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首页> 外文期刊>Journal of Advanced Mechanical Design, Systems, and Manufacturing >A Method to Derive Friction and Rolling Power Loss Formulae for Mixed Elastohydrodynamic Lubrication
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A Method to Derive Friction and Rolling Power Loss Formulae for Mixed Elastohydrodynamic Lubrication

机译:混合弹性流体动力润滑的推导摩擦和滚动功率损失公式的方法

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摘要

Prediction of mechanical power losses of gear pairs requires elastohydrodynamic lubrication (EHL) analyses to be carried out at every discrete contact position. This makes gear efficiency models computationally demanding. As a remedy to this problem, a method is proposed in this study to derive EHL-based friction coefficient and rolling power loss formulae to be used in gear efficiency models. This method employs a large number of EHL analyses covering a full matrix of all key contact parameters, namely normal load, rolling and sliding velocities, radii of curvature, lubricant parameters and surface roughness amplitudes, within typical ranges dictated by gear contacts. Linear regression of the results of the EHL analyses yields friction coefficient and rolling power loss formulae suitable for gear efficiency models. In the EHL model, the hydrodynamic fluid and asperity contact zones are treated in a unified manner. The sliding friction is computed as the sum of the viscous shear within the lubricant and the boundary friction at the local asperity contact spots. The rolling power loss induced by fluid pressure gradient is formulated to include the entire contact zone instead of only the inlet region, since the pressure gradient is substantial within the contact for rough surface condition. The proposed method is demonstrated using an example turbine fluid. Typical measured gear surface roughness profiles are used in the analyses. At the end, the results from the regression formulae are compared to actual EHL predictions to assess their accuracy under various contact conditions.
机译:要预测齿轮副的机械功率损耗,需要在每个离散的接触位置进行弹性流体动力润滑(EHL)分析。这使得齿轮效率模型的计算要求很高。为了解决这个问题,本研究提出了一种方法,用于导出基于EHL的摩擦系数和滚动功率损耗公式,以用于齿轮效率模型。该方法采用了大量的EHL分析,涵盖了所有关键接触参数的完整矩阵,这些参数包括齿轮接触所规定的典型范围内的法向载荷,滚动和滑动速度,曲率半径,润滑剂参数和表面粗糙度幅度。 EHL分析结果的线性回归可得出适用于齿轮效率模型的摩擦系数和滚动功率损耗公式。在EHL模型中,以统一的方式处理流体动力流体和粗糙接触区域。滑动摩擦计算为润滑剂中的粘性剪切力与局部粗糙接触点处的边界摩擦之和。由流体压力梯度引起的滚动功率损耗被公式化为包括整个接触区域而不是仅包括入口区域,因为对于粗糙的表面条件,压力梯度在接触内相当大。使用示例涡轮机流体演示了所提出的方法。分析中使用了典型的齿轮表面粗糙度轮廓。最后,将回归公式的结果与实际的EHL预测进行比较,以评估其在各种接触条件下的准确性。

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