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Poly(lactic acid)-Based in Situ Microfibrillar Composites with Enhanced Crystallization Kinetics, Mechanical Properties, Rheological Behavior, and Foaming Ability

机译:基于聚乳酸的原位微原纤复合材料,具有增强的结晶动力学,机械性能,流变行为和起泡能力

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Melt blending is one of the most promising techniques for eliminating poly(lactic acid)'s (PLA) numerous drawbacks. However, success in a typical melt blending process is usually achieved through the inclusion of high concentrations of a second polymeric phase which can compromise PLA's green nature. In a pioneering study, we introduce the production of in situ microfibrillar PLA/polyamide-6 (PA6) blends as a cost-effective and efficient technique for improving PLA's properties while minimizing the required PA6 content. Predominantly biobased products, with only 3 wt % of in situ generated PA6 microfibrils (diameter approximate to 200 nm), were shown to have dramatically improved crystallization kinetics, mechanical properties, melt elasticity and strength, and foaming-ability compared with PLA. Crucially, the microfibrillar blends were produced using an environmentally friendly and cost-effective process. Both of these qualities are essential in guarantying the viability of the proposed technique for overcoming the obstacles associated with the vast commercialization of PLA.
机译:熔融共混是消除聚乳酸(PLA)众多缺点的最有前途的技术之一。但是,通常通过掺入高浓度的第二聚合物相(通常会损害PLA的绿色特性)来成功完成典型的熔融共混过程。在一项开创性研究中,我们介绍了原位微原纤PLA /聚酰胺6(PA6)共混物的生产,作为一种经济高效的技术,可改善PLA的性能,同时将所需的PA6含量降至最低。与PLA相比,以生物基产品为主要成分的原位生成的PA6微纤维(直径约200 nm)只有3 wt%,具有显着改善的结晶动力学,机械性能,熔体弹性和强度以及发泡能力。至关重要的是,微原纤混合物是采用环保且经济高效的工艺生产的。在保证所提出的技术的可行性以克服与PLA大规模商业化相关的障碍方面,这两种品质都是必不可少的。

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