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181.
《中国航空学报》2021,34(5):79-92
In this paper, the confinement characteristic of primary electrons in the non-axisymmetric discharge chamber of annular ion thruster is investigated by a three-dimensional (3D) non-self-consistent particle tracking model with Monte Carlo Collision (MCC) method. The results show that: The density of primary electrons upstream of ion optics on cathode axis is about 5–50 times higher than that of the other side, which means that the density of primary electrons is obviously non-axisymmetric. The channel width has a significant effect on the average density and uniformity of primary electrons. The average density can be increased by nearly 1.5 times under the appropriate channel width, meanwhile, the variance of density distribution can be reduced by more than 2 times. This is because that increasing the channel width can improve the average confinement length of primary electrons greatly. Furthermore, there is an infection point in the increase of primary electron average confinement length with the channel width, which caused by the significant change of magnetic field structure. Under the case after the inflection point, primary electron mainly (more than 50%) moves to the channel center, which makes the average confinement length of primary electrons and their number in the discharge chamber increase largely. 相似文献
182.
LIPS-300离子电推力器工作时产生的大量热耗会严重影响其工作性能,因此推力器的热控设计和在轨温度预计是推力器设计的关键技术之一。文章首先提出了地球静止轨道LIPS-300离子电推力器热设计,建立了离子电推力器热分析有限元模型。然后,针对典型的地球静止轨道位保工况开展了LIPS-300离子电推力器的在轨热分析,得到了LIPS-300离子电推力器重点部件在轨工作时的温度预计:下极靴、阳极筒、屏栅、下磁钢为主要的高温位置,且下磁钢温度可能超出材料温度上限。最后,基于热分析的结果结合离子电推力器的特点提出适当增加外壳散热面积是离子电推力器优化设计的有效方向,而增强阳极筒、极靴与屏栅筒间的内部换热是无效的设计优化方向。 相似文献
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184.
空间辐射场中高能Fe离子微剂量学分析 总被引:2,自引:0,他引:2
Fe离子是空间辐射场中备受关注的重离子之一,其等效剂量、生物效应等构成载人航天的主要危险。文章通过计算等效组织正比计数器对高能Fe离子的响应,模拟其在等效组织中的线能微剂量学量。计算得到的结果与实验结果基本符合,偏差不超过10%;在此基础上,考虑TEPC(组织等效正比计数器)对银河宇宙射线中能量范围在90~1000 MeV/u的Fe离子的响应,得到其线能量为80~600keV/μm,最大值在100~150keV/μm之间;通过公式计算得到100~200keV/μm线能量对应的射线品质因数高于25,将产生相当高的生物效应。 相似文献
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微纳卫星指采用现代技术、微电子技术、机械技术等设计制造的具有高性价比的现代微小卫星。因其具有发射成本低廉、应用灵活等特点,微纳卫星受到各国的广泛关注。微纳卫星动力系统具有良好的发展前景。本文综述了微纳卫星动力系统的发展现状,针对自中和射频离子推力器、离子液体推力器、碳纳米管阵列推力器、石墨烯材料光驱动等几种新型且有望用于微纳卫星推进的方案,简要说明其工作原理,并分析其核心技术以及性能优势。给出了发展建议:提升总冲、功耗、调节精度等参数是微纳卫星动力系统未来主要的发展方向;研发工作中需要重点关注结构工艺、离子束流中和等关键技术。 相似文献
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189.
Crack monitoring method based on Cu coating sensor and electrical potential technique for metal structure 总被引:1,自引:0,他引:1
Advanced crack monitoring technique is the cornerstone of aircraft structural health monitoring.To achieve real-time crack monitoring of aircraft metal structures in the course of service,a new crack monitoring method is proposed based on Cu coating sensor and electrical potential difference principle.Firstly,insulation treatment process was used to prepare a dielectric layer on structural substrate,such as an anodizing layer on 2A12-T4 aluminum alloy substrate,and then a Cu coating crack monitoring sensor was deposited on the structure fatigue critical parts by pulsed bias arc ion plating technology.Secondly,the damage consistency of the Cu coating sensor and2A12-T4 aluminum alloy substrate was investigated by static tensile experiment and fatigue test.The results show that strain values of the coating sensor and the 2A12-T4 aluminum alloy substrate measured by strain gauges are highly coincident in static tensile experiment and the sensor has excellent fatigue damage consistency with the substrate.Thirdly,the fatigue performance discrepancy between samples with the coating sensor and original samples was investigated.The result shows that there is no obvious negative influence on the fatigue performance of the 2A12-T4 aluminum alloy after preparing the Cu coating sensor on its surface.Finally,crack monitoring experiment was carried out with the Cu coating sensor.The experimental results indicate that the sensor is sensitive to crack,and crack origination and propagation can be monitored effectively through analyzing the change of electrical potential values of the coating sensor. 相似文献
190.
《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2020,65(1):684-692
The propagating cylindrical shock dust ion wave (CDISW) in dusty four component plasma with three viscous component (ion and two polarity charged grains) has been introduced. The three dimensional (3D) Cylindrical Burgers (CB) equation is derived. The propagating cylindrical shock characteristics are established to becomes a very significantly improved by the supports of electron nonthermality, ion and negative (positive) kinematics viscosity coefficients. Furthermore, the shock strength depends on cylindrical directions. The obtained results may be profitable in understanding both the laboratory and space applications of plasmas. 相似文献