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A momentum flux measuring instrument with the variable-range for exhaust plume

机译:具有用于排气羽流量的可变范围的动量磁通量测量仪器

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摘要

A momentum flux measuring instrument (MFMI), which ranges from 1 mN∼300 N, is designed to measure the parameters related to the momentum flux of exhaust plume of attitude and orbit control thrusters covered electric and chemical thrusters. A MFMI with the variable-range provides an efficient and economy way to study the exhaust plume of both electric and chemical thrusters. The flexural pivots, replaceable strain gauge, replaceable target plate, and force arm with the variable length make it possible. The designed MFMI with the non-displacement measurement can reduce the influence of pipelines and test lines, especially the elastic force and friction due to displacement. The designed MFMI system with the range of 0∼100 mN and 0∼15 N was calibrated separately. The target indirect measurement method is a simple and economical option for measuring the thrust of electric thrusters, and is employed to measure the thrust of the LIPS-200 ion thruster using the designed MFMI. Research indicates that the sputtering contributes to the momentum transfer of plasma-surface interactions. In addition, the high-speed charged ions from the thruster will experience a charge-exchange (CEX) collision with the slow neutral background. Therefore, the influence of the sputtering and CEX on target indirect measurement method is derived in detail, and then the measured thrust is corrected. The measured average thrust, which is 40.1 mN, demonstrates that the designed MFMI is effective. The designed MFMI can also be employed as a thrust stand by directly mounting the thrusters on torsional arm, and a maximum of three thrusters can be installed on the MFMI at the same time.
机译:甲动量通量测量仪(MFMI),它从1 mN~300 N的范围,被设计用来测量覆盖电和化学推进器相关的姿态和轨道控制推进器的排气羽流的动量通量的参数。甲MFMI与可变范围提供了一个高效和经济的方法来研究电场和化学推进的排气羽烟。挠曲支点,可更换的应变计,可替换的目标板,以及与可变长度使得能够力臂。所设计的MFMI与非位移测量可以管道和测试线的影响,特别是弹性力和摩擦力降低由于位移。所设计的系统MFMI用的0〜100 mN与0〜15 n中的范围是单独校准。目标间接测量方法是用于测量电推进器的推力的简单且经济的选择,并且被用来测量所述LIPS-200离子的推力推进器使用设计MFMI。研究表明,溅射有助于等离子体表面相互作用的动量传递。此外,高速带电离子从推进器将经历与缓慢的中性背景电荷交换(CEX)碰撞。因此,溅射和CEX目标间接测量方法的影响被衍生详细,然后所测量的推力被校正。测量的平均推力,这是40.1 MN,证明了设计MFMI是有效的。所设计的MFMI也可以通过直接安装在扭转臂的推进器被用作推力支架,和最多三个推进器可在MFMI同时安装。

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