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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Determination of pressure-dependent friction coefficient from draw-bend test and its application to cup drawing
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Determination of pressure-dependent friction coefficient from draw-bend test and its application to cup drawing

机译:通过拉弯试验确定与压力有关的摩擦系数,并将其应用于杯子拉伸

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摘要

Friction under lubricated conditions is known to depend on pressure, and experimental determination of this dependence has typically quantified pressure as a uniform 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 had evaluated the conventional methodology, which assumes uniform pressure distribution to estimate friction coefficients from draw-bend friction tests, and has concluded that the conventional methodology is only valid for measuring an average friction coefficient over the pressure range, which exists in a specific draw-bend system. In this paper, a new methodology to determine friction coefficients from draw-bend friction tests considering the pressure non-uniformity 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 proposed method is applied to friction measurement of aluminum sheets with anisotropic mill-finish surface and friction coefficients were obtained as functions of contact pressure, sliding velocity and sliding direction. Lastly, the obtained friction data were implemented into a finite element code, and circular cup drawing experiments and simulations were performed to validate the methodology.
机译:已知在润滑条件下的摩擦取决于压力,对此依赖性的实验确定通常将压力量化为接触面积上的均匀值。然而,从各种实验和模拟中已经报道了在弯曲试验的接触界面处的压力分布不均匀。作者先前的研究对常规方法进行了评估,该方法假定压力分布均匀,以通过拉弯摩擦试验估算摩擦系数,并得出结论,常规方法仅适用于测量压力范围内的平均摩擦系数。存在于特定的弯曲系统中。在本文中,提出了一种新的方法,该方法可通过考虑压力不均匀性的拉弯摩擦试验确定摩擦系数。在该方法中,从模拟获得的接触压力图(而不是均匀的压力假设)包含在测试数据的分析中,以测量摩擦系数的压力依赖性。该方法适用于各向异性轧制表面铝板的摩擦测量,并获得了接触压力,滑动速度和滑动方向的摩擦系数。最后,将获得的摩擦数据实现为有限元代码,并进行了圆杯拉伸实验和模拟,以验证该方法。

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