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Enhancing resistance of poly(ether ketone ketone) to high-temperature steam through crosslinking and crystallization control

机译:通过交联和结晶对照增强聚(醚酮酮)至高温蒸汽的抗性

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摘要

Poly(aryl ether ketone)s (PAEKs) are promising materials for harsh environments, such as in high-temperature steam applications. Here, the effect of high-temperature steam on the crystallinity and mechanical properties of existing poly(ether ether ketone) (PEEK) and PEKK(T/I) polymers is investigated. Differential scanning calorimetry (DSC), wide-angle X-ray scattering or diffraction (WAXD), and dynamic mechanical analysis experiments show these materials undergo significant crystallization and reorganization after prolonged exposure to steam and suffer from embrittlement. In addition, we show that xanthydrol-based crosslinks can provide the dimensional stability and stabilize the PEKK crystal structure. Mechanical tests demonstrate that the ductility is preserved for longer exposures to steam compared to neat PEKK, whereas DSC and WAXD data indicate xanthydrol crosslinks effectively stabilize the crystal structure against steam-assisted crystallization. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 47727.
机译:聚(芳基醚酮)S(PAEK)是用于恶劣环境的有希望的材料,例如在高温蒸汽应用中。这里,研究了高温蒸汽对现有聚(醚醚酮)(PEEK)和PEKK(T / I)聚合物的结晶度和力学性能的影响。差分扫描量热法(DSC),广角X射线散射或衍射(WAXD),以及动态的机械分析实验表明,这些材料在长时间暴露于蒸汽后经历显着的结晶和重组,并遭受脆化。此外,我们表明Xanthydrol基交联可以提供尺寸稳定性并稳定PEKK晶体结构。机械测试表明,与整齐的PEKK相比,将延展性保存为蒸汽的更长曝光,而DSC和WAXD数据表明Xanthydrol交联有效地稳定晶体辅助结晶的晶体结构。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,136,47727。

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