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Performance of poly(lactic acid)/cellulose nanocrystal composite blown films processed by two different compounding approaches

机译:聚(乳酸)/纤维素纳米晶体复合吹膜的性能由两种不同的复合方法加工

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This study was aimed to identify the best approach of incorporating cellulose nanocrystals (CNCs) into a poly(lactic acid) (PLA) matrix by examining two different CNC addition approaches. The first approach consisted of melt-blending (MB) PLA and CNCs in a three-piece internal mixer whereas the second method involved direct dry-mixing of PLA and CNCs in a high intensity mixer. The compounded materials were then blown into films and compared in terms of particle dispersion, optical, thermal, molecular weight and barrier properties. Good distribution was achieved by both the direct dry- and MB methods. However, some agglomerations were still present that resulted in reduced transparency of the composite films. Furthermore, the PLA/CNC films thermally degraded during the blending processes indicated by the drop in their molecular weights due to chain scissions. More chain scissions occurred in melt-blended (MB) films than the dry-blended (DB) counterparts. The addition of only 1% CNCs into the PLA matrix by the direct dry- and MB approaches improved the water barrier properties of PLA films by 30% and 24%, and oxygen barrier properties by 60% and 39%, respectively. The inferior performance of the MB films compared to the direct DB counterparts could be attributed to more chain scissions in these films. Thus, the direct dry-blending (DB) process appeared to be the better approach of incorporating CNCs into the PLA matrix. POLYM. ENG. SCI., 58:1965-1974, 2018. (c) 2017 Society of Plastics Engineers
机译:该研究旨在通过检查两种不同的CNC加法方法来鉴定将纤维素纳米晶体(CNC)掺入聚(乳酸)(PLA)基质中的最佳方法。第一种方法包括熔融共混(MB)PLA和三件式内混合器中的CNC,而第二种方法涉及PLA和CNC在高强度混合器中的直接干混。然后将混合的材料吹入薄膜中,并在颗粒分散体,光学,热,分子量和阻隔性方面进行比较。通过直接干燥和MB方法实现良好的分布。然而,一些聚集仍然存在,导致复合膜的透明度降低。此外,PLA / CNC膜在混合过程中热降解,在其分子量下降引起的分子量引起的链缩。在熔融混合(MB)薄膜中发生更多的链条缩写而不是干混(DB)对应物。通过直接干燥和Mb加入仅1%CNC进入PLA基质,接近PLA膜的水阻隔性能分别将PLA膜的水阻隔性能提高了30%和24%,氧气阻隔性分别为60%和39%。与直接DB对应物相比,MB膜的劣质性能可能归因于这些薄膜中的更多链速度。因此,直接干混(DB)过程似乎是将CNC掺入PLA矩阵的更好方法。聚合物。 eng。 SCI。,58:1965-1974,2018。(c)2017塑料工程师协会

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