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Friction-induced surface textures of liquid crystalline polymer evaluated by atomic force microscopy, spectroscopy and nanoindentation

机译:用原子力显微镜,光谱和纳米凸缘评估的液晶聚合物的摩擦诱导的表面纹理

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The main-chain thermotropic liquid crystalline polymer (LCP), Vectra A950, has been reported to be able to simultaneously lower dynamic friction coefficient and wear rate when introduced into poly(vinylidene fluoride) (PVDF) as lubricant. In this investigation, we evaluate the friction surfaces of Vectra A950 through atomic force microscopy (AFM), spectroscopy and nanoindentation. By AFM, various frozen nanometer-level textures are observed at friction surfaces of LCP particles after cessation of friction. Besides, orientation and microscopic hardness of textures for Vectra A950 are unveiled via polarized Raman spectroscopy and nanoindentation tests, respectively. It is worth noting that as an important hint of orientation for LCPs under shear, observation of LCPs textures is conventionally conducted at molten state by polarized-light optical microscope and shear apparatus, however, which hardly detects textures morphology at solid state. Overall, this investigation not only proposes a new approach to evaluate textures of LCPs, but also provides guide for further exploring tribological enhancement mechanism of LCPs.
机译:据报道,主链热液液晶聚合物(LCP),Vectra A950,当被引入聚(偏二氟乙烯)(PVDF)作为润滑剂时,能够同时降低动态摩擦系数和磨损率。在该研究中,通过原子力显微镜(AFM),光谱和纳米凸缘,评估Vectra A950的摩擦表面。通过AFM,在摩擦停止后,在LCP颗粒的摩擦表面下观察到各种冷冻纳米级纹理。此外,VectRA A950的纹理的取向和微观硬度分别通过偏振拉曼光谱和纳米肾镜检测推出。值得注意的是,作为在剪切下的LCP的取向的重要提示,通过偏振光光学显微镜和剪切装置在熔融状态下观察LCPS纹理,这几乎不会检测到固态处的纹理形态。总体而言,这项调查不仅提出了一种评估LCP纹理的新方法,还提供了进一步探索LCP的摩擦增强机制的指南。

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