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首页> 外文期刊>Tribology letters >A Film Thickness Correction Formula for Double-Newtonian Shear-Thinning in Rolling EHL Circular Contacts
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A Film Thickness Correction Formula for Double-Newtonian Shear-Thinning in Rolling EHL Circular Contacts

机译:滚动EHL圆形触点双牛顿剪切稀化的膜厚校正公式

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摘要

Lubricants which contain a polymeric thickener will often display a second Newtonian plateau in measured flow curves. Like other manifestations of shear-dependent viscosity, this shear response will lead to an inaccurate prediction when the classical film-thickness formulas are employed. A correction formula has been developed from numerical experiments for a range of parameters of the double-Newtonian modified Carreau equation. The parameters of this shear-thinning model were selected from measurements for real lubricants obtained in Couette viscometers and a capillary viscometer. In addition, a full EHL film thickness formula has been derived from the same numerical experiments. The correction formula and the full formula were successfully validated using published film thickness data and published viscosity data for an EHL reference liquid, a polymer solution. Clearly, viscometer measurements of shear-dependent viscosity which contain the inflection leading to the second Newtonian are essential for a film-thickness calculation when a high-molecular-weight component of the lubricant is present.
机译:含有聚合物增稠剂的润滑剂在测得的流量曲线中通常会显示出第二牛顿平稳期。像其他与剪切有关的粘度的表现一样,当采用经典的膜厚公式时,这种剪切响应将导致不准确的预测。通过数值实验,为双牛顿修正的Carreau方程的一系列参数开发了一个校正公式。该剪切稀化模型的参数选自在Couette粘度计和毛细管粘度计中获得的实际润滑剂的测量值。此外,还从相同的数值实验中得出了完整的EHL膜厚公式。使用EHL参考液体(聚合物溶液)的已公开膜厚数据和已公开粘度数据,成功验证了校正公式和完整公式。显然,当存在润滑剂的高分子量成分时,粘度计的剪切相关粘度的测量包含导致第二牛顿的拐点,对于膜厚计算至关重要。

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