会议专题

Static and Dynamic Loading Analysis of Light-Sport Aircraft Landing Gear

This paper examined the critical loading condition of a light-sport aircrafts main landing gear during the impact loading condition. The new category airplane was established by the FAA in 2004. The light-sport aircraft has great market demand for personnel entertainment purpose and regional transportation. The main object of this research was to establish a static and dynamic loading simulation model for the aluminum alloy landing gear of a light sport aircraft. This work also examined the critical loading parameters of the main landing gear, including the maximum take-off weight and maximum stall speed. The analysis was performed using ANSYS and LS-DYNA to establish the finite element model after simplifying the geometric characteristics and verifying the results by energy conservation, hourglassing energy, and sliding energy. The study tested aluminum plates with a thickness from 15~25 mm. The results showed all the samples could sustain the required loading condition, except for the thickness of 15mm that failed under impact loading. The simulation model provides a cost-saving process compared to a real crashworthiness drop test to test the main landing gears compliance with regulations.

Pu-Woei Chen Chan-Ming Chen Quen-Yaw Sheen Tai-Sing Sun

Department of Aerospace Engineering, Tamkang University, 151 Ying-Chuan Road, Tamsui 25137, Taiwan Department of Information Management, Ling Tung University, 1 Ling Tung Road, Taichung 40852,Taiwan Department of Aviation Services and Management, China University of Science and Technology, 245, Sec

国际会议

The 6th International Conference on Physical and Numerical Simulation of Materials Processing(第六届材料与热加工物理模拟及数值模拟国际学术会议 ICPNS 2010)

桂林

英文

1-5

2010-11-16(万方平台首次上网日期,不代表论文的发表时间)