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首页> 外文期刊>Journal of Applied Polymer Science >REINFORCEMENT EFFECT AND MOLECULAR MOTIONS IN SEMICRYSTALLINE PEEK FILMS - MECHANICAL AND PHYSICAL MODELINGS .1.
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REINFORCEMENT EFFECT AND MOLECULAR MOTIONS IN SEMICRYSTALLINE PEEK FILMS - MECHANICAL AND PHYSICAL MODELINGS .1.

机译:半结晶PEK膜中的增强作用和分子运动-机械和物理模型.1。

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摘要

The influence of the crystalline phase on the viscoelastic behavior of poly (aryl ether ether ketone) (PEEK) films is assessed by dynamic mechanical spectrometry. Prediction of the viscoelastic behavior near T-g of semicrystalline films is performed through mechanical and physical modelings. Changes in the ct relaxation induced by the crystalline phase are related to both the mechanical coupling between phases and the decrease in the molecular mobility of chains, which is improved for samples showing a broad crystallite size distribution. Crystalline phase also induces some modifications in the characteristics of the beta spectrum. The reinforcement effect brought by the crystalline phase in such a temperature range is predicted through a mechanical model. Then, changes in tan delta level in the beta(1) region induced by the crystalline phase result from the mechanical coupling between phases. The magnitude of such changes only depends on the crystallinity ratio and it is not controlled by the crystallite size distribution. The crystalline phase also induces changes in the pattern of the beta(2) transition, which could be attributed to modifications in the conformations of the chains near the crystalline entities and/or the magnitude of interactions between chains. Such modifications seem to be sensitive to the thermal history of PEEK samples. (C) 1997 John Wiley & Sons, Inc. [References: 36]
机译:通过动态机械光谱法评估了结晶相对聚(芳醚醚酮)(PEEK)膜粘弹性行为的影响。通过机械和物理模型对半结晶膜的T-g附近的粘弹性行为进行了预测。晶相引起的ct弛豫的变化与相之间的机械耦合和链的分子迁移率的降低有关,这对于显示宽晶粒尺寸分布的样品是改善的。结晶相还会引起β光谱特征的某些修饰。通过机械模型预测在这种温度范围内结晶相带来的增强作用。然后,由晶相引起的β(1)区域中tanδ水平的变化是由相之间的机械耦合引起的。这种变化的幅度仅取决于结晶度比,而不受晶粒尺寸分布的控制。结晶相还引起β(2)跃迁模式的变化,这可能归因于结晶实体附近链构象的修饰和/或链之间相互作用的程度。这种修饰似乎对PEEK样品的热历史敏感。 (C)1997 John Wiley&Sons,Inc. [参考:36]

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