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Poly(lactic acid)/starch composites: Effect of microstructure and morphology of starch granules on performance

机译:聚(乳酸)/淀粉复合材料:淀粉颗粒微观结构和形态对性能的影响

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摘要

Starches used to develop biodegradable composites belong to different botanical sources that exhibit different microstructures and morphologies. This results in confused relationship and no comparison of data for applications. In this work, the most popular ten different starches were used as model materials to investigate the relationship between starch microstructure and the performance of poly(lactic acid) (PLA)/starch composites. It was found that: (a) composites filled with either well-sized (small-sized and non-agglomerated) starch granules or those containing high amylose content (G-50 and G-80) improves the reinforcing ability of PLA, with least reduction in deformation; (b) aggregation tendency of small-sized starch granules can be controlled using surface modification approach that not only reduces the phase-separation between starch and PLA but also improves the dispersion; and (c) no discernible relationship exists between the starches, from different botanical sources, and the thermal performance of PLA/starch composites. The results provide practical guidelines to develop starch-based biodegradable composites for commercial applications. (c) 2017 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2017, 134, 45504.
机译:用于开发生物降解复合材料的淀粉属于具有不同微观结构和形态的不同植物来源。这导致困惑的关系,而且没有比较应用程序。在这项工作中,最受欢迎的十种不同的淀粉被用作模型材料,以研究淀粉微观结构与聚(乳酸)/淀粉复合材料的性能。发现:(a)填充有井尺寸(小尺寸和非聚集的)淀粉颗粒或含有高淀粉糖含量(G-50和G-80)的复合材料,提高了PLA的增强能力,最小减少变形; (b)可以使用表面改性方法控制小尺寸淀粉颗粒的聚集趋势,这不仅降低了淀粉和PLA之间的相位分离,而且还改善了分散体; (c)淀粉之间没有可辨别的关系,来自不同植物来源和PLA /淀粉复合材料的热性能。结果提供了开发基于淀粉的可生物降解复合材料的实用指南,用于商业应用。 (c)2017 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2017,134,45504。

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