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Magnetically-levitated thrust stand for evaluating 6-component thrust vector of 1-N class onboard propulsion devices

机译:用于评估1-N类车载推进装置的6分量推力向量的磁性悬浮的推力支架

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This paper describes a magnetically-levitating thrust stand for the measurement of the six-component thrust vector of onboard propulsion devices. Conventionally, the thrusts of such devices that yield small thrust-to-weight ratios have been measured using pendulums, which can reduce the influence of gravitational force on the thrust measurement. The conventional thrust stand successfully measures the thrust with enhanced accuracy; however, the thrust vector is difficult to evaluate as the thrust vector measurement requires a higher degree of freedom for the pendulum. Hence, the authors propose the use of magnetic levitation of the thruster using voice coil motors, which have the appropriate characteristics for small thrust evaluation: linearity and responsiveness. A 1-N class prototype was designed to show that the six-component thrust vector can be measured using the magnetically-levitating thrust stand. The prototype evaluated 0.5-N class six-component thrusts, whereas the conventional pendulum-type thrust stands were unable to determine the thrust vectors. Moreover, the calibration shows that the thrust stand accurately evaluated the reference thrust vector with a coefficient of determination higher than 0.988. (C) 2020 The Authors. Published by Elsevier Masson SAS.
机译:本文介绍了用于测量船上推进装置的六分量推力载体的磁悬浮推力支架。传统上,使用摆锤测量产生小推力比率的这些装置的推力,这可以减少重力对推力测量的影响。传统的推力站成功地以提高的准确度测量推力;然而,随着推力向量测量需要更高的摆动自由度,难以评估推力载体。因此,作者提出了使用语音线圈电机使用推进器的磁悬浮,这具有小推力评估的适当特征:线性和响应性。设计了一个1-n类原型,以表明可以使用磁悬浮推力支架测量六组件推力矢量。原型评估了0.5-n级六组件推力,而传统的摆型推力支架不能确定推力向量。此外,校准表明推力支架准确地评估了具有高于0.988的测定系数的参考推力向量。 (c)2020作者。由Elsevier Masson SA出版。

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