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首页> 外文期刊>Tribology Transactions >A simple and accurate method to calculate transient EHL film thickness in machine components undergoing operation cycles
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A simple and accurate method to calculate transient EHL film thickness in machine components undergoing operation cycles

机译:一种简单准确的方法来计算运行周期中机器部件中的瞬态EHL膜厚度

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摘要

This paper presents anew method to calculate EHL film thick-nesses for contacts operating in transient conditions. The method approximates the EHL pressure distribution by its corresponding Hertz distribution. The transient Reynolds equation is simplified to a partial differential equation governing wave propagation of the film thickness from the inlet to the outlet of the Hertz contact region. The film thickness at the Hertz inlet is calculated by the Dowson-Toyoda formula in which the parameters are determined by the current operating conditions. These modeling techniques greatly enhance the robustness and computational efficiency of the method. A wide range of practical EHL problems can be solved, and film thicknesses for a full cycle of machine operation can be calculated on a PC in a few seconds of CPU time. The accuracy of the method is evaluated by comparing its results with those obtained by a full transient EHL model. The comparison is fairly favorable for a wide range of operating conditions with large variations of load and speed parameters and with a frequency of variation up to 1000 cycles per second. This method of transient film thickness calculations can be easily implemented into design programs for EHL machine elements. It also establishes a platform upon which other design calculations and analyses can be performed such as asperity contacts, temperature and traction.
机译:本文提出了一种新的方法来计算瞬态条件下触点的EHL膜厚度。该方法通过其对应的赫兹分布来近似EHL压力分布。瞬态雷诺方程简化为控制膜厚度从赫兹接触区域的入口到出口的波传播的偏微分方程。赫兹入口处的膜厚通过道森-丰田(Dowson-Toyoda)公式计算,该公式中的参数由当前操作条件确定。这些建模技术极大地提高了该方法的鲁棒性和计算效率。可以解决许多实际的EHL问题,并且可以在几秒钟的CPU时间内在PC上计算出整个机器操作周期的薄膜厚度。通过将其结果与通过完整瞬态EHL模型获得的结果进行比较,可以评估该方法的准确性。对于负载和速度参数变化较大且变化频率高达每秒1000个周期的各种运行条件,该比较是相当有利的。这种瞬态膜厚计算方法可以轻松地用于EHL机器元件的设计程序中。它还建立了一个平台,可以在该平台上执行其他设计计算和分析,例如粗糙接触,温度和牵引力。

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