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Research on stability of lunar lander soft landing based on flexible models

机译:基于柔性模型的月球着陆器软着陆稳定性研究

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The influence of flexible body and legs of lander, plastic deformation of lunar regolith on landing impact performance of lander is rarely researched, and literatures about using transient dynamics to analysis soft landing impact performance of lunar lander are also less. In this paper, a new idea and method for research on landing impact performance is presented. Flexible models and transient dynamics are combined to research soft landing impact performance of lunar lander. Firstly flexible models of lunar lander and lunar regolith were built using MSC.PATRAN, and the transient dynamics simulation software MSC.DYTRAN was used to simulate and research the landing impact performance of lunar lander soft landing along uphill. The research results show that the actual landing conditions of lunar lander are simulated more realistic by using flexible models and transient dynamics method together. When lunar lander's four legs land along uphill terrain non-symmetrically, landing impact load of the lunar lander is the least and energy absorption efficiency of the lander's buffering is the highest.
机译:很少研究着陆器的柔性机体和腿,月球巨石的塑性变形对着陆器着陆撞击性能的影响,有关使用瞬态动力学分析月球着陆器软着陆撞击性能的文献也很少。本文提出了一种新的着陆冲击性能研究思路和方法。结合灵活的模型和瞬态动力学来研究月球着陆器的软着陆撞击性能。首先使用MSC.PATRAN建立了月球着陆器和月球巨石的柔性模型,并使用瞬态动力学仿真软件MSC.DYTRAN来模拟和研究月球着陆器在软着陆时的着陆撞击性能。研究结果表明,结合使用弹性模型和瞬态动力学方法,可以更真实地模拟月球着陆器的实际着陆情况。当月球着陆器的四腿非对称地沿上坡地形着陆时,月球着陆器的着陆冲击载荷最小,而着陆器缓冲的能量吸收效率最高。

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