首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Nanoscale mechanical and tribological properties of fluorocarbon films grafted onto plasma-treated low-density polyethylene surfaces
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Nanoscale mechanical and tribological properties of fluorocarbon films grafted onto plasma-treated low-density polyethylene surfaces

机译:等离子体处理的低密度聚乙烯表面接枝的碳氟化合物薄膜的纳米级机械和摩擦学性能

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摘要

Fluorocarbon (FC) films were grafted onto Ar plasma-treated low-density polyethylene (LDPE) surfaces by plasma polymerization and deposition. The evolution of the surface morphology of the grafted FC films was investigated at different scales with an atomic force microscope. Nanoscale sliding experiments performed with a surface force microscope provided insight into the nanotribological properties of Ar plasma-treated LDPE, with and without grafted FC films, in terms of applied normal load and number of sliding cycles. The observed trends are explained in the context of microstructure models accounting for morphological and structure changes at the LDPE surface due to the effects of plasma treatment (e.g., selective etching of amorphous phase, chain crosslinking and FC film grafting) and surface sliding (e.g., crystalline lamellae alignment along the sliding direction). Nanoindentation experiments elucidated the effect of plasma treatment on surface viscoelasticity and global contact stiffness. The results of this study demonstrate that plasma-assisted grafting of FC films is an effective surface modification method for tuning the nanomechanical/tribological properties of polymers.
机译:通过等离子体聚合和沉积将碳氟化合物(FC)膜接枝到Ar等离子体处理过的低密度聚乙烯(LDPE)表面上。用原子力显微镜研究了接枝后的FC薄膜表面形貌的演变。用表面力显微镜进行的纳米级滑动实验提供了在施加法向载荷和滑动循环数方面对有或没有接枝FC膜的Ar等离子体处理的LDPE的纳米摩擦学性能的了解。在微观结构模型的背景下解释了观察到的趋势,该模型考虑了由于等离子体处理(例如,非晶相的选择性蚀刻,链交联和FC膜接枝)和表面滑动(例如,晶片沿滑动方向排列)。纳米压痕实验阐明了等离子体处理对表面粘弹性和整体接触刚度的影响。这项研究的结果表明,FC膜的等离子体辅助接枝是调节聚合物的纳米机械/摩擦学性能的有效表面改性方法。

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