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Polylactic acid (PLA) biocomposites reinforced with coir fibres : evaluation of mechanical performance and multifunctional properties

机译:椰壳纤维增强的聚乳酸(PLA)生物复合材料:力学性能和多功能性能的评估

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摘要

The effects of fibre content (5-30 wt%) and fibre treatment on surface morphology, tensile, flexural, thermal and biodegradable properties of polylactic acid (PLA)/coir fibre biocomposites were evaluated via scanning electron microscopy (SEM), mechanical testing, differential scanning calorimetry (DSC), thermogravimetric analysis (TGA) and soil burial method. Similar decreasing trends were found for tensile and flexural strengths with higher strength values obtained for PLA/treated coir fibre biocomposites. 20 wt% treated coir fibres were determined to achieve optimum tensile and flexural strengths of biocomposites. Regardless of fibre treatment, the thermal stability of biocomposites is worsened with increasing the fibre content. The decreased cold crystallisation temperatures of biocomposites further confirms the effective nucleating agent role of coir fibres. The biocomposites undergo much faster degradation than PLA, with the maximum weight loss of 34.9% in treated fibre biocomposites relative to 18% in PLA after 18-day burial, arising from the hydrophilic nature of coir fibres.
机译:纤维含量(5-30 wt%)和纤维处理对聚乳酸(PLA)/椰壳纤维生物复合材料的表面形态,拉伸,弯曲,热和生物降解性能的影响通过扫描电子显微镜(SEM),机械测试,差示扫描量热法(DSC),热重分析(TGA)和土壤掩埋法。发现抗张强度和弯曲强度具有相似的下降趋势,而PLA /经处理的椰壳纤维生物复合材料具有更高的强度值。测定20wt%处理过的椰壳纤维以实现生物复合材料的最佳拉伸强度和挠曲强度。无论采用何种纤维处理方法,随着纤维含量的增加,生物复合材料的热稳定性都会恶化。生物复合材料降低的冷结晶温度进一步证实了椰壳纤维的有效成核剂作用。生物纤维复合材料的降解速度要比PLA快得多,因为椰壳纤维具有亲水性,因此经过处理的纤维生物复合材料的最大重量损失为34.9%,而埋葬18天后的PLA仅为18%。

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