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Air rudder mechanism dynamics considering two elements: Joint clearance and link flexibility

机译:考虑两个元素的空气舵机构动态:关节间隙和链接灵活性

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摘要

Both the impact phenomenon in the clearance revolute joint and the link deformation will influence the dynamics of the air rudder transmission mechanism, which could reduce the flight quality of an aircraft. Given the effect of the two elements, a feasible simulation method with two improvements of previous methods is proposed to analyze the dynamic characteristics of the mechanism. In previous studies, the parameters of the contact force model in multi-body dynamics software were generally determined by experience, which may cause uncertainty in the calculation precision of the contact force. Furthermore, it is difficult to solve for the elastic link deformation in the practical mechanism using the available analytical methods due to the complicated section of the link. In this paper, a Continuous contact force (CCF) model was proposed and embedded in the ADAMS by developing a routine of the CCF model. Then, the flexible model was obtained by ANSYS to obtain the elastic link deformation. The experimental results indicate that the proposed simulation method can be effectively applied to predict the dynamic behavior of the mechanism.
机译:间隙旋转关节的影响现象和链路变形都会影响空气舵传动机制的动态,这可以降低飞机的飞行质量。鉴于两个元件的效果,提出了一种可行的模拟方法,其具有先前方法的两种改进,以分析机制的动态特性。在先前的研究中,多体动力学软件中的接触力模型的参数通常通过经验确定,这可能导致接触力的计算精度的不确定性。此外,难以使用由于链路的复杂部分而在实际机构中以实际机构解决弹性链接变形。在本文中,通过开发CCF模型的常规,提出了连续接触力(CCF)模型并嵌入在ADAM中。然后,通过ANSY获得柔性模型以获得弹性链接变形。实验结果表明,可以有效地应用所提出的仿真方法来预测机构的动态行为。

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