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Biodegradability of Nonwoven Flax Fiber Reinforced Polylactic Acid Biocomposites

机译:非织造亚麻纤维增强聚乳酸生物复合材料的生物降解性

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Biocomposites of flax reinforced polylactic acid (PLA) were made using a new technique incorporating an air-laying nonwoven process. PLA and flax fibers were mixed and converted to the webs in the air-laying process. Prepregs were then made from the fiber webs by thermal consolidation. The prepregs were finally converted to composites by compression molding. This study was investigated the biodegradability and water absorption properties of the composites. The composites were incubated in compost under controlled conditions. The percentage weight loss and the reduction in mechanical properties of PLA and biocomposites were determined at different time intervals. It was found that with increasing flax content, the mechanical properties of the biocomposites decreased more during the burial trial. The increasing of flax content led to the acceleration of weight loss due to preferential degradation of flax. This was further confirmed by the surface morphology of the biodegraded composites from scanning electron microscope image analysis. Morphological observations indicated severe disruption of biocomposites structure between 60 and 120 days of incubation.
机译:亚麻增强聚乳酸(PLA)的生物复合材料是采用结合了气流成网非织造工艺的新技术制成的。在气流成网过程中,将PLA和亚麻纤维混合并转化为纤维网。然后通过热固结由纤维网制成预浸料。预浸料最终通过压缩成型转化为复合材料。这项研究调查了复合材料的生物降解性和吸水性能。将复合物在受控条件下在堆肥中孵育。在不同的时间间隔确定了百分重量损失以及PLA和生物复合材料的机械性能下降。发现随着亚麻含量的增加,生物复合材料的机械性能在埋葬试验中下降得更多。亚麻含量的增加由于亚麻的优先降解而导致体重减轻的加速。通过扫描电子显微镜图像分析,生物降解的复合材料的表面形态进一步证实了这一点。形态学观察表明,在孵化60到120天之间,生物复合材料的结构受到了严重破坏。

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