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Tooth friction force and transmission error of spur gears due to sliding friction

机译:由于滑动摩擦,齿轮齿轮的齿轮摩擦力和透射误差

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This study investigated the tooth friction force and transmission error (TE) of spur gears due to sliding friction under quasi-static condition. The sliding velocity and friction force of spur gears and mesh compliance during meshing were calculated. The load-deformation relations between the tooth normal load, tooth errors, and mesh compliance, and moment equilibrium equation, including friction force, were derived. The friction force, tooth load, and TE of unmodified and linear tip-relief modified spur gears were analyzed by using the derived equations. Results indicated that the friction force, tooth load, and TE increased during approach and decreased in recess regardless of tooth modification, particularly in the single-mesh region. Friction caused larger peak-to-peak change of TE than that without friction. Xu's friction coefficient generated smooth TE and tooth load transitions near the pitch point, and BK's friction coefficient remained approximately constant, except for the sharp increase in tooth load and TE near the pitch point.
机译:该研究通过在准静态条件下,研究了由于滑动摩擦而导致的齿轮齿轮的齿轮摩擦力和透射误差(TE)。计算出啮合期间正齿轮和网格顺应性的滑动速度和摩擦力。衍生出牙齿正常负荷,齿误差和网格依从性的负载变形关系,包括摩擦力的力矩平衡方程。通过使用衍生方程分析未修饰和线性尖端释放修改的正齿轮的摩擦力,齿荷和Te。结果表明,摩擦力,齿载和TE在接近过程中增加并在凹槽中减少,而不管牙齿修改如何,特别是在单网状区域中。摩擦引起Te的峰值到峰值变化而不是没有摩擦。 Xu的摩擦系数产生光滑点附近的平滑TE和齿载转变,并且BK的摩擦系数仍然近似恒定,除了齿轮和TE靠近俯仰点的急剧增加。

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