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Numerical simulation of transient mixed elastohydrodynamic lubrication for spiral bevel gears

机译:螺旋锥齿轮瞬态混合弹性流体动力学润滑的数值模拟

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摘要

In spiral bevel gears, the entraining velocity, contact load and radii of curvature along tooth surface are always changed dramatically, which results in remarkable transient squeezing effect on lubricating performance, especially it operates in high-speed and heavy-load conditions. Available elastohydrodynamic lubrication (EHL) and mixed EHL studies for spiral bevel gears are mainly performed under quasi-static (steady-state) assumptions which ignores these transient influences. Therefore, in this paper, a transient mixed EHL model for spiral bevel gears is presented, in which takes into account most variable parameters along meshing surface including contact load, contact radii of curvature, entraining and sliding velocity vectors. Note that all these transient parameters of spiral bevel gears are employed from the results of loaded tooth contact analysis (LTCA). In order to improve the computational efficiency and convergent accuracy with a relatively dense grids, the progressive mesh densification (PMD) method for this transient mixed EHL model is also introduced. A comparison between the present transient mixed EHL model and those data from literature is executed to verify the correctness of the newly developed model. After that, systematically investigations of transient squeezing impact are carried out for spiral bevel gears and compared with the corresponding steady-state EHL results with and without real machined surface roughness. The obtained results reveal that the transient squeezing action can significantly affect the film thickness distribution in each contact zone and along the meshing track line in spiral bevel gears, and lead to dramatic growth in asperity contact area as well. Besides, the steady-state EHL appears to be greatly overestimated the lubricating characteristics for spiral bevel gears.
机译:在螺旋锥齿轮中,沿牙齿表面的夹带速度,接触载荷和半径总是显着的改变,这导致对润滑性能显着的瞬态挤压效应,特别是它在高速和重载条件下运行。可用的弹性流动动力学润滑(EHL)和螺旋锥齿轮的混合EHL研究主要是在准静态(稳态)假设下进行的,这忽略了这些瞬时影响。因此,在本文中,提出了一种螺旋锥齿轮的瞬态混合EHL模型,其中考虑到沿着啮合表面的大多数可变参数,包括接触载荷,曲率接触半径,夹带和滑动速度矢量。注意,螺旋锥齿轮的所有这些瞬态参数都是从装载齿接触分析(LTCA)的结果中的。为了提高具有相对致密的电网的计算效率和收敛精度,还引入了该瞬态混合EHL模型的渐进网格致密化(PMD)方法。执行当前瞬态混合EHL模型与来自文献的数据之间的比较以验证新开发模型的正确性。之后,对螺旋锥齿轮进行系统地进行瞬时挤压冲击,并与相应的稳态EHL结果进行比较,无需实际加工的表面粗糙度。所得结果表明,瞬态挤压动作可以显着影响每个接触区域中的膜厚度分布以及沿着螺旋锥齿轮的啮合轨道线,并导致粗糙接触区域的剧烈生长。此外,稳态EHL似乎大大高估了螺旋锥齿轮的润滑特性。

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