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Effects of Pulp Fiber and Epoxidized Tung Oil Content on the Properties of Biocomposites Based on Polylactic Acid

机译:纸浆纤维和环氧化桐油含量对基于聚乳酸的生物复合材料性能的影响

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摘要

Recently, various environmental-friendly materials have been investigated and developed, especially composites of polylactic acid (PLA) and plant fibers. This paper investigates the effects of pulp fiber (PF) and epoxidized Tung oil (ETO) content on the properties of biocomposites, based on polylactic acid. The bleached pulp fiber reinforced PLA (PLA/PF) composites with 10–50 wt% fiber contents and 0–15% epoxidized Tung oil contents (with a certain number of fiber) were prepared in an internal mixer (Plastograph® EC) at 150 °C. The mechanical properties of PLA/PF composites were improved significantly. The pulp fiber reinforced PLA composites, with the fiber content of 30 wt%, were found to have the highest mechanical properties. The tensile and flexural properties of PLA/Tung oil-soaked-pulp fiber composites were higher than those of PLA/Tung oil unsoaked pulp fiber composites. In addition, the degradation temperature of PLA-based composites decreased after adding more pulp fiber. The pulp fibers were well-dispersed in the PLA matrix with the content up to 30 wt%. The interaction between pulp fiber and PLA matrix improved by the addition of epoxidized Tung oil. Epoxidized Tung oil also improved tensile and flexural strength of composite materials when it was added with a number of below 10% of fiber.
机译:近来,各种环保材料进行了研究和开发,尤其是复合材料聚乳酸(PLA)和植物纤维。本文研究的纸浆纤维(PF)和对生物复合材料的性质环氧化桐油(ETO)含量的影响,基于聚乳酸。漂白纸浆纤维增强PLA(PLA / PF)复合材料10-50重量%的纤维含量和0-15%的环氧化桐油内容(有一定数目的纤维)在密炼机中在150制备(Plastograph®EC) ℃。 PLA / PF复合材料的力学性能显著改善。纸浆纤维增强复合材料的PLA,具有30重量%的纤维含量,被发现具有最高的机械性能。拉伸和PLA /桐油浸泡纸浆纤维复合材料的弯曲性能均较PLA /桐油未浸泡纸浆纤维复合材料的高。此外,基于PLA复合材料的降解温度增加更多的纸浆纤维后下降。纸浆纤维良好地分散在与所述内容高达30%(重量)的PLA基质。纸浆纤维和PLA基质之间的相互作用通过加入环氧化桐油的改善。当它被与多个低于10%的纤维的添加环氧化桐油也改进的复合材料的拉伸强度和弯曲强度。

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