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Effect of fungal deterioration on physical and mechanical properties of hemp and flax natural fiber composites

机译:真菌变质对大麻和亚麻天然纤维复合材料物理机械性能的影响

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摘要

The development and application of bio-sourced composites have been gaining wide attention, yet their deterioration due to the growth of ubiquitous microorganisms during storage/manufacturing/in-service phases is still not fully understood for optimum material selection and design purposes. In this study, samples of non-woven flax fibers, hemp fibers, and mats made of co-mingled randomly-oriented flax or hemp fiber (50%) and polypropylene fiber (50%) were subjected to 28 days of exposure to (i) no water-no fungi, (ii) water only and (iii) water along with the Chaetomium globosum fungus. Biocomposite samples were measured for weight loss over time, to observe the rate of fungal growth and the respiration of cellulose components in the fibers. Tensile testing was conducted to measure mechanical properties of the composite samples under different configurations. Scanning electron microscopy was employed to visualize fungal hyphal growth on the natural fibers, as well as to observe the fracture planes and failure modes of the biocomposite samples. Results showed that fungal growth significantly affects the dry mass as well as the tensile elastic modulus of the tested natural fiber mats and composites, and the effect depends on both the type and the length scale of fibers, as well as the exposure condition and time.
机译:生物来源的复合材料的开发和应用已受到广泛关注,但是由于最佳的材料选择和设计目的,由于在存储/制造/使用阶段普遍存在的微生物的生长而导致的生物降解复合材料的退化仍然未被完全理解。在这项研究中,将非织造亚麻纤维,大麻纤维以及由随机混合的亚麻或大麻纤维(50%)和聚丙烯纤维(50%)共混制成的垫子样品暴露于(i )无水无真菌,(ii)仅水,以及(iii)球毛木耳属真菌。测量生物复合材料样品随时间的重量损失,以观察真菌的生长速率和纤维中纤维素组分的呼吸作用。进行拉伸测试以测量不同配置下复合样品的机械性能。使用扫描电子显微镜观察天然纤维上真菌菌丝的生长,并观察生物复合材料样品的断裂面和破坏模式。结果表明,真菌的生长会显着影响所测试的天然纤维毡和复合材料的干质量以及拉伸弹性模量,其影响取决于纤维的类型和长度,接触条件和时间。

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