首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >A more reliable DSC-based methodology to study crystallization kinetics: Application to poly(ether ketone ketone) (PEKK) copolymers
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A more reliable DSC-based methodology to study crystallization kinetics: Application to poly(ether ketone ketone) (PEKK) copolymers

机译:一种更可靠的基于DSC的方法,用于研究结晶动力学:应用于聚(醚酮酮)(PEKK)共聚物的应用

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摘要

To quantify the isothermal crystallization kinetics of poly(ether ketone ketone) (PEKK), the integration of the crystallization peak measured using differential scanning calorimetry is rendered difficult due to the thermal transient effects at the start of enthalpy recording. The different attempts to extrapolate this peak beginning often lead to false values of the Avrami exponent. A new crystallization kinetic assessment method is established here based on the derivative of the Hillier crystallization kinetic model. This method consists of directly fitting the transformation rate to the heat flow of the experimental crystallization, thus avoiding the extrapolation of the crystallization peak beginning. This method is successfully applied to two different PEKK grades with different crystallization kinetics. The identified crystallization parameters are modelled as a function of the crystallization temperature, and based on these modeling results, time-temperature-transformation diagrams of crystallinity were built to provide a useful tool for PEKK processing.
机译:为了量化聚(醚酮酮)(PEKK)的等温结晶动力学,由于焓记录开始时的热瞬态效应,使用差示扫描量热法测量的结晶峰的积分表示困难。外推的不同尝试该峰值开始往往导致Avrami指数的假值。这里基于希尔尔结晶动力学模型的衍生物建立了一种新的结晶动力学评估方法。该方法包括直接将转化率直接拟合到实验结晶的热流中,从而避免了结晶峰开始的外推。该方法成功地应用于具有不同结晶动力学的两种不同的PEKK等级。所识别的结晶参数被建模为结晶温度的函数,并且基于这些建模结果,构建了结晶度的时间温度变换图,以提供用于PEKK处理的有用工具。

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