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Research on a new aircraft undercarriage to prevent tire smoking on landing

机译:一种新的飞机底盘研究,以防止胎盘吸烟降落

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The moment at which a wheel of a landing aircraft touches the ground, the wheel meets great resistance to forward motion. As the undercarriage absorbs almost none of this longitudinal impact, the tire begins to smoke, which the oleo strut undergoes spin up and spring back. Most people are unaware that this phenomenon represents the technological limits of current suspensions. For the wheel to absorb forward impact, it must be given longitudinal stroke. We have created a new type of undercarriage, containing a crank element and adequately gives the longitudinal stroke. We clarified the new undercarriage with basic dynamical analysis and computer simulations using an aircraft model with 1 degree of freedom. This simulation showed that when give specific freedom of circular motion, the wheel will accelerate in two stages after landing. Consequently, the sliding friction work on the tire is reduced by a maximum of about 47.4%.
机译:着陆飞机轮接触地面的那一刻,车轮达到了巨大的前进运动。由于底盘几乎没有这种纵向冲击,轮胎开始冒烟,其中Oleo Strut经历旋转并弹回。大多数人都没有意识到这种现象代表了当前悬浮液的技术限制。对于车轮吸收前向冲击,必须给予纵向中风。我们创造了一种新型的底盘,包含曲柄元件并充分提供纵向中风。我们阐明了使用具有1个自由度的飞机模型的基本动态分析和计算机模拟的新底盘。该模拟表明,当给出特定的圆周运动自由时,在着陆后,车轮将在两个阶段加速。因此,轮胎上的滑动摩擦工作减少了约47.4%。

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