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Study of the flexural modulus of lignocellulosic fibers reinforced bio-based polyamide 11 green composites

机译:木质纤维素纤维增强生物基聚酰胺11绿色复合材料的弯曲模量研究

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摘要

The stiffness of a material has high impact when its industrial use is considered. Moreover, this property has interest in the case of short fiber reinforced materials due to its dependence on the orientation of the fibers against the loads. Due to nowadays-environmental concerns, greener alternatives to oil-based composites are under study and development showing some promising results. In this work, a polyamide 11 reinforced with lignocellulosic fiber composite is evaluated as such sustainable alternative. Previous works showed the suitability of PA11-based composites to replace glass fiber reinforced polypropylene. Nonetheless, there is a lack of information about the flexural modulus behavior of these composites. This is of interest because, under some conditions, flexural modulus is more representative of a material behavior than Young's modulus. The flexural moduli of these composites were analyzed under a three point bending test and the results were evaluated from macro and micromechanical points of view. The increment of the modulus with the fiber contents implied a good dispersion of the reinforcements. Nonetheless, the results were lower than those observed for the tensile modulus. This was unexpected due to the anisotropy of the bending test. The micromechanics analysis showed a lower performance of the fiber during the flexural test. These lower results were related with a non-optimal interface or with the non-adequate compression of the fibers. Additionally, the calculus of the void volume showed low void contents.
机译:考虑到其工业用途,材料的刚度具有很高的影响。此外,由于短纤维增强材料依赖于纤维相对于载荷的取向,因此该特性在短纤维增强材料中引起关注。由于当今环境的关注,正在研究和开发石油基复合材料的绿色替代品,并显示出一些可喜的结果。在这项工作中,用木质纤维素纤维复合材料增强的聚酰胺11被评估为这种可持续的替代方案。先前的工作表明,PA11基复合材料可替代玻璃纤维增​​强聚丙烯。但是,缺乏有关这些复合材料的弯曲模量行为的信息。这是令人感兴趣的,因为在某些条件下,挠曲模量比杨氏模量更能代表材料的行为。在三点弯曲试验下分析了这些复合材料的弯曲模量,并从宏观和微观力学的角度评估了结果。模量随纤维含量的增加意味着增强材料具有良好的分散性。然而,结果低于拉伸模量所观察到的结果。由于弯曲测试的各向异性,这是出乎意料的。微观力学分析表明,在弯曲测试过程中纤维的性能较低。这些较低的结果与不理想的界面或纤维的不充分压缩有关。另外,空隙体积的微积分显示出低的空隙含量。

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  • 来源
    《Composites》 |2018年第11期|126-132|共7页
  • 作者单位

    Univ Girona, Dept Chem Engn, Grp LEPAMAP, C-M Aurelia Capmany 61, Girona 17003, Spain;

    Univ Girona, Dept Chem Engn, Grp LEPAMAP, C-M Aurelia Capmany 61, Girona 17003, Spain;

    Univ Girona, Design Dev & Prod Innovat, Dept Org Business Management & Prod Design, C-M Aurelia Capmany 61, Girona 17003, Spain;

    Univ Girona, Dept Chem Engn, Grp LEPAMAP, C-M Aurelia Capmany 61, Girona 17003, Spain;

    Univ Politecn Cataluna, Dept Ciencia Mat & Engn Met, Seccio Engn Text, C Colom 11, Terrassa 08222, Barcelona, Spain;

    Univ Girona, Dept Chem Engn, Grp LEPAMAP, C-M Aurelia Capmany 61, Girona 17003, Spain;

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

    Fibers; Interface; Micromechanics; Injection molding;

    机译:纤维;接口;微机械;注塑;

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