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首页> 外文期刊>Review of Scientific Instruments >Thrust stand for vertically oriented electric propulsion performance evaluation
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Thrust stand for vertically oriented electric propulsion performance evaluation

机译:推力架用于垂直方向的电力推进性能评估

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A variation of a hanging pendulum thrust stand capable of measuring the performance of an electric thruster operating in the vertical orientation is presented. The vertical orientation of the thruster dictates that the thruster must be horizontally offset from the pendulum pivot arm, necessitating the use of a counterweight system to provide a neutrally stable system. Motion of the pendulum arm is transferred through a balance mechanism to a secondary arm on which deflection is measured. A noncontact light-based transducer is used to measure displacement of the secondary beam. The members experience very little friction, rotating on twisting torsional pivots with oscillatory motion attenuated by a passive, eddy-current damper. Displacement is calibrated using an in situ thrust calibration system. Thermal management and self-leveling systems are incorporated to mitigate thermal and mechanical drifts. Gravitational force and torsional spring constants associated with flexure pivots provide restoring moments. An analysis of the design indicates that the thrust measurement range spans roughly four decades, with the stand capable of measuring thrust up to 12 N for a 200 kg thruster and up to approximately 800 mN for a 10 kg thruster. Data obtained from calibration tests performed using a 26.8 lbm simulated thruster indicated a resolution of 1 mN on 100 mN level thrusts, while those tests conducted on a 200 lbm thruster yielded a resolution of roughly 2.5 mN at thrust levels of 0.5 N and greater. © 2010 American Institute of Physics Article Outline INTRODUCTION VERTICAL THRUST STAND DESIGN Balance mechanism Displacement sensing Damping Level control Thermal management Thruster power feeds In situ thrust calibration Data acquisition and control system RESULTS OF THRUST STAND CALIBRATION CONCLUSIONS
机译:提出了一种悬挂摆式推力架的变型,其能够测量在垂直方向上运行的电动推进器的性能。推进器的垂直方向决定了推进器必须与摆式枢转臂水平偏移,因此必须使用配重系统来提供中立的稳定系统。摆臂的运动通过平衡机构传递到次级臂,在次级臂上测量挠度。非接触式基于光的换能器用于测量次级光束的位移。这些构件几乎没有摩擦,它们在扭转的扭转枢轴上旋转,并通过被动的涡流阻尼器减弱了振荡运动。位移是使用原位推力校准系统进行校准的。集成了热量管理和自调平系统,以减轻热量和机械漂移。与挠性枢轴相关的重力和扭转弹簧常数可提供恢复力矩。对设计的分析表明,推力测量范围跨越了大约四个十年,对于200千克推进器,该支架能够测量的推力高达12 N,而对于10千克推进器,则能够测量高达800 mN的推力。使用26.8 lbm模拟推进器进行的校准测试获得的数据表明,在100 mN推力下的分辨率为1 mN,而在200 lbm推进器上进行的测试在0.5 N或更高的推力水平下的分辨率约为2.5 mN。 ©2010美国物理研究所文章概述简介垂直推力架设计平衡机构位移传感阻尼液位控制热管理推力器动力源推力原点校准数据采集和控制系统推力架校准结果结论

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