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Toward high performance renewable agave reinforced biocomposites: Optimization of fiber performance and fiber-matrix adhesion analysis

机译:迈向高性能可再生龙舌兰增强生物复合材料:纤维性能和纤维基质粘附分析的优化

摘要

The increasing sensitivity toward the environmental pollution and the recent laws on the environmental protection, have led to an increasing attention to the so called biocomposites, i.e. to ecofriendly or renewable composite materials, obtained from biopolymers reinforced by natural fibers. Although the contribution of various works reported in literature, focused on biocomposites reinforced by agave fibers, such materials are still exclusively used in the automotive industry for non-structural applications, and the implementation of high performance biocomposites for semi-structural and structural applications, is an expected, but not yet reached objective. Therefore, the present work aims to give a contribution to reach such an objective, by means of a proper selection of the fiber, in terms of variety, age and position, as well as by the implementation of a new ecofriendly fiber extraction method that allows the user to obtain fibers with improved mechanical performance. In more detail, it is shown that the agave marginata, widespread in the Mediterranean area, provides fiber with performance higher than the agave sisalana commonly considered in literature, and its performance can be furtherly improved by proper optimization of the main influence parameters and the extraction process. On the basis of these optimized fibers, as well as of thermoplastic and thermosetting matrixes, particularly suitable for the manufacturing of high performance ecofriendly biocomposites, an accurate theoretical-experimental analysis on the fiber-matrix adhesion has allowed first to confirm the good adhesion of the agave with epoxy and PLA matrixes, as well as to detect the actual influence of the mercerization treatments and the significant effects of the stiffness of the coupled materials on the potential pull-out and/or debonding damage mechanisms.
机译:对环境污染的敏感性和最近的环境保护法越来越引起人们对所谓的生物复合材料的关注,即所谓的生物复合材料,即从天然纤维增强的生物聚合物中获得的环保或可再生复合材料。尽管文献报道了各种工作的贡献,这些工作集中在用龙舌兰纤维增强的生物复合材料上,但这些材料仍仅用于汽车行业的非结构性应用,而高性能生物复合材料在半结构和结构性应用中的应用正在不断发展。预期但尚未达到的目标。因此,本工作旨在通过适当选择纤维的品种,年龄和位置,以及实施一种新的环保纤维提取方法,为实现这一目标做出贡献。用户可获得具有改善的机械性能的纤维。更详细地显示,龙舌兰边缘分布在地中海地区,提供的纤维性能高于文献中通常认为的龙舌兰剑麻,通过适当优化主要影响参数和提取可以进一步改善其性能。处理。在这些优化的纤维以及热塑性和热固性基质的基础上,特别适合于制造高性能的生态友好型生物复合材料,对纤维与基质之间的粘附力进行了精确的理论-实验分析,从而首先证实了其良好的粘附性。与环氧树脂和PLA基质的龙舌兰,以及检测丝光处理的实际影响以及耦合材料的刚度对潜在的拔出和/或脱胶损坏机理的重大影响。

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  • 作者

    Zuccarello B.; Zingales M.;

  • 作者单位
  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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