首页> 外文会议>Leeds-Lyon Symposium on Tribology; 20030902-05; Lyon(FR) >Transient effects in EHL point and line contacts having rough transverse surface finish
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Transient effects in EHL point and line contacts having rough transverse surface finish

机译:EHL点和线接触中的瞬态效应具有粗糙的横向表面光洁度

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The paper presents transient point contact elastohydrodynamic lubrication (EHL) results obtained with a formulation that couples the elastic and hydrodynamic equations. Results are presented for elliptical point contacts with the entrainment direction corresponding to the minor contact dimension so that the roughness/entrainment configuration of ground involute gears is replicated. Results are shown that compare the film thickness and pressure distributions obtained along the entrainment centreline with calculations for an equivalent line contact. These indicate that there is no significant difference between transient rough surface results for these two cases, for low A (film thickness/composite surface roughness) conditions, and that a line contact analysis is sufficient to identify the transient EHL response of such gear tooth contacts over most of their face width. Results for the transient variation of von-Mises equivalent stress at surface asperities are presented. These indicate that micro-EHL can cause severe stress cycling close to the material surface and that the cycle rates can be obtained from kinematic calculation of asperity collisions. Further results consider side leakage effects at the transverse limits of the elliptical point contact. These show that side leakage from the valley features of the rough surfaces can seriously undermine the entrainment mechanism and lead to a high incidence of direct asperity/asperity contact. The contact pattern is explored for a range of surface profiles and is seen to correlate qualitatively with the location of scuffing failure in the experimental contacts being replicated.
机译:本文介绍了结合弹性和流体动力学方程的公式获得的瞬态点接触弹性流体动力润滑(EHL)结果。给出了椭圆形点接触的结果,其夹带方向对应于较小的接触尺寸,从而复制了渐开线齿轮的粗糙度/夹带配置。结果表明,将沿夹带中心线获得的薄膜厚度和压力分布与等效线接触的计算结果进行了比较。这些表明,在低A(膜厚/复合表面粗糙度)条件下,这两种情况的瞬态粗糙表面结果之间没有显着差异,并且线接触分析足以识别此类齿轮齿接触的瞬态EHL响应超过他们大部分的脸宽。给出了表面粗糙处von-Mises等效应力瞬态变化的结果。这些表明,微型EHL可能会导致靠近材料表面的严重应力循环,并且可以通过运动学计算得出粗糙碰撞的循环速率。进一步的结果考虑了在椭圆点接触的横向极限处的侧漏效应。这些表明,从粗糙表面的谷底特征泄漏的侧面会严重破坏夹带机制,并导致直接的粗糙/粗糙接触的可能性很高。探索了接触图案的一系列表面轮廓,并发现该图案与复制的实验接触中的划伤失败位置在质量上相关。

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