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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Modeling aircraft braking performance on wet and snow/ice-contaminated runways
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Modeling aircraft braking performance on wet and snow/ice-contaminated runways

机译:模拟飞机在潮湿和被雪/冰污染的跑道上的制动性能

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摘要

The paper deals with the modeling of friction between aircraft tires and contaminated runway surfaces. Wet, snow- and ice-covered surfaces are considered. A tire Brush model developed for aircraft braking on dry runways is adapted to take into account the effect of contaminants. Compared with a dry surface, contaminants are assumed to affect the static and dynamic friction coefficients, the tire stiffness, the tire slip ratio, and the length of the contact patch. Linear relationship is established between static and dynamic friction coefficients. The dynamic friction coefficient is reduced using an empirical model for wet surfaces and experimental fitting for snow- and ice-covered surfaces. The tire stiffness is modified considering the frequency and temperature dependence of the tire mechanical properties. Values on snow and ice are lower than those on wet and dry surfaces. A physical model is developed to calculate the length of the wet contact patch. Finally, it is assumed that the aircraft effective slip ratio is surface-dependent, and values are determined for each of the studied contaminants. Theoretical friction-slip curves are realistic in terms of shape and differentiation between surface conditions. The model is applied to a Falcon 20 aircraft and a runway monitoring device called IMAG (Instrument de Mesure Automatique de Glissance). Friction-slip and friction-speed curves are calculated and compared to experimental data. It was found that the model can be used to relate ground friction to aircraft braking performance with enough reliability.
机译:本文涉及飞机轮胎与被污染的跑道表面之间的摩擦建模。考虑湿,雪和冰覆盖的表面。为飞机在干燥跑道上制动而开发的轮胎刷模型适用于考虑污染物的影响。与干燥的表面相比,假定污染物会影响静摩擦系数和动摩擦系数,轮胎刚度,轮胎滑移率以及接触斑的长度。静态和动态摩擦系数之间建立线性关系。使用湿表面经验模型和冰雪覆盖表面的实验拟合可降低动摩擦系数。考虑到轮胎机械性能的频率和温度依赖性,可以修改轮胎刚度。在雪和冰上的值低于在干燥和湿润的表面上的值。建立物理模型以计算湿接触贴剂的长度。最后,假设飞机的有效滑移率取决于表面,并确定每种研究污染物的值。理论上的摩擦滑移曲线在形状和表面条件之间的差异方面是现实的。该模型适用于Falcon 20飞机和名为IMAG(仪表自动化仪表)的跑道监控设备。计算出摩擦滑移和摩擦速度曲线,并将其与实验数据进行比较。发现该模型可以足够可靠地用于将地面摩擦与飞机制动性能相关联。

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