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A Mixed TEHL Model for the Prediction of Thermal Effect on Lubrication Performance in Spiral Bevel Gears

机译:螺旋锥齿轮润滑性能预测的混合TEHL模型

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摘要

Arbitrary velocity vectors on two meshing surfaces in spiral bevel gears could generate large sliding velocity, which may cause a tremendous temperature rise, especially when surface roughness is involved. However, available studies are primarily concentrated on full-film lubrication without considering temperature rise and surface topography. The purpose of present study is to develop a mixed thermal elastohydrodynamic lubrication (TEHL) model taking into account the velocity vector and surface roughness. The obtained results are compared with those from an elastohydrodynamic lubrication (EHL) model and measurements in previous literature to demonstrate the accuracy of the present model. Further, the TEHL model has been applied to predict the film thickness, pressure, and temperature rise of spiral bevel gears over one meshing period by considering thermal effects.
机译:螺旋锥齿轮的两个啮合表面上的任意速度矢量可以产生大的滑动速度,这可能导致巨大的温度升高,尤其是当涉及表面粗糙度时。 然而,可用的研究主要集中在全膜润滑上,而不考虑温度上升和表面形貌。 本研究的目的是制定混合热弹性动力学润滑(TEHL)模型,考虑到速度向量和表面粗糙度。 将得到的结果与来自先前文献中的弹性动力学润滑(EHL)模型(EHL)模型和测量的结果进行比较,以证明本模型的准确性。 此外,通过考虑热效应,已经应用TEH1模型以预测一个啮合时期在一个啮合时段的膜厚度,压力和温度上升。

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