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A Study on the Boundary Lubricated Sliding Contact with Subsurface Plastic Deformation

机译:地下塑性变形的边界润滑滑动接触的研究

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In this study, low velocity oblique plastic impact testing experiments were conducted at different angles of incidence in order to investigate the consequences of the short distance sliding interaction between a very hard (En31) ball and a relatively softer (mild steel) metal specimen. The purpose was to understand the mechanism of boundary lubrication in metalworking processes. The specimen was mounted on a specially designed inclined-plane type fixture so that its surface could be oriented at any desired angle against the free falling hard ball from a predetermined height. The experimental setup included sufficient details of instrumentation to record the post impact travel distance and time from which the average coefficient of friction was calculated using a simple methodology. The specimen surfaces were studied using the SEM for different cases of sliding experiments with and without lubricants and two different additives in the lubricants. Marked difference was observed in the nature of surfaces produced in different cases. The oblique impact process was modeled using the equations of motion of the ball and its interaction with plastically deforming specimen material. A fourth order Runge-Kutta method was used and variations of shear and normal forces during the sliding contact were estimated. The friction behavior showed by this model is conformance with the experimental results. In addition to that, it has been shown by this model that the coefficient of friction can not exceed the value of one in sliding. A finite element model has been prepared to estimate the plastic deformation component of friction. Considering the soft asperities of the workpiece deforming as a wave in front of hard asperities, steady state Galerkin finite element model enabled estimation of friction. The trend of the results of FEM model seems to substantiate the experimental results.
机译:在该研究中,低速倾斜塑料冲击试验实验在不同的入射角进行,以研究非常硬(EN31)球和相对较较较软的(低碳钢)金属样品之间的短距离滑动相互作用的后果。目的是了解金属加工过程中边界润滑的机制。将样品安装在特殊设计的倾斜平面型固定装置上,使得其表面可以以预定高度的自由落下的硬球以任何所需角度定向。实验设置包括仪器的充分细节,以记录使用简单方法计算术后冲击行程距离和时间摩擦系数的时间。使用SEM研究样品表面,用于不同的滑动实验的液体和没有润滑剂和润滑剂中的两种不同添加剂的情况。在不同情况下产生的表面的性质中观察到标记差异。使用球的运动方程及其与塑性变形样品材料的相互作用进行建模的倾斜冲击过程。使用了第四阶runge-Kutta方法,估计滑动触点期间的剪切和正常力的变化。该模型表明的摩擦行为与实验结果一致。除此之外,已经通过该模型示出,即摩擦系数不能超过滑动中的摩擦值。已经准备了有限元模型来估算摩擦的塑性变形分量。考虑到工件的柔软粗糙,作为硬度硬度前面的波浪,稳态Galerkin有限元模型使摩擦估计。有组织模型的结果的趋势似乎证实了实验结果。

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