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A MATHEMATICAL MODEL OF AN ACTIVE CONTROL LANDING GEAR FOR LOAD CONTROL DURING IMPACT AND ROLL-OUT

机译:作者:张莹莹,王汝传,王。,航空动力学报JOURNaL OF aEROspaCE pOWER一种主动控制着陆齿轮在冲击和滚动过程中的数学模型

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A mathematical model of an active control landing gear (ACOLAG) has been developed and programed for operation on a digital computer. The mathematical model includes theoretical subsonic aerodynamics; first-mode wing bending and torsional characteristics; oleo-pneumatic shock strut with fit and binding friction; closed-loop, series-hydraulic control; empirical tire force-deflection characteristics; antiskid braking; and sinusoidal or random runway roughness. The mathematical model was used to compute the loads and motions for a simulated vertical drop test and a simulated landing impact of a conventional (passive) main landing gear designed for a 2268-kg (5000-lbm) class airplane. Computations were also made for a simply modified version of the passive gear including a series-hydraulic active control system.nComparison of computed results for the passive gear with experimental data shows that the active control landing gear analysis is valid for predicting the loads and motions of an airplane during a symmetrical landing. Computed results for the series-hydraulic active control in con-junction with the simply modified passive gear show that 20- to 30-percent reductions in wing force, relative to those occurring with the modified passive gear, can be obtained during the impact phase of the landing. These reductions in wing force could result in substantial increases in fatigue life of the structure.

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