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21.
空间翻滚非合作目标消旋技术发展综述 总被引:5,自引:5,他引:0
大量残存太空的空间垃圾对在轨运行航天器的安全构成严重威胁,对其进行主动移除已迫在眉睫。火箭末级、失效卫星等非合作目标已失去姿态调整能力,且长期在失控状态下运行,受太阳光压、重力梯度等摄动力矩及失效前自身残余角动量等因素的影响往往会出现翻滚运动。对翻滚非合作目标直接捕获存在碰撞风险,为降低风险系数采取消旋后再捕获是较为合适的方式。在对火箭末级、失效卫星等典型非合作目标运动形式及消旋过程进行分析的基础上,综述了目前国内外所提出的接触式及非接触式消旋方法,并对非合作目标翻滚运动测量及动力学参数辨识和消旋控制这两项消旋共性关键技术进行了归纳总结。本综述将为中国空间碎片主动清除技术的发展提供有益参考。 相似文献
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空间碎片的清除策略是实现地基激光主动清除厘米级空间碎片的关键技术之一.为了制定有效的清除策略,首先对在碎片轨道不同位置上速度分量的变化对其新轨道近地点高度的影响进行了研究,指明了3种不同速度分量变化的降轨效果的差异;然后结合地基激光的几何和物理特性,推导了确定有效变轨区域的约束条件;最后据此提出了地基激光以连续脉冲变轨方式清除空间碎片的通用策略,并通过仿真实验,实现了利用地基激光清除空间碎片的目的,也验证了该清除策略的有效性. 相似文献
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针对典型的镍基高温合金材料GH4169开展珩磨试验,研究了主轴转速、往复速度、每往复进给量、油石粒径对材料去除率的影响规律。结果表明:主轴转速对材料去除率影响较小,其余三因素均对材料去除率有显著影响,其中每往复进给量和油石粒径的影响最为显著,且材料去除率与三者均呈现正相关关系。进行多元线性回归拟合出经验公式。同时还发现,适当提高网纹交叉角可以提高珩磨材料去除率。对加工余量一定且粗糙度要较高的内孔珩磨进行了工艺优化,实现了更高的加工效率。 相似文献
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Active exploration of the space leads to growth of a near-Earth space pollution. The frequency of the registered collisions of space debris with functional satellites highly increased during last 10 years. As a rule a large space debris can be observed from the Earth and catalogued, then it is possible to avoid collision with the active spacecraft. However every large debris is a potential source of a numerous small debris particles. To reduce debris population in the near Earth space the large debris should be removed from working orbits. The active debris removal technique is considered that intend to use a tethered orbital transfer vehicle, or a space tug attached by a tether to the space debris. This paper focuses on the dynamics of the space debris with flexible appendages. Mathematical model of the system is derived using the Lagrange formalism. Several numerical examples are presented to illustrate the mutual influence of the oscillations of flexible appendages and the oscillations of a tether. It is shown that flexible appendages can have a significant influence on the attitude motion of the space debris and the safety of the transportation process. 相似文献
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Removing orbital debris with lasers 总被引:2,自引:0,他引:2
Claude R. Phipps Kevin L. Baker Stephen B. Libby Duane A. Liedahl Scot S. Olivier Lyn D. Pleasance Alexander Rubenchik James E. Trebes E. Victor George Bogdan Marcovici James P. Reilly Michael T. Valley 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2012
Orbital debris in low Earth orbit (LEO) are now sufficiently dense that the use of LEO space is threatened by runaway collision cascading. A problem predicted more than thirty years ago, the threat from debris larger than about 1 cm demands serious attention. A promising proposed solution uses a high power pulsed laser system on the Earth to make plasma jets on the objects, slowing them slightly, and causing them to re-enter and burn up in the atmosphere. In this paper, we reassess this approach in light of recent advances in low-cost, light-weight modular design for large mirrors, calculations of laser-induced orbit changes and in design of repetitive, multi-kilojoules lasers, that build on inertial fusion research. These advances now suggest that laser orbital debris removal (LODR) is the most cost-effective way to mitigate the debris problem. No other solutions have been proposed that address the whole problem of large and small debris. A LODR system will have multiple uses beyond debris removal. International cooperation will be essential for building and operating such a system. 相似文献
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《中国航空学报》2021,34(4):540-567
Continuous fiber reinforced SiC ceramic matrix composites (FRCMCs-SiC) are currently the preferred material for hot section components, safety–critical components and braking components (in the aerospace, energy, transportation) with high value, and have triggered the demand for machining. However, the high brittleness, anisotropy, and heterogeneity of materials bring great challenges to machining, due to high mechanical and thermal loads, severe tool wear, and poor machining quality. With the increasing demand of FRCMCs-SiC parts, high-quality and high-efficient machining has become a hot issue. This review paper provides a detailed literature survey on the machining of FRCMCs-SiC. The material removal mechanism, defect form, and interfacial mechanical properties of FRCMCs-SiC were summarized. The machining processes of FRCMCs-SiC were introduced, and their respective advantages and disadvantages were compared. Given the low machinability (high hardness, high brittleness, anisotropy, and heterogeneity) of FRCMCs-SiC, preliminary experiments have proved that ultrasonic-assisted machining and laser-assisted machining have shown unique advantages in reducing force and tool wear, improving machining quality and machining efficiency. The machined surface integrity was discussed, the influence of process parameters on the machined surface quality was analyzed, and the machining defects of FRCMCs-SiC were summarized. But for FRCMCs-SiC, the existing quantitative evaluation of the machined surface integrity was weak and unsystematic. 相似文献
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考虑铣削过程中的自激振动和强迫振动,基于延迟微分方程的稳定性判定准则和强迫振动共振区的半带宽理论,提出一种铣削系统稳定性动态优化新方法.该方法通过选择切削参数和修改系统结构参数,在保证加工表面精度的前提下,获得大的稳定性材料去除率.其目标函数是材料去除率,约束条件是铣削过程稳定且非共振,动态优化变量是铣削系统的切削参数和结构参数.优化程序被阐明,实例分析结果显示,系统在稳定非共振条件下,加工时的材料去除率相比于优化前提高了18.86%.另外,为获得最大的稳定材料去除率和较好的表面精度,在铣削系统优化过程中,应同时考虑颤振稳定性和共振的影响. 相似文献
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造型细节和离地间隙对轿车气动性能的影响 总被引:2,自引:1,他引:1
应用FLUENT软件,分别对汽车造型的不同处理方法、发动机安放位置、离地间隙、发动机舱冷却风的排出模式进行气动性能仿真.结果表明:汽车造型的处理方法中以加车轮对气动性能影响最大,发动机存在最佳的安放位置,不同的离地间隙对仿真结果影响很大,选择发动机舱冷却风的排出模式要综合考虑阻力系数和升力系数. 相似文献