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Comparison study on surface and thermo-chemical properties of PFPE lubricants on DLC film through MD simulations

机译:通过MD模拟对DLC薄膜PFPE润滑剂表面和热化学性质的比较研究

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摘要

Molecular dynamics simulations are performed using four types of PFPE lubricants (Zdol, Ztetraol, TA-30, and ZTMD) to investigate their spreadability, airshear behavior, surface contamination, and friction. The more functional end groups in PFPE lubricants the less spreadability on DLC surface, which agrees with the experimental results. The airshear simulation shows that the tangential shear movement of lubricants reduces as the number and the polar strength of functional end group increases. The higher temperature, the more shear displacement due to the increasing mobility. In HDI contact simulations, the PFPE lubricant with more and stronger functional end groups results in higher friction force and less head contamination by lubricant transfer. The higher temperature, the more head contamination but lower friction force.
机译:使用四种PFPE润滑剂(Zdol、ZTETRAOLL、TA-30和ZTMD)进行分子动力学模拟,以研究其铺展性、空气切变行为、表面污染和摩擦。PFPE润滑剂中官能团越多,在DLC表面的铺展性越差,这与实验结果一致。空气切变模拟表明,随着功能端基数量和极性强度的增加,润滑剂的切向剪切运动减小。温度越高,由于流动性增加,剪切位移越大。在HDI接触模拟中,具有更多和更强功能性端基的PFPE润滑剂会产生更大的摩擦力,并通过润滑剂转移减少头部污染。温度越高,头部污染越多,但摩擦力越小。

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