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Non-Isothermal Crystallization Kinetics of Short Glass Fiber Reinforced Poly (Ether Ether Ketone) Composites

机译:短玻璃纤维增​​强聚(醚醚酮)复合材料的非等温结晶动力学

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摘要

Due to its excellent chemical and temperature resistances, short glass fiber reinforced poly (ether ether ketone) composite (SGF/PEEK) is a promising material for application in automotive lightweight. Processing conditions, such as cooling rate, need to be well controlled to obtain the optimal crystallite morphology of PEEK composites. Thus, in this paper, the non-isothermal crystallization kinetics and melting behavior of SGF/PEEK were investigated by differential scanning calorimetry (DSC) at different cooling rates, and the crystallite sizes were evaluated by the X-ray diffraction technique (XRD). Crystallization kinetics models and effective activation energies were evaluated to determine the crystallization parameters of the composites. The results suggest that a lower cooling rate enlarges the size of crystallites and enhances the uniformity of size distribution. The addition of glass fibers improves the nucleation rate owing to heterogeneous nucleation while decreasing the growth rate due to retarded movement of the polymer chain. The combined Avrami-Ozawa equation was shown to describe accurately the non-isothermal crystallization. The absolute value of the crystallization activation energy for SGF/PEEK is lower than that of pure PEEK.
机译:由于其优异的化学和温度电阻,短玻璃纤维增​​强的聚(醚醚酮)复合(SGF / PEEK)是用于在汽车的轻量级应用有前途的材料。处理条件,如冷却速率,需要很好地控制,以获得PEEK复合材料的最佳晶粒形态。因此,在本文中,非等温结晶动力学和SGF / PEEK的熔化行为通过差示扫描量热法(DSC)以不同的冷却速率调查,微晶尺寸是由X-射线衍射法(XRD)来评价。结晶动力学模型和有效活化能进行评估,以确定该复合材料的结晶参数。结果表明,较低的冷却速度增大微晶的尺寸和提高尺寸分布的均匀性。在加入玻璃纤维的改善由于异质成核,同时降低的生长速率,由于聚合物链的延迟运动成核速率。将合并的阿夫拉米-Ozawa方程显示出准确地描述非等温结晶。为SGF / PEEK结晶活化能的绝对值比纯PEEK的低。

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