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New polylactic acid composites reinforced with artichoke fibers

机译:朝鲜蓟纤维增强的新型聚乳酸复合材料

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摘要

In this work, artichoke fibers were used for the first time to prepare poly(lactic acid) (PLA)-based biocomposites. In particular, two PLA/artichoke composites with the same fiber loading (10% w/w) were prepared by the film-stacking method: the first one (UNID) reinforced with unidirectional long artichoke fibers, the second one (RANDOM) reinforced by randomly-oriented long artichoke fibers. Both composites were mechanically characterized in tensile mode by quasi-static and dynamic mechanical tests. The morphology of the fracture surfaces was analyzed through scanning electron microscopy (SEM). Moreover, a theoretical model, i.e., Hill's method, was used to fit the experimental Young's modulus of the biocomposites. The quasi-static tensile tests revealed that the modulus of UNID composites is significantly higher than that of the neat PLA (i.e., ~40%). Moreover, the tensile strength is slightly higher than that of the neat matrix. The other way around, the stiffness of RANDOM composites is not significantly improved, and the tensile strength decreases in comparison to the neat PLA
机译:在这项工作中,朝鲜蓟纤维首次用于制备基于聚乳酸(PLA)的生物复合材料。特别地,通过薄膜堆叠方法制备了两种具有相同纤维负载量(10%w / w)的PLA /朝鲜蓟复合材料:第一种(UNID)用单向长朝鲜蓟纤维增强,第二种(RANDOM)用单向长纤维增强随机取向的朝鲜蓟长纤维。两种复合材料均通过准静态和动态力学测试在拉伸模式下进行了机械表征。通过扫描电子显微镜(SEM)分析断裂表面的形态。此外,使用理论模型,即Hill方法,来拟合生物复合材料的实验杨氏模量。准静态拉伸试验表明,UNID复合材料的模量明显高于纯PLA的模量(即〜40%)。而且,抗拉强度略高于纯基质的抗拉强度。相反,与纯PLA相比,RANDOM复合材料的刚度没有得到明显改善,抗拉强度降低

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