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Synthesis Structure Crystallization and Mechanical Properties of Isodimorphic PBS-ran-PCL Copolyesters

机译:IsodiMorphic PBS-RAN-PCL共聚酯的合成结构结晶和力学性能

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摘要

Isodimorphic behavior is determined by partial inclusion of comonomer segments within the crystalline structure and arises from the comparatively similar repeating chain units of the parental homopolymers. Isodimorphic random copolymers are able to crystallize irrespective of their composition and exhibit a pseudo-eutectic behavior when their melting point values are plotted as a function of comonomer content. At the pseudo-eutectic point or region, two crystalline phases can coexist. On the right-hand and the left-hand side of the pseudo-eutectic point or region, only one single crystalline phase can form which is very similar to the crystalline structures of the parent homopolymers. This article aims to study the synthesis method, structure, crystallization behavior and mechanical properties of isodimorphic random PBS-ran-PCL copolyesters. Moreover, this study provides a comprehensive analysis of our main recent results on PBS-ran-PCL random copolyesters with three different molecular weights. The results show that the comonomer composition and crystallization conditions are the major factors responsible for the crystalline morphology, crystallization kinetics and mechanical performance of isodimorphic random copolyesters. Our studies demonstrate that in the pseudo-eutectic region, where both crystalline phases can coexist, the crystallization conditions determine the crystalline phase or phases of the copolymer. The relationships between the comonomer composition and mechanical properties are also addressed in this work.
机译:通过部分包含结晶结构内的共聚单体区段来决定的同学行为,并且由父母均聚物的相对相似的重复链单元产生。无论它们的熔点值如何绘制为共聚单体含量,当它们的组合物时,能够与其组合物结晶,并且在其熔点值绘制时表现出伪共晶行为。在伪共晶点或区域,两个结晶相可以共存。在伪共晶点或区域的右手和左侧,只能形成一个单一结晶相,其与亲本均聚物的晶体结构非常相似。本文旨在研究异杂核随机PBS-RAN-PCL共聚酯的合成方法,结构,结晶行为和力学性能。此外,本研究提供了对PBS-RAN-PCL随机共聚酯的主要最近结果的综合分析,具有三种不同的分子量。结果表明,共聚单体组成和结晶条件是负责晶体形态,结晶动力学和IsodiMorphic随机共聚酯的机械性能的主要因素。我们的研究表明,在伪共晶区域中,在晶相可以共存,结晶条件确定共聚物的结晶相或相。在这项工作中也解决了共聚单体组成和机械性能之间的关系。

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