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首页> 外文期刊>Polymers for advanced technologies >An experimental and theoretical mechanistic analysis of thermal degradation of polypropylene/polylactic acid/clay nanocomposites
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An experimental and theoretical mechanistic analysis of thermal degradation of polypropylene/polylactic acid/clay nanocomposites

机译:聚丙烯/聚乳酸/粘土纳米复合材料热劣化的实验与理论机械分析

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Polypropylene/polylactic acid (PP/PLA) blends containing 5 wt% of nanoclay in presence and absence of an ethylene-butylacrylate-glycidyl methacrylate terpolymer as compatibilizer were prepared by melt-mixing process. A matrix-droplet-type morphology confirmed by transmission electron microscope (TEM) and scanning electron microscopy (SEM) studies is formed in presence and absence of the compatibilizer in which the clay platelets were mainly localized in the polylactic acid (PLA) dispersed phase. Degradation studies by means of thermogravimetry analysis (TGA) and analysis of degradation activation energy (E-a), T-max (maximum degradation temperature), and Delta T (difference between initial and final degradation temperatures) parameters for each polymer component of the system revealed that incorporation of less stable PLA phase to polypropylene (PP) decreases E-a and T-max parameters, and hence, reduces the thermal stability of PP phase, while incorporation of clay nanoplatelets to the neat blend further reduces its thermal stability attributed to their lack of localization in PP phase. Compatibilization of the filled system results in migration of clay nanoplatelets toward PP and improves E-a and T-max of PP phase. On the other hand, the E-a and T-max of PLA phase of the blend were increased with incorporation of clay and its localization within that phase, while compatibilization of the filled system slightly reduces thermal stability of PLA phase due to migration of clay toward PP. A correlation was found between E-a and intensity of the thermogravimetry analysis Fourier-transform infrared spectroscopy (TGA-FTIR) peaks of the evolved products. Using the Criado method, a detailed analysis on degradation mechanism of each component was performed, and the changes in the degradation mechanism of the developed systems were determined.
机译:通过熔融混合过程制备含有5wt%的含有乙烯 - 丁基丙烯酸缩水甘油酯甲基丙烯酸缩水甘油酯作为增容剂的纳米粘土的聚丙烯/聚乳酸(PP / PLA)共混物被熔融混合方法制备。通过透射电子显微镜(TEM)和扫描电子显微镜(SEM)研究证实的基质 - 液滴类型形态在存在和不存在的同容中形成,其中粘土血小板主要置于聚乳酸(PLA)分散相中。通过热重率分析(TGA)的降解研究和降解激活能量(EA),T-MAX(最大降解温度)和ΔT(初始和最终降解温度之间的差异)显示系统的每个聚合物组分的参数掺入较稳定的PLA相对聚丙烯(PP)降低EA和T-MAX参数,因此降低了PP相的热稳定性,同时将粘土纳米片掺入整洁的混合物,进一步降低了其缺乏的热稳定性PP阶段的定位。填充系统的相容化导致粘土纳米片迁移朝向PP并改善PP相的E-A和T-MAX。另一方面,通过在该相中掺入混合物的PLA阶段的EA和T-MAX增加,而填充系统的相容化略微降低了由于粘土的迁移而导致PLA相的热稳定性。在进化产品的傅里叶变换红外光谱(TGA-FTIR)峰之间的E-A和强度之间发现了相关性。使用CRIADO方法,进行了对每个组分的降解机制的详细分析,确定了显影系统的降解机制的变化。

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