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Rheological study of crystallization behavior of polylactide and its flax fiber composites

机译:聚丙烯通酯及其亚麻纤维复合材料结晶行为的流变研究

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In this work, the isothermal crystallization of compounded polylactide (PLA) and PLA-flax fiber composites was investigated by means of rheometry using small amplitude oscillatory shear (SAOS). The rheological measurements were carried out in parallel plate flow geometry at a crystallization temperature (T-c) ranging from 110 to 140 degrees C. In addition, the effect of shear on polylactide crystallization was studied at 140 degrees C. Rheological behavior in the molten state was employed to predict the initial viscosity in the Tc interval by applying time-temperature superposition, and results were found to be in agreement with experimental values at low crystallization rates. A simple empirical model was also used to determine the crystallization induction time in a wide range of supercooling conditions. The evolution of the complex viscosity under quiescent conditions of the PLA-based flax-fiber composite indicated an enhancement of the rate of crystallization due to the presence of cellulosic fibers, while shear flow effectively accelerated the crystallization of neat PLA. This work shows that rheometry is an accurate technique for analyzing the crystallization behavior of polymers in a temperature range which presents low to very low crystallization rates, which is the case for PLA at T >= 130 degrees C.
机译:在这项工作中,通过使用小振幅振荡剪切(SAOS)通过流变学研究了复合聚物(PLA)和PLA-亚麻纤维复合材料的等温结晶。在从110-140℃的结晶温度(Tc)的平行板流几何形状中在平行板流几何形状中进行流变测量。此外,在140℃下研究剪切对聚丙环结晶的影响。熔融状态下的流变行为是用于通过施加时间温度叠加预测TC间隔中TC间隔中的初始粘度,并且发现结果与低结晶率的实验值一致。还用于在各种过冷条件下确定结晶诱导时间的简单实证模型。 PLA基亚麻纤维复合材料的静态条件下复杂粘度的演变表明由于纤维素纤维的存在而产生结晶速率,而剪切流动有效地加速了整洁PLA的结晶。该工作表明,流变学是用于分析聚合物在温度范围内的结晶行为的准确技术,其呈低至非常低的结晶速率,这是PLA在T> = 130℃的情况下的情况。

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