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首页> 外文期刊>Journal of Applied Polymer Science >Morphology, Rheological Behavior, and Thermal Stability of PLA/PBSA/POSS Composites
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Morphology, Rheological Behavior, and Thermal Stability of PLA/PBSA/POSS Composites

机译:PLA / PBSA / POSS复合材料的形态,流变行为和热稳定性

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Octavinyl POSS (vPOSS) and epoxycyclohexyl POSS (ePOSS) were separately incorporated into the poly(lactic acid)/poly(butylene succinate-co-adipate) (PLA/PBSA) blend by melt mixing. Field emission scanning electron microscopy and X-ray diffraction analysis revealed that vPOSS existed as crystalline aggregates, whereas ePOSS was more uniformly dispersed in the composites. The storage modulus and complex viscosity slightly decreased after the addition of vPOSS but Significantly increased after the addition of ePOSS, indicating the higher melt elasicity and broader processing window of the PLA/PBSA after the addition of ePOSS. The chloroform solutions of PLA/PBSA/ePOSS composites were turbid in appearance, and the extracted POSS showed absorbant peaks assigned to the vibration of -OH and -C = O groups in the Fourier transform infrared spectroscopy analysis, indicating the reactions between ePOSS and the PLA/PBSA. Polarized optical microscopy analysis revealed that the two types Of POSS Could act as nucleating agents for PLA, and enhance its crystallization ability. Thermal gravimetric analysis showed that the addition of the two types of POSS increased the decomposition temperature and activation energy, consequently retarding the thermal degradation of PLA/PBSA. The retardation of degradation is more significant with the addition of ePOSS, for the reactions reduced the end groups of PLA/PBSA as well as the Molecular chain mobility.
机译:通过熔融混合将八乙烯基POSS(vPOSS)和环氧环己基POSS(ePOSS)分别掺入聚(乳酸)/聚(丁二酸丁二酸酯-共-己二酸酯)(PLA / PBSA)共混物中。场发射扫描电子显微镜和X射线衍射分析表明,vPOSS以结晶聚集体形式存在,而ePOSS更均匀地分散在复合材料中。添加vPOSS后,储能模量和复数粘度略有下降,但添加ePOSS后,储能模量和复数粘度显着增加,表明添加ePOSS后PLA / PBSA的熔体易变性较高,加工窗口更宽。 PLA / PBSA / ePOSS复合材料的氯仿溶液外观呈浑浊,在傅立叶变换红外光谱分析中,提取的POSS表现出与-OH和-C = O基团振动相关的吸收峰,表明ePOSS与EPOSS之间的反应PLA / PBSA。偏振光学显微镜分析表明,两种类型的POSS可以充当PLA的成核剂,并增强其结晶能力。热重分析表明,两种POSS的加入增加了分解温度和活化能,因此阻碍了PLA / PBSA的热降解。加入ePOSS后,降解的阻滞作用更为显着,因为该反应降低了PLA / PBSA的端基以及分子链的迁移率。

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