首页> 外文期刊>Composites >Improvement and analysis of fibre/matrix adhesion of regenerated cellulose fibre reinforced PP-, MAPP- and PLA-composites by the use of Eucalyptus globulus lignin
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Improvement and analysis of fibre/matrix adhesion of regenerated cellulose fibre reinforced PP-, MAPP- and PLA-composites by the use of Eucalyptus globulus lignin

机译:球状桉木木质素对再生纤维素纤维增强PP,MAPP和PLA复合材料的纤维/基体粘合性的改善和分析

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摘要

The presented study investigates the influence of Eucalyptus globulus lignin as a natural additive on the fibre/matrix interaction of lyocell (regenerated cellulose fibre) in different matrices (polylactide - PLA, polypropylene - PP, maleic-anhydride-grafted-PP - MAPP). For this purpose, lyocell fibres were treated with a lignin-ethanol solution. It was shown that the fibre tensile strength was not affected by the lignin-treatment. The viscosity of the PLA matrix was reduced by adding lignin. This effect might lead to a better wettability of the fibres but the mechanical characteristics of PLA were not affected by the treatment. Apparent fibre/matrix adhesion was assessed using a single fibre pull-out test and a single fibre fragmentation test. Both testing procedures revealed a trend of improved interfacial shear strength for the lignin-treated fibres compared with untreated fibres for all investigated matrices. Additionally the apparent interfacial shear strength was investigated with short bending tests and double-notched tensile tests on lyocell/PLA composites. A significant increase was observed for lignin-treated composites compared to untreated composites. Microscopic investigations revealed a rougher fibre surface with lignin particles. The higher specific fibre surface can also lead to improved apparent fibre/matrix interaction. Furthermore, it is hypothesised that van-der-Waals forces between the hydrophilic fibres and the more hydrophobic matrix are favoured by the less hydrophobic character of lignin.
机译:这项研究调查了桉树木质素作为天然添加剂对不同基质(聚乳酸-PLA,聚丙烯-PP,马来酸酐接枝PP-MAPP)中的莱赛尔纤维(再生纤维素纤维)的纤维/基质相互作用的影响。为此目的,用木质素-乙醇溶液处理莱赛尔纤维。结果表明,纤维抗张强度不受木质素处理的影响。通过添加木质素可降低PLA基质的粘度。这种作用可能导致纤维更好的润湿性,但是PLA的机械特性不受处理的影响。使用单根纤维拉出试验和单根纤维断裂试验评估表观纤维/基质粘合力。两种测试方法均表明,与木质素处理过的纤维相比,所有研究基质的界面抗剪强度都有提高的趋势。另外,通过对莱赛尔/ PLA复合材料的短时弯曲试验和双缺口拉伸试验研究了表观界面剪切强度。与未处理的复合物相比,观察到木质素处理的复合物显着增加。显微镜下的调查显示,纤维表面较粗糙,带有木质素颗粒。较高的比纤维表面还可以改善表观纤维/基体的相互作用。此外,假设木质素的疏水性较低有利于亲水性纤维与疏水性更高的基质之间的范德华力。

著录项

  • 来源
    《Composites》 |2014年第11期|117-125|共9页
  • 作者单位

    University of Applied Sciences Bremen, Dept. Biomimetics, The Biological Materials Group, Neustadtswall 30, D-28199 Bremen, Germany;

    Faserinstitut Bremen e.V., Am Biologischen Garten 2, D-28359 Bremen, Germany;

    Institute for Polymer Materials and Plastics Processing, Clausthal University of Technology, Agricolastr. 6, D-38678 Clausthal-Zellerfeld, Germany;

    University of Applied Sciences Bremen, Dept. Biomimetics, The Biological Materials Group, Neustadtswall 30, D-28199 Bremen, Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A. Thermoplastic resin; B. Fibre/matrix bond; D. Mechanical testing; E. Surface treatments; Lignin;

    机译:A.热塑性树脂;B.纤维/基质键;D.机械测试;E.表面处理;木质素;

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