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Oil Film Hydrodynamic Load Capacity of Hydro-Viscous Drive with Variable Viscosity

机译:油膜水动力负载能力,具有可变粘度的水粘性驱动

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摘要

To reveal the characteristics of hydrodynamic load capacity and torque transferred by oil film with variable viscosity, the radial temperature of friction pair and viscosity of YLA-N32 hydraulic oil were measured through experiments, and a viscositydiameter expression was deduced by using polynomial fitting method. Analytical solutions for hydrodynamic load capacity and torque of the oil film were deduced based on hydrodynamic lubrication theory. The investigation shows the hydrodynamic load capacity and transferred torque with variable viscosity are much less than that with constant viscosity. Load capacity increases with the increase of groove depth which is the most significant influence factor, while it has the least influence on torque. Groove width has great influence on load capacity and torque. The load capacity increases with the increase of groove width; contrarily, torque decreases with the increase of groove width. Groove number has little influence on load capacity, while it has great influence on torque. The torque decreases with the increase of groove number.
机译:为了揭示通过具有可变粘度转移的流体动力负载能力和扭矩的扭矩,通过实验测量摩擦对的径向温度和YLA-N32液压油的粘度,并通过使用多项式配合方法推导出粘度的表达。基于流体动力润滑理论推出了用于水动力负载能力和油膜扭矩的分析解。该研究表明,具有可变粘度的流体动力负载能力和转移扭矩远小于恒定粘度的转移扭矩。负载能力随着沟槽深度的增加而增加,这是最显着的影响因素,而对扭矩的影响最小。凹槽宽度对负载能力和扭矩产生很大影响。负载能力随着凹槽宽度的增加而增加;相反,随着凹槽宽度的增加而减小扭矩。 Groove Number对负载能力影响很小,而对扭矩产生很大影响。随着沟槽数的增加,扭矩减小。

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