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Reinforcing poly(ε-caprolactone) with hollow glass microspheres and hemp fibers - Morphological, rheological and mechanical properties

机译:用中空玻璃微球和大麻纤维加固聚(ε-己内酯) - 形态学,流变和力学性能

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In this work composites based on poly(ε-caprolactone) (PCL) were prepared and characterized in terms of morphological, rheological and mechanical properties. Two different fillers were used either individually or in combination: hollow glass microspheres (HGM) to obtain lightweight composites and hemp fibers (HF) to increase the mechanical performances of PCL. Moreover, the effect of HF alkaline treatment on the properties of composites was investigated. On the basis of scanning electron microscopy (SEM) inspections, a good dispersion of fillers in the composites was found, and the alkaline treatment of fibers resulted in an improved filler-matrix adhesion. The addition of either HGM or HF has relevant implications on the rheological and mechanical properties enhancing the stiffness of the composites. In particular, the composites reinforced with both HGM and HF exhibit an increase of Young modulus up to 117% and a reduction of theoretical density of about 10% compared to the neat PCL matrix.
机译:在这种基于聚(ε-己内酯)(PCL)的工作复合材料中,在形态学,流变和机械性能方面制备并表征。两种不同的填料是单独的或组合使用的:中空玻璃微球(HGM)以获得轻质复合材料和HEMP纤维(HF)以增加PCL的机械性能。此外,研究了HF碱性处理对复合材料性能的影响。在扫描电子显微镜(SEM)检查的基础上,发现复合材料中的填料的良好分散,纤维的碱性处理导致填料 - 基质粘附改善。 HGM或HF的添加对增强复合材料刚度的流变和机械性能具有相关意义。特别地,与HGM和HF一起增强的复合材料表现出高达117%的杨氏模量增加,与纯PCL基质相比,理论密度的理论密度的降低约10%。

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