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Design of a Pendulum Based Micro-Thrust Measuring Device Application to Plasma Microthrusters

机译:基于摆锤的微推力测量装置应用于等离子体微型器材的设计

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Pulsed laser plasma propulsion is an emerging technology in the aerospace domain. Throughout years, many researchers were investing in this topic in order to enhance and optimize the thrust. Plasma propulsion is based on the laser ablation process, where a highly energized laser beam hits the surface of a material and causes phase changes until reaching the plasma state which will expand and generate a thrust and a corresponding displacement on the ablated material. The main challenge in this type of applications is the quantification of the micro-thrust generated by the plasma plume during a very short time. The aim of this paper is to present a new pendulum based design with a resolution of $0.981mu N$ and an accuracy of 18%. The nano-displacements induced by micro-thrusts are measured via an interferometer device and processed using a computational image processing algorithm. The device is calibrated by applying a known force using a calibrated force application device, simulating in this way the plasma ablation thrust.
机译:脉冲激光等离子体推进是航空域中的新兴技术。在整个年内,许多研究人员正在投资本主题,以提高和优化推力。等离子体推进基于激光烧蚀过程,其中高通电的激光束撞击材料的表面并导致相位变化,直到达到将膨胀和产生燃烧材料上的推力和相应的位移的等离子体状态。这种应用中的主要挑战是在很短的时间内定量等离子体羽流产生的微推力。本文的目的是提出一种具有分辨率的新摆动设计 $ 0.981 mu n $ 准确性为18%。通过干涉仪装置测量由微推力诱导的​​纳米位移并使用计算图像处理算法进行处理。通过使用校准的力施加装置施加已知的力来校准该装置,以这种方式模拟等离子体消融推力。

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