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Preparation and Physical Properties of Polylactide/ Cellulose Nanowhisker/Nanoclay Composites

机译:聚乳酸/纤维素纳米晶须/纳米粘土复合材料的制备及物理性能

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Polylactide (PLA) has been getting lots of interests in step with global concerns on sustainable green technology because it is biodegradable with reasonable mechanical strength and can be processed quite easily. But, to compete with commodity polymers in the market PLA-based green composites need to have higher mechanical and thermal properties. Therefore, in this study, cellulose nanowhiskers (CNWs) as well as nanoclay were used as nanofillers to improve physical properties of PLA. CNWs were prepared from micro-crystalline cellulose (MCC) powder by acid hydrolysis, and confirmed by TEM. To improve interfacial bonding between PLA and CNWs maieic anhydride-grafted PLA (MAPLA) was prepared and used as a compatibilizer. PLA-based composites were prepared by melt mixing followed by compression molding. Mechanical properties of the composites were measured by UTM and DMA. The melt mixing conditions were optimized first, and then composition was optimized step by step to obtain a PLA-based green composite with excellent physical properties. CNWs were much better than MCC powder as reinforcing natural fillers. MAPLA and nanoclay could improve considerably physical properties of the PLA-based composites. Compared to the PLA/ MCC composite the tensile strength of the PLA/CNW/ MAPLAanoclay composite was almost doubled and the glass transition temperature of the composite was 23 C higher, making the composite possible for commercial applications.
机译:聚丙交酯(PLA)已引起全球广泛关注,与全球对可持续绿色技术的关注保持一致,因为它可以生物降解并具有合理的机械强度,并且易于加工。但是,为了与市场上的商品聚合物竞争,基于PLA的绿色复合材料需要具有更高的机械和热性能。因此,在这项研究中,纤维素纳米晶须(CNW)和纳米粘土被用作纳米填料,以改善PLA的物理性能。 CNW由微晶纤维素(MCC)粉末经酸水解制备,并通过TEM证实。为了改善PLA与CNW之间的界面键合,制备了酸酐酐接枝的PLA(MAPLA),并用作增容剂。通过熔融混合然后压缩成型制备基于PLA的复合材料。通过UTM和DMA测量复合材料的机械性能。首先优化熔体混合条件,然后逐步优化组成,以获得具有优异物理性能的PLA基绿色复合材料。 CNW作为增强天然填料比MCC粉末好得多。 MAPLA和纳米粘土可以显着改善PLA基复合材料的物理性能。与PLA / MCC复合材料相比,PLA / CNW / MAPLA /纳米粘土复合材料的拉伸强度几乎提高了一倍,并且复合材料的玻璃化转变温度高23 C,使该复合材料可用于商业用途。

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