,并且可以与已知的等离子体条件一起使用,以在等离子体和中性粒子的动能上设置边界。力测量结果还可用于推断由等离子体推进装置产生的推力。使用了不锈钢,钛,钼和铝的扁平靶板。已经对在磁化等离子体装置中产生的H2,D2,He和Ar等离子体的动量进行了测量。

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