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Non-Isothermal Crystallization Kinetics of Graphene Oxide-Carbon Nanotubes Hybrids / Polyamide 6 Composites

机译:石墨烯氧化碳纳米管杂交种/聚酰胺6复合材料的非等温结晶动力学

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摘要

The hybrids combined by nano-materials with different dimensions usually possess much better enhancement effects than single one. Graphene oxide-carbon nanotubes hybrids / polyamide 6 composites has been fabricated. The non-isothermal crystallization kinetics of the as-prepared samples was discussed. Research results showed that increasing the cooling rate was in favor of increasing the crystallization rate and the degree of crystallinity for the as-prepared samples. Moreover, the crystallization rate was first decreased and then increased with increasing the hybrids loading. Furthermore, the crystallization mechanism was changed with increasing the crystallization temperature and the cooling rate. The nucleation and growth modes of the non-isothermal crystallization could be classified into three different types, according to the Ozawa's theory. These complicated results could be attributed to the important role of crystallization rate as well as the simultaneous hindering and promoting effects of the as-prepared hybrids. This work has reference values for understanding the crystallization kinetics of the polyamide 6-based composites.
机译:由不同尺寸的纳米材料组合的杂种通常具有比单一的更好的增强效果。石墨烯氧化碳 - 碳纳米管杂种/聚酰胺6复合材料已经制造。讨论了原制样品的非等温结晶动力学。研究结果表明,增加冷却速率有利于增加制备样品的结晶速率和结晶度。此外,首先将结晶速率降低,然后随着杂种载荷的增加而增加。此外,随着结晶温度和冷却速率的增加而改变结晶机制。根据Ozawa的理论,可以将非等温结晶的成核和生长模式分为三种不同类型。这些复杂的结果可能归因于结晶率的重要作用以及制备的杂种的同时妨碍和促进效果。该工作具有用于理解聚酰胺6种复合材料的结晶动力学的参考值。

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