Improved Multi-Body Dynamic Simulation of Landing Gear Drop Test Incorporating Structural Flexibility and Bearing Contact

Wenbin Liu, Youshan Wang
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Abstract

The investigation of multi-body dynamics (MBD) modeling for landing gear drop tests is a hot topic in the realm of landing gear design. The current results were primarily focused on the multi-rigid body simulation or a simple multi-flexible body simulation, with little regard for the correctness of longitudinal loads and their experimental confirmation, particularly wheel–axle loads. Based on a genuine oleo-pneumatic landing gear drop test of a large civil aircraft, enhanced multi-body dynamics simulation research is carried out, considering the structural flexibility and bearing support by adopting flexible multi-bodies modeling and rigid-flex coupling contacts. When compared to the test data, which purposefully measured the longitudinal wheel–axle loads, the simulation results show that the loads, shock absorber compression, and shock absorber inner pressures are all within good agreement. Furthermore, the influence of structural stiffness and bearing contact was investigated by adjusting the model settings to confirm their importance.
结合结构挠性和轴承接触改进起落架跌落试验的多体动力学模拟
起落架落下试验的多体动力学(MBD)建模研究是起落架设计领域的一个热门话题。目前的研究成果主要集中于多刚体模拟或简单的多柔体模拟,很少考虑纵向载荷的正确性及其实验确认,尤其是轮轴载荷。基于某大型民用飞机的真实油气起落架跌落试验,采用柔性多体建模和刚柔耦合接触,考虑结构柔性和轴承支撑,开展了增强型多体动力学仿真研究。模拟结果表明,与特意测量轮轴纵向载荷的试验数据相比,载荷、减震器压缩量和减震器内压都有很好的一致性。此外,通过调整模型设置,研究了结构刚度和轴承接触的影响,以确认其重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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