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Analysis of the tensile modulus of polypropylene composites reinforced with stone groundwood fibers

机译:石磨木纤维增强聚丙烯复合材料的拉伸模量分析

摘要

One of the most relevant properties of composite materials to be considered is stiffness. Fiberglass has been used traditionally as a fibrous reinforcing element when stiff materials are required. However, natural fibers are been exploited as replacements for synthetic fibers to satisfy environmental concerns. Among the different natural fibers, wood fibers show the combination of relatively high aspect ratio, good specific stiffness and strength, low density, low cost, and less variability than other natural fibers of such those from annual crops. In this work, composites from polypropylene and stone groundwood fibers from softwood were prepared and mechanically characterized under tensile loads. The Young’s moduli of the ensuing composites were analyzed and their micromechanics aspects evaluated. The reinforcing effect of stone groundwood fibers was compared to that of conventional reinforcement such fiberglass. The Halpin-Tsai model with the modification proposed by Tsai-Pagano accounted fairly for the behavior of PP composites reinforced with stone groundwood fibers. It was also demonstrated that the aspect ratio of the reinforcement plays a role in the Young’s modulus of injection molded specimens
机译:复合材料最重要的特性之一就是刚度。当需要刚性材料时,玻璃纤维传统上已用作纤维增强元件。然而,天然纤维被开发为合成纤维的替代品,以满足环境方面的关注。在不同的天然纤维中,与一年生作物的其他天然纤维相比,木质纤维显示出较高的长径比,良好的比刚度和强度,低密度,低成本和较少的变异性。在这项工作中,制备了聚丙烯和软木的石材磨料纤维的复合材料,并在拉伸载荷下进行了机械表征。分析了随后的复合材料的杨氏模量,并评估了其微力学方面。将石磨木纤维的增强效果与常规增强的玻璃纤维进行了比较。由Tsai-Pagano提出的修改后的Halpin-Tsai模型可以很好地说明用石磨木纤维增强的PP复合材料的性能。还证明了增强物的长径比在注塑样品的杨氏模量中起作用

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