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Towards a good interphase between bleached kraft softwood fibers and poly(lactic) acid

机译:在漂白牛皮纸软木纤维和聚乳酸之间形成良好的中间相

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An increasing environmental consciousness on society led to the development of materials with a lower environmental impact. In this sense, in the recent years, the substitution of synthetic or mineral fibers by natural fibers, as polyolefin matrices reinforcement, has been an active and interesting topic of research, as well as the development of competitive matrices based on renewable resources. PLA is a biodegradable polymer with higher mechanical properties than polypropylene (PP). Moreover, the interphase between polylactic acid (PLA) and natural fibers, in order to obtain relevant mechanical properties, is still unsolved. Nowadays, and to the best knowledge of the authors, there are few relevant works published about these biodegradable material reinforced showing satisfactory mechanical properties. The present work pretends to obtain PLA biocomposites with a good interphase that allow a relevant improvement on mechanical properties when reinforced. Thus, different amounts of diglyme were added to bleached kraft softwood fibers with the purpose of avoiding fiber agglomeration during compounding. Moreover, stone groundwood (SGW) and fluff pulps were also used as reinforcements. Then, and the results were compared to the previous ones in order to determine the influence both of the lignin on fiber surface, via XPS analysis, and the dispersion within the matrix. The fiber treated with 2/3 of diglyme followed a lineal and positive progression of the tensile strength when increasing reinforcement contents were added. Moreover, the 30 wt% reinforced PLA biocomposite exhibited a tensile strength of the same magnitude than 20 wt% of glass fibers reinforced PP composites, bringing to light the feasibility of substituting the synthetic matrix commodities and obtaining new and biodegradable generation of composites. (C) 2016 Elsevier Ltd. All rights reserved.
机译:随着社会对环境意识的增强,开发出对环境影响较小的材料。从这个意义上讲,近年来,以天然纤维代替合成纤维或矿物纤维作为聚烯烃基体增强材料,以及基于可再生资源的竞争性基体的开发一直是一个活跃而有趣的研究课题。 PLA是一种可生物降解的聚合物,具有比聚丙烯(PP)更高的机械性能。而且,为了获得相关的机械性能,聚乳酸(PLA)和天然纤维之间的界面仍未溶解。如今,就作者所知,关于这些可生物降解的增强材料具有令人满意的机械性能的相关著作很少发表。本工作假装获得具有良好相间相的PLA生物复合材料,在增强时可允许机械性能的相关改善。因此,将不同量的二甘醇二甲醚加入到漂白的牛皮纸软木纤维中,目的是避免复合过程中纤维的团聚。此外,石磨木(SGW)和绒毛浆也被用作增强材料。然后,将结果与先前的结果进行比较,以便通过XPS分析确定木质素对纤维表面的影响以及基质中的分散度。当添加增加的增强剂含量时,用2/3二甘醇二甲醚处理的纤维遵循线性且正的拉伸强度增长。此外,30%(重量)增强的PLA生物复合材料的拉伸强度与玻璃纤维增​​强的PP复合材料的20%(重量)相同,从而揭示了用合成基质商品替代并获得新的可生物降解的复合材料的可行性。 (C)2016 Elsevier Ltd.保留所有权利。

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