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首页> 外文期刊>Journal of Composite Materials >The mechanical properties of flax fibre reinforced poly(lactic acid) bio-composites exposed to wet, freezing and humid environments
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The mechanical properties of flax fibre reinforced poly(lactic acid) bio-composites exposed to wet, freezing and humid environments

机译:亚麻纤维增强聚(乳酸)生物复合材料暴露于湿,冷冻和潮湿环境的机械性能

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摘要

Bio-composites are increasingly being perceived as a green alternative to synthetic composites in many applications. However, the overall long-term durability of bio-composites is a major concern, particularly their ability for sustained performance under harsh and changing environmental conditions. This paper reports a detailed study on the effect of environmental conditions on the performance of flax/poly(lactic acid) bio-composites. Neat poly(lactic acid) and bio-composite samples were exposed to environments similar to those found outdoors: wet, freezing and humid. Moisture absorption and physical changes of specimens were periodically examined. Flexural and tensile properties were evaluated periodically to determine the detrimental effect of each exposure condition on the mechanical performance of bio-composites. Direct contact with liquid water is the most deteriorating environment for bio-composites. A drying process can partially restore the mechanical performance of these materials. Bio-composites can survive reliably in warm humid environments and in those that could create freeze and thaw cycles for short-term outdoor applications. The mechanisms and reasons involved in the degradation of the properties of green composites are discussed.
机译:生物复合材料越来越被认为是许多应用中合成复合材料的绿色替代品。然而,生物复合材料的总体长期耐久性是一个主要问题,特别是它们在苛刻和不断变化的环境条件下持续性能的能力。本文报告了对环境条件对亚麻/聚(乳酸)生物复合材料的性能的详细研究。整洁的聚(乳酸)和生物复合样品暴露于与户外的相似的环境:湿,冷冻和潮湿。定期检查样品的吸湿和物理变化。定期评估弯曲和拉伸性能,以确定每种暴露条件对生物复合材料的机械性能的不利影响。直接接触液态水是生物复合材料最恶化的环境。干燥过程可以部分地恢复这些材料的机械性能。生物复合材料可以在温暖的潮湿环境中可靠地生存,并在可能为短期户外应用创造冻结和解冻周期的那些。讨论了涉及绿色复合材料性质的降解的机制和原因。

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