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首页> 外文期刊>Tribology International >Transient behaviors of friction, temperature and fatigue in different contact trajectories for spiral bevel gears
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Transient behaviors of friction, temperature and fatigue in different contact trajectories for spiral bevel gears

机译:螺旋锥齿轮不同接触轨迹摩擦,温度和疲劳的瞬态行为

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摘要

The dramatic changes in contact geometry, load, entraining and sliding velocity vectors along contact trajectories of spiral bevel gears may cause significant squeezing action. It suggests that the steady-state analysis at each discrete engaging point cannot effectively describe the tribological behavior in spiral bevel gears. The present study aims to systematically study the transient friction, temperature and contact fatigue behaviors in different contact trajectories for spiral bevel gears based on a newly developed transient mixed EHL model. It shows that the obtained transient friction coefficient is much higher than the steady-state when the gears mesh in the first half of the engagement period. During the entire engagement period, the predicted transient fatigue life is significantly longer than the predicted steady-state fatigue life, which is of importance to the integrated and economical design of spiral bevel gears. The comparison with single half-sine waveform asperity demonstrated that the transient asperity contact pressure is much lower than that in quasi-steady state. The variation of flash temperature appears to be insignificant. Moreover, in different contact trajectories, the weakest point in one engagement period always occurs at a certain point when one teeth pair just finished the engaging-in and another pair of teeth completed engaging-out, and the toe contact exhibits the maximum frictional energy consumption and shortest fatigue life among them.
机译:沿螺旋锥齿轮接触轨迹的接触几何,负荷,夹带和滑动速度矢量的显着变化可能导致显着的挤压动作。它表明每个离散接合点的稳态分析不能有效地描述螺旋锥齿轮中的摩擦学行为。本研究旨在基于新开发的瞬态混合EHL模型来系统地研究螺旋锥齿轮不同接触轨迹中的瞬态摩擦,温度和接触疲劳行为。它表明,当齿轮在接合周期的前半部内啮合时,所获得的瞬态摩擦系数远高于稳定状态。在整个参与期间,预测的短暂疲劳寿命明显长于预测的稳态疲劳寿命,这对螺旋锥齿轮的综合和经济设计非常重要。与单半正弦波形粗糙的比较表明,瞬态粗糙度接触压力远低于准稳态的触点。闪光温度的变化似乎是微不足道的。此外,在不同的接触轨迹中,一个接合周期中的最弱点总是发生在一颗牙齿对刚刚完成接合的一点并且另一对齿完成接合的时,并且脚趾接触呈现最大摩擦能量消耗他们之间的最短疲劳生活。

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