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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Crystallization kinetics and melting behaviors of nylon 6/foliated graphite nanocomposites
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Crystallization kinetics and melting behaviors of nylon 6/foliated graphite nanocomposites

机译:尼龙6 /叶状石墨纳米复合材料的结晶动力学和熔融行为

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This article studies the crystallization kinetics and melting behaviors of nylon 6/foliated graphite electrically conducting nanocomposites.The crystallization kinetics under isothermal conditions is described by the Avrami equation.The values of the exponent found for the neat nylon 6 and the nancomposite samples are about 3.0 and 1.2,respectively.For non-isothermal studies,the Avrami equation modified by Jeziorny,the Ozawa theory,the modified Ozawa equation and an equation combining the Avrami and Ozawa equation are employed.It is found that the Ozawa analysis fails to provide an adequate description of the non-isothermal crystallization process in both the neat nylon 6 and the nanocomposite samples.While the combination of Avrami and Ozawa equations exhibit great advantages in treating the non-isothermal crystallization kinetics.The activation energies are also determined by the Arrhenius relation and the Kissinger method for isothermal and non-isothermal crystallization,respectively.In both cases,the activation energy for the nanocomposite sample is greater than that for the neat nylon 6.In addition,subsequent DSC scans have also been performed to investigate the melting behaviors of the isothermally and non-isothermally crystallized samples.Results reveal that the isothermally crystallized samples exhibit two melting endotherms,while oly the neat nylon 6 sample shows two melting endotherms after non-isothermal crystallization.The equilibrium melting temperature obtained as lower for the nanocomposite sample than for the neat nylon 6.
机译:本文研究了尼龙6 /片状石墨导电纳米复合材料的结晶动力学和熔融行为,用Avrami方程描述了等温条件下的结晶动力学,纯尼龙6和纳米复合材料样品的指数约为3.0。对于非等温研究,分别采用了Jeziorny修正的Avrami方程,Ozawa理论,修正的Ozawa方程以及结合了Avrami和Ozawa方程的方程。发现Ozawa分析无法提供足够的信息。纯尼龙6和纳米复合材料样品的非等温结晶过程的描述.Avrami和Ozawa方程的组合在处理非等温结晶动力学方面显示出很大的优势。活化能还由Arrhenius关系式和等温和非等温结晶的基辛格方法在两种情况下,纳米复合材料样品的活化能均大于纯尼龙6的活化能。等温结晶的样品表现出两个熔融吸热,而纯净的尼龙6样品在非等温结晶后显示两个熔融吸热。纳米复合材料样品的平衡熔融温度比纯尼龙6的低。

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