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Preparation and structural evaluation of nano reinforced composites from cellulose whiskers of grass and biodegradable polymer matrix

机译:由草纤维素须和可降解聚合物基体制备的纳米增强复合材料及其结构评价

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Biocomposites of polylactic acid with cellulose whiskers from grass were prepared and reinforced with nanolayer-filled ionomer (Surlyn?). Three types of polymer composites were fabricated by filling the whiskers in polylactic acid at 5, 10, and 15% concentration. The analysis of resulting products was conducted by monitoring the functional group variation, crystallinity, and thermal behavior. The addition of clay-filled ionomer appeared to enhance the interfacial adhesion between filler and matrix by chemical and physical bonding. The migration tendency of different components inside silicate layers was also studied where the confinement of host polymer chains occurred between clay platelets, after modification through ionomer.
机译:制备了聚乳酸与草中的纤维素晶须的生物复合材料,并用纳米层填充的离聚物(Surlyn?)进行了增强。通过将晶须填充到浓度为5%,10%和15%的聚乳酸中,可以制造出三种类型的聚合物复合材料。通过监测官能团变化,结晶度和热行为来进行所得产物的分析。粘土填充离聚物的加入似乎通过化学和物理键合增强了填料与基体之间的界面粘合力。还研究了不同组分在硅酸盐层内部的迁移趋势,其中在通过离聚物改性后,在粘土薄片之间发生了主聚合物链的约束。

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