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Analytical modeleing of contact mechanics of helical gear tooth by considering surface roughness effects

机译:考虑表面粗糙度效应,通过考虑螺旋齿轮齿接触机械的分析模拟

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摘要

Release of metal debris from a pair of gear teeth is a consequence of their contact. Any excessive metal debris can lead to the onset of fatigue and failure. This paper aims to derive a contact mechanics-based model to obtain the energy absorption of helical gear teeth. The proposed model includes the roughness effect of teeth contact surfaces. The mean value of the asperity summit curvature, the standard deviation of the asperity height distribution and the area density of the asperity height distribution are the three statistical parameters that describe the micron-scale surface roughness. An explicit approximation is obtained to relate the contact load and the minimum surface separation and to estimate the energy loss. Then an analytical expression is derived for the plastic energy dissipation per cycle as a function of plasticity index for gear teeth. The proposed function can be applied in the design of gears by engineers and manufacturers. Additionally, a pertinent lumped mass at the area of interaction is assumed to describe the contact frequency and damping ratio using a nonlinear dynamic model.
机译:从一对轮齿上释放金属碎屑是它们接触的结果。任何过多的金属碎屑都可能导致疲劳和失效。本文旨在推导一个基于接触力学的斜齿轮齿能量吸收模型。该模型考虑了齿面粗糙度的影响。粗糙度顶点曲率的平均值、粗糙度高度分布的标准偏差和粗糙度高度分布的面积密度是描述微米级表面粗糙度的三个统计参数。得到了接触载荷与最小表面间距之间的显式近似关系,并估算了能量损失。然后导出了轮齿每循环塑性能量耗散随塑性指数变化的解析表达式。该函数可应用于工程师和制造商的齿轮设计中。此外,假设在相互作用区域有一个相关的集中质量,用非线性动力学模型来描述接触频率和阻尼比。

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