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Molecular dynamic simulation of lubricant spreading: effect from the substrate and endbead
引用本文:李欣,胡元中,王慧,杨冬.Molecular dynamic simulation of lubricant spreading: effect from the substrate and endbead[J].中国物理 B,2006,15(4):818-821.
作者姓名:李欣  胡元中  王慧  杨冬
作者单位:The State Key Laboratory of Tribology , Tsinghua University, Beijing 100084, China
基金项目:Project supported by the National Natural Science Foundation of China (Grant No 50390060) and the State Key Development Program for Basic Research of China (Grant No 2003CB716201).
摘    要:Molecular dynamic simulations based on a coarse-grained, bead-spring model are adopted to investigate the spreading of both nonfunctional and functional perfluoropolyether (PFPE) on solid substrates. For nonfunctional PFPE, the spreading generally exhibits a smooth profile with a precursor film. The spreading profiles on different substrates are compared, which indicate that the bead-substrate interaction has a significant effect on the spreading behaviour, especially on the formation of the precursor film. For functional PFPE, the spreading generally exhibits a complicated terraced profile. The spreading profiles with different endbeads are compared, which indicate that the endbead-substrate interaction and the endbead--endbead interaction, especially the latter, have a significant effect on the spreading behaviour.

关 键 词:分子动力学模型  润滑剂散布  薄膜润滑  薄膜物理学
收稿时间:2005-11-24
修稿时间:2005-11-242005-12-26

Molecular dynamic simulation of lubricant spreading: effect from the substrate and endbead
Li Xin,Hu Yuan-Zhong,Wang Hui and Yang Dong.Molecular dynamic simulation of lubricant spreading: effect from the substrate and endbead[J].Chinese Physics B,2006,15(4):818-821.
Authors:Li Xin  Hu Yuan-Zhong  Wang Hui and Yang Dong
Institution:The State Key Laboratory of Tribology , Tsinghua University, Beijing 100084, China
Abstract:Molecular dynamic simulations based on a coarse-grained, bead-spring model are adopted to investigate the spreading of both nonfunctional and functional perfluoropolyether (PFPE) on solid substrates. For nonfunctional PFPE, the spreading generally exhibits a smooth profile with a precursor film. The spreading profiles on different substrates are compared, which indicate that the bead-substrate interaction has a significant effect on the spreading behaviour, especially on the formation of the precursor film. For functional PFPE, the spreading generally exhibits a complicated terraced profile. The spreading profiles with different endbeads are compared, which indicate that the endbead-substrate interaction and the endbead--endbead interaction, especially the latter, have a significant effect on the spreading behaviour.
Keywords:perfluoropolyether  molecular dynamic simulation  thin film lubrication  spreading
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