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Investigation of material transfer in sliding friction-topography or surface chemistry?

机译:研究滑动摩擦形貌或表面化学中的材料转移?

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摘要

To differentiate between the roles of surface topography and chemical composition on influencing friction and transfer in sliding contact, a series of tests were performed in situ in an SEM. The initial sliding during metal forming was investigated, using an aluminum tip representing the work material, put into sliding contact with a polished flat tool material. Both DLC-coated and uncoated tool steel was used. By varying the final polishing step of the tool material, different surface topographies were obtained. The study demonstrates the strong influence from nano topography of an unpolished DLC coated surface on both coefficient of friction and material transfer. The influence of tool surface chemistry is also discussed.
机译:为了区分表面形貌和化学成分在影响滑动接触中的摩擦和传递方面的作用,在SEM中进​​行了一系列测试。使用代表工作材料的铝尖端,研究了金属成型过程中的初始滑动,并使其与抛光的平面工具材料滑动接触。使用DLC涂层和未涂层​​的工具钢。通过改变工具材料的最终抛光步骤,获得了不同的表面形貌。该研究表明,未抛光的DLC涂层表面的纳米形貌对摩擦系数和材料转移都具有很大的影响。还讨论了工具表面化学的影响。

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