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基于可持续的聚乙二醇载体体系的纤维素纳米纤维/聚乳酸生物纳米复合材料的熔融加工。

Melt-processing of cellulose nanofibril/polylactide bionanocomposites via a sustainable polyethylene glycol-based carrier system.

机构信息

Centre Català del Plàstic, Universidad Politécnica de Cataluña Barcelona Tech (EEBE-UPC), C/Colom, 114, Terrassa 08222, Spain.

Laboratory of Polymeric and Composite Materials, Center of Innovation and Research in Materials & Polymers (CIRMAP), Materia Nova Research Center & University of Mons (UMONS), 23 Place du Parc, Mons B-7000, Belgium.

出版信息

Carbohydr Polym. 2019 Nov 15;224:115188. doi: 10.1016/j.carbpol.2019.115188. Epub 2019 Aug 10.

Abstract

Considering the appealing need for an industrially viable approach, this works aims at demonstrating the rapid and easy melt processing of Polylactide (PLA) bio-composites reinforced with cellulose nanofibrils (CNF). For this purpose and against to their high propensity to self-aggregate on processing, an aqueous CNF-based suspension in the presence of polyethylene glycol (PEG) followed by a gentle drying way were performed to provide melt-processable CNF-based masterbatches. Morphological observations coupled with rheological analyses confirmed how the strategy of the PEG-based masterbatch approach facilitated the formation of a well-dispersed and strongly interacting CNF network within the polymeric matrix. At temperatures above T, thermo-mechanical characterization showed that the load-bearing capacity of the web-like CNF network was even more apparent and counteracted the PEG plasticizing effect. Thermogravimetric analysis evidenced that in the case of selective positioning at the PLA-PEG interface, CNF mitigated the negative impact of PEG addition on the PLA thermal stability. These results revealed the successfulness of our sustainable organic solvent-free approach to prepare melt-processable CNF masterbatches, which can be readily converted into conventional industrially scalable melt-processing techniques.

摘要

考虑到对工业可行方法的强烈需求,本工作旨在展示用纤维素纳米纤维(CNF)增强的聚乳酸(PLA)生物复合材料的快速简便的熔融加工。为此,针对其在加工过程中易于自聚集的高倾向,采用了含有聚乙二醇(PEG)的基于 CNF 的水性悬浮液,然后采用温和的干燥方法,提供可熔融加工的基于 CNF 的母料。形态观察和流变分析证实了基于 PEG 的母料方法的策略如何促进了在聚合物基体中形成分散良好且相互作用强的 CNF 网络。在 T 以上的温度下,热机械特性表明,网络状 CNF 的承载能力更加明显,并抵消了 PEG 的增塑作用。热重分析表明,在 PLA-PEG 界面处选择性定位的情况下,CNF 减轻了 PEG 加入对 PLA 热稳定性的负面影响。这些结果表明,我们成功地采用了可持续的无有机溶剂方法来制备可熔融加工的 CNF 母料,这些母料可以很容易地转化为传统的工业可扩展的熔融加工技术。

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