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Plasticization of Polylactide after Solidification: An Effectiveness and Utilization for Correct Interpretation of Thermal Properties

机译:凝固后的聚丙环塑化:正确解释热性能的有效性和利用

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Polylactide/triethyl citrate (PLA/TEC) systems were prepared in two ways by introducing TEC to solidified polymer matrix (SS) and by blending in a molten state (MS) to investigate the effectiveness of the plasticization process after solidification of polylactide. The plasticization processes, independent of the way of introducing the TEC into PLA matrix, leads to systems characterized by similar stability, morphology, and properties. Some differences in mechanical properties between MS and SS systems result primarily from the difference in the degree of crystallinity/crystal thickness of the PLA matrix itself. Based on the presented results, it was concluded that the plasticization process after solidification of polylactide is an alternative to the conventional method of modification-blending in a molten state. Then, this new approach to plasticization process was utilized for the interpretation of thermal properties of PLA and PLA/TEC systems. It turned out that double melting peak observed at differential scanning calorimetry (DSC) thermograms does not result from the melting of a double population of crystals with different lamellar thickness, or the melting of both the ff0 and ff crystalline phase (commonly used explanations in literature), but is associated with the improvement of perfection of crystalline structure of PLA during heating process.
机译:通过将TEC引入凝固的聚合物基质(SS)并通过在熔融状态(MS)中以两种方式制备聚酰胺/三乙基柠檬酸酯(PLA / TEC)系统,以研究塑化过程在聚丙酰基凝固后的塑化过程的有效性。塑化过程与将TEC引入PLA矩阵的方式,导致具有相似稳定性,形态和性质的系统。 MS和SS系统之间的机械性能的一些差异主要来自PLA矩阵本身的结晶度/晶体厚度的差异。基于所呈现的结果,得出结论是,凝固聚物凝固后的塑化过程是常规修饰熔融状态的常规修饰方法的替代方法。然后,利用这种新的塑化过程方法来解释PLA和PLA / TEC系统的热性质。事实证明,在差示扫描量热法(DSC)热图中观察到的双熔峰不会由具有不同层状厚度的双晶体熔化,或FF0和FF结晶相的熔化(文献中常用的解释),但在加热过程中改善PLA结晶结构的完善相关。

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