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Phase Separation and Segregation Morphology of PCL/PS Blends: Quantitative Effect of the Crystallization Temperature, Composition, and Molecular Weight of PS

机译:PCL / PS共混物的相分离和分离形态:结晶温度,组成和PS分子量的定量效果

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摘要

The phase diagrams for blends of semicrystalline poly(epsilon-caprolactone) (PCL) with amorphous polystyrene (PS) were determined and it was noticed that when molecular weight increases, the critical composition diminishes while its temperature increases. That is the same effect that produces the increase in the polydispersity of PS. From the fitting of phase diagrams of blends of PCL with oligomers and homopolymers of PS, taking into account the polydispersity, it was possible to conclude that the miscibility in these systems is due only by entropic effects. The crystalline fraction as well as the interlamellar spacing increased with crystallization temperature while the volume fraction of the amorphous PCL in the interfibrillar regions increases for the pure PCL and in its blends with low concentration of PS. Increasing the mass fraction of PS increases the average long spacing (L) till a weight fraction of 60%, for higher mass fractions L is almost constant indicating the interfibrillar segregation of PS. The PCL lamellar morphology is not affected when the molecular weight of PS employed is similar or higher than the molecular weight of PCL. If the PS has a higher molecular weight its penetration into the structure is inhibited. (C) 2016 Society of Plastics Engineers
机译:测定具有无定形聚苯乙烯(PCL)的半结晶聚(ε-己内酯)(PCL)的混合物的相图,并注意到当分子量增加时,临界组合物在其温度升高时减少。这与产生PS的多分散性增加的效果相同。从PCL的共混物​​相拟合与PS的寡聚物和均聚物的拟合,考虑到多分散性,可以得出结论,这些系统中的混溶性仅受熵效应所致。结晶馏分以及晶状体间距的结晶温度增加,而在intervibrillar区域中的无定形PCL的体积分数增加纯PCL和其共混物的低浓度Ps。增加Ps的质量分数增加了平均长间距(L)直至60%的重量分数,对于较高的质量分数L几乎是恒定的,表明PS的interfibrillar偏析。当所用PS的分子量相似或高于PCL的分子量时,PCL层层形态不受影响。如果PS具有更高的分子量,则抑制其渗透到结构中。 (c)2016年塑料工程师协会

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