Research on the Stability and Bifurcation Characteristics of a Landing Gear Shimming Dynamics System

Author:

Ruan Shuang1ORCID,Zhang Ming2,Yang Shaofei2,Hu Xiaohang2,Nie Hong1

Affiliation:

1. State Key Laboratory of Mechanics and Control for Aerospace Structures, College of Aerospace Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China

2. Key Laboratory of Fundamental Science for National Defense-Advanced Design Technology of Flight Vehicle, College of Aerospace Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China

Abstract

A dynamic model is established to investigate the shimmy instability of a landing gear system, considering the influence of nonlinear damping. The stability criterion is utilized to determine the critical speed at which the landing gear system becomes unstable. The central manifold theorem and canonical method are employed to simplify the dynamic model of the landing gear. The first Lyapunov coefficient of the system is theoretically derived and verified using numerical simulation. Further investigation on the Hopf bifurcation characteristics and stability of the shimmy in the landing gear system is conducted. The results indicate that above a certain threshold speed, with a tire stability distance greater than half the tire length in contact with the ground plus the slack length, the aircraft remains stable during taxiing. At critical speeds, a shimmy system with higher-order nonlinear damping will undergo supercritical Hopf bifurcation. Quantitative analysis suggests an increase in the linear damping coefficient within a range that ensures a stability margin to mitigate undesired oscillation, while the nonlinear damping coefficient should be designed within a reasonable range to decrease the amplitude of the limit cycle.

Funder

Aeronautical Science Foundation of China

Fundamental Research Funds for the Central Universities

Publisher

MDPI AG

Reference24 articles.

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5. Tartaruga, I., Lowenberg, M.H., Cooper, J.E., Sartor, P., and Lemmens, Y. (2016, January 4–8). Bifurcation analysis of a nose landing gear system. Proceedings of the 15th Dynamics Specialists Conference, San Diego, CA, USA.

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