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Friction induced mechanochemical and mechanophysical changes in high performance semicrystalline polymer

机译:摩擦引起的高性能半结晶聚合物的机械化学和机械物理变化

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摘要

By using X-ray photoelectron spectroscopy (XPS) and Fourier transform Raman (FT-Raman) spectroscopy, the worn specimens of polyetheretherketone (PEEK) tested under unlubricated sliding friction and wear conditions at a constant sliding speed were investigated in order to reveal mechanochemically and mechanophysically induced structural changes of polymer as well as wear mechanisms on a molecular scale. Chain scission was found on the worn surface layer. The results suggest that oxidation was the major mechanochemical reaction that followed the chain scission on the top surface. Evidence for chain branching or even crosslinking in bulk materials was also presented. Moreover, two-stage loading dependencies were found for both surface and subsurface in the bulk as revealed through wear rate measurement and wear debris analysis. It was proved that a thermo-activation of polymer segments may be responsible for the transition in the dependence of structure on load. The results of the present work also provide a method (based on spectral analyses) that can be used for studying micromechanisms accounting for shear deformation and failure.
机译:通过使用X射线光电子能谱(XPS)和傅里叶变换拉曼(FT-Raman)光谱,研究了在未润滑的滑动摩擦和磨损条件下以恒定的滑动速度测试的聚醚醚酮(PEEK)的磨损标本,以揭示其机械化学和机械力学诱导的聚合物结构变化以及分子尺度上的磨损机理。在磨损的表层发现断链。结果表明,氧化是主要的机械化学反应,其跟随在顶表面上的断链。还提供了散装材料中链支化甚至交联的证据。此外,通过磨损率测量和磨损碎片分析揭示了散装物料表面和地下的两阶段载荷依赖性。事实证明,聚合物链段的热活化可能是结构对载荷的依赖性转变的原因。本工作的结果还提供了一种方法(基于频谱分析),可用于研究考虑剪切变形和破坏的微观机制。

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