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首页> 外文期刊>Polymer Degradation and Stability >Influence of PA11 and PP thermoplastic polymers on recycling stability of unidirectional flax fibre reinforced biocomposites
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Influence of PA11 and PP thermoplastic polymers on recycling stability of unidirectional flax fibre reinforced biocomposites

机译:PA11和PP热塑性聚合物对单向亚麻纤维增强生物复合材料再循环稳定性的影响

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摘要

In this study, we explore the interest of recycling PAH and PP unidirectional flax fibre composites. After describing the mechanical performance of the various components of the composite, its tensile properties are investigated before and after recycling. The results indicate a good stability of the modulus and strength of the composites during the multiple recycling steps, which also applies to the fibre properties, as highlighted by nanoindentation tests throughout the recycling process. However, interestingly, the elongation at break of the PAH composites shows a significant increase with the number of injection cycles, ranging from 5.2 to 14.7%. Further analyses show that the PAH matrix has highly stable thermal, rheological and mechanical properties, so the matrix cannot be involved in this increased elongation at break. Flax fibers display a steady decrease in length with recycling, especially in the case of PA11 matrix compared to PP matrix. This drastic decline is explained by the high viscosity of the matrix, but above all by the presence of defects (kink bands) in the flax fibers, spaced at intervals of 60 μm, which is consistent with the residual lengths measured at the end of recycling. PA11 and PP flax UD composites prove to be very efficient after recycling, while PAH biocomposites exhibit an increase of elongation after recycling that makes it a material of first choice in the biocomposites industry.
机译:在这项研究中,我们探索了回收PAH和PP单向亚麻纤维复合材料的兴趣。在描述了复合材料的各种成分的机械性能之后,研究了其在回收前后的拉伸性能。结果表明复合材料的模量和强度在多个回收步骤中具有良好的稳定性,这也适用于纤维性能,整个回收过程中的纳米压痕测试均突出了这一点。然而,有趣的是,PAH复合材料的断裂伸长率随着注射循环次数的增加而显着增加,范围为5.2至14.7%。进一步的分析表明,PAH基体具有高度稳定的热,流变和机械性能,因此基体不能参与这种增加的断裂伸长率。亚麻纤维的长度随着回收不断减少,特别是在PA11基质与PP基质相比的情况下。这种急剧下降的原因是基质的高粘度,但最重要的是亚麻纤维中存在缺陷(扭结带),间距为60μm,这与回收结束时测得的残留长度一致。回收后,PA11和PP亚麻UD复合材料被证明是非常有效的,而回收后PAH生物复合材料的伸长率却提高了,这使其成为生物复合材料行业的首选材​​料。

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