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Deformation comparison between bias and radial aircraft tires using optical techniques

机译:偏置和径向飞机轮胎使用光学技术的变形比较

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Although radial tires have been used in automobiles, they are still in the stage of testing for a possible future use in aircraft. An important consideration is the tire's average life when subjected to various loading conditions. Along with this consideration, tire deformation is one of the concerns. This paper presents a study of deformation comparison between F16 bias and radial aircraft tires subjected to loading conditions against flat plate and flywheel with different percentages of tire deflection and different yaw angels. Optical fringe projection technique is used to determine the three-dimensional tire deformation. Like any other similar optical technique, the deformed surface is measured relative to the selected reference point. Therefore, in order to find the absolute geometry of the deformed tire surface, a close-range fiber optic displacement sensor was installed to accurately detect the point's height change in a direction parallel to the wheel axle. The experimental results indicate that with the measuring system and the proposed technique, the tire deformation can be quantified and the three-dimensional geometry of a deformed tire can be reconstructed.
机译:虽然汽车中已用于汽车的径向轮胎,但它们仍处于测试中可能在飞机中使用的阶段。重要的考虑因素是轮胎的平均寿命在受到各种装载条件时。随着这一考虑,轮胎变形是关注点之一。本文介绍了F16偏置和径向飞机轮胎的变形比较研究,该辐射飞机轮胎对平板和飞轮具有不同百分比的轮胎偏转和不同的偏航天使。光学边缘投影技术用于确定三维轮胎变形。与任何其他类似的光学技术一样,相对于所选择的参考点测量变形的表面。因此,为了找到变形轮胎表面的绝对几何形状,安装了近距离光纤位移传感器,以精确地检测与轮轴平行的方向的点的高度变化。实验结果表明,利用测量系统和所提出的技术,可以量化轮胎变形,并且可以重建变形轮胎的三维几何形状。

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