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Drop Test Simulation for An Aircraft Landing Gear Via Multi-Body Approach

机译:通过多体方法降落试验模拟飞机着陆齿轮

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This work deals with the effectiveness of a multi-body approach for the study of the dynamic behavior of a fixed landing gear, especially the research project concerns the drop tests of the AP.68 TP-300 aircraft. First, the Digital Mock-up of the of landing gear system in a C.A.D. software has been created, then the experimental structural stiffness of the leaf spring has been validated using the FEM tools MSC. Patran/Nastran. Finally, the entire model has been imported in MSC.ADAMS environment and, according to the certifying regulations, several multi-body simulations have been performed varying the heights of fall and the weights of the system. The results have shown a good correlation between numerical and experimental tests, thus demonstrating the potential of a multi-body approach. Future development of the present activity will probably be an application of the methodology, herein validated, to other cases for a more extensive validation of its predictive power and development of virtual certification procedures.
机译:这项工作涉及多体方法的有效性,用于研究固定着陆齿轮的动态行为,特别是研究项目涉及AP.68 TP-300飞机的跌落试验。首先,在C.D中的着陆齿轮系统的数字模拟。已经创建了软件,然后使用FEM工具MSC验证了叶弹簧的实验结构刚度。帕特曼/南斯坦。最后,整个模型已在MSC.ADAMS环境中导入,并根据认证法规,已经进行了几种多体模拟,改变了下降的高度和系统的重量。结果表明了数值和实验测试之间的良好相关性,从而展示了多体方法的潜力。本活动的未来发展可能是该方法的应用,此处验证,验证到其他案例,以更广泛地验证其预测力和虚拟认证程序的发展。

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