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Coating thickness effect on initial wear of nitrogen-doped amorphous carbon in nano-scale sliding contact - Part II: theoretical modeling

机译:涂层厚度对纳米级滑动接触中掺氮非晶碳初始磨损的影响-第二部分:理论模型

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This is the second paper of a two-part report. In the first paper, empirical data on the wear particle generation in carbon nitride coatings subjected to repeated sliding contact with a spherical diamond counter-face is reported. The effect of coating thickness on the wear particle generation is also discussed in the first paper. In this paper, a simplified theoretical expression, combining the Coffin-Manson equation with the analytical solution of a proposed elastic perfectly-plastic indentation model, is introduced. The expression successfully correlates critical number of friction cycles for wear particle generation N{sub}c to coating thickness h, contact pressure P and radius of spherical asperity on the tip of the diamond pin R. With this expression, the lifespan of sliding components can be predicted. The theoretical results computed for diamond pin with a specific asperity radius value of 250 nm were compared with the experimental results reported in the first paper. The theoretical model successfully predicts the maximum lifespan of a component, *. in repeated sliding applications. The influences of various contact pressures and asperity radii on the maximum lifespan were also assessed using the model.
机译:这是两部分报告的第二篇论文。在第一篇论文中,报道了与球形金刚石反面反复滑动接触的氮化碳涂层中磨损颗粒产生的经验数据。在第一篇论文中还讨论了涂层厚度对磨损颗粒产生的影响。本文介绍了一种简化的理论表达式,将Coffin-Manson方程与所提出的弹性完全塑性压痕模型的解析解相结合。该表达式成功地将产生磨损颗粒的关键摩擦周期数N {sub} c与涂层厚度h,接触压力P和金刚石销R尖端上的球形凹凸半径相关联。利用该表达式,滑动组件的寿命可以被预测。将具有250 nm的特定凹凸半径值的金刚石销的理论计算结果与第一篇论文中报道的实验结果进行了比较。理论模型成功地预测了组件的最大使用寿命*。在重复的滑动应用中。还使用该模型评估了各种接触压力和粗糙半径对最大寿命的影响。

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