首页> 外文会议>ASME Pressure Vessels and Piping Conference >NON-UNIFORM PRESSURE DISTRIBUTION IN DRAW-BEND FRICTION TEST AND A NEW METHODOLOGY TO DETERMINE NON-CONSTANT FRICTION COEFFICIENT FROM THE TEST
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NON-UNIFORM PRESSURE DISTRIBUTION IN DRAW-BEND FRICTION TEST AND A NEW METHODOLOGY TO DETERMINE NON-CONSTANT FRICTION COEFFICIENT FROM THE TEST

机译:拉伸弯曲摩擦试验的非均匀压力分布以及从测试中确定非恒定摩擦系数的新方法

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Friction under lubricated conditions is known to depend on pressure, and experimental determination of this dependence has typically quantified pressure as an average value over the contact area. However, non-uniform pressure distributions at the contact interfaces of draw-bend tests have been reported from various experiments and simulations. A previous study by the authors has evaluated the current methodology, which assumes uniform pressure distribution to estimate friction coefficients from draw-bend friction tests, and has concluded that the current methodology is only valid for measuring an average friction coefficient over the pressure range, which exists in the specific draw-bend system. In this paper, a new methodology to extract non-constant friction coefficients from draw-bend friction tests is suggested. In the methodology, contact pressure maps obtained from simulations, instead of the uniform pressure assumption, are included in the analysis of test data to measure the pressure dependency of friction coefficient. The methodology is tested by applying the method to back predict the input friction data from finite element simulation results of draw-bend friction tests, in which non-constant friction models are used as friction input.
机译:已知在润滑条件下摩擦依赖于压力,并且对该依赖性的实验测定通常在接触区域上量化压力作为平均值。然而,已经从各种实验和模拟中报道了拉伸弯曲试验的接触界面处的非均匀压力分布。作者以前的研究已经评估了目前的方法,这假设均匀的压力分布以估计来自抽取弯曲摩擦测试的摩擦系数,并且已经得出结论,目前的方法仅适用于测量压力范围内的平均摩擦系数,这存在于特定的绘制弯曲系统中。本文提出了一种新的方法,提出了从抽取弯曲摩擦试验中提取非恒定摩擦系数的新方法。在方法中,从模拟中获得的接触压力图,而不是均匀的压力假设,包括在测试数据的分析中,以测量摩擦系数的压力依赖性。通过应用方法来测试方法,从而预测来自抽取弯曲摩擦试验的有限元模拟结果的输入摩擦数据,其中非恒定摩擦模型用作摩擦输入。

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