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Asperity level tribological investigation of automotive bore material and coatings

机译:汽车钻孔材料和涂料的粗糙度摩擦学研究

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摘要

Choosing in-cylinder surfaces is complex. A well-chosen surface has low friction and wear. Conversely, poor oversight often leads to premature failure through wear and scuffing. Typically cylinder bore surfaces are selected experientially. This paper demonstrates the use of Atomic Force Microscopy in LFM mode, characterising typical cylinder bore materials and coatings. The approach uses integrated LFM with continuum contact mechanics. It evaluates the real contact area and effective elastic modulus of the surface, including the effect of any reactive surface film. Surface energy and shear strength, as well as the coefficient of friction in nanoscale interactions are also determined. These properties are measured for 6 cylinder bore materials, including for composite Nickel Silicon Carbide and DLC, used for high performance engines.
机译:选择缸内表面很复杂。 精心良好的表面具有低摩擦和磨损。 相反,监督不良通常通过磨损和磨损导致过早失败。 通常,经过实验选择气缸孔表面。 本文演示了在LFM模式下使用原子力显微镜,其特征在于典型的气缸孔材料和涂层。 该方法使用具有连续式接触机械的集成LFM。 它评估了表面的真正接触面积和有效弹性模量,包括任何反应性表面膜的效果。 表面能量和剪切强度以及纳米级相互作用中的摩擦系数也是确定的。 这些性能用于6个气缸孔材料,包括用于复合镍碳化硅和DLC,用于高性能发动机。

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