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Interface and micromechanical characterization of tensile strength of biobased composites from polypropylene and henequen strands

机译:聚丙烯和纯净股线生物化复合材料拉伸强度的界面和微机械表征

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摘要

The contribution of a reinforcement to the tensile strength of a composite can be evaluated by different micromechanics models. Nonetheless, one of the main difficulties is the evaluation of the intrinsic properties of the reinforcements. The literature shows experimental and model-based methodologies to estimate such intrinsic properties, and few are based on single fiber tensile test in combination with a Weibull analysis. This paper proposes using henequen strand to prepare polypropylene-based composites. Henequen fibers show a high cellulose content that allows obtaining strong interfaces when a coupling agent is added to the composite formulation. The novelty of this work is based on a simplified methodology to evaluate the intrinsic tensile strength of the reinforcements and its contribution to the tensile strength of the composite. A percentage of coupling agent that returns the highest tensile strength is identified with a strong interface. Then, typical values for a coupling factor and interfacial shear strength are used with a modified rule of mixtures and a modified Kelly and Tyson models to obtain the orientation factors. The prediction of composite behavior from fiber properties is necessary to anticipate the correlation between experimental and the back-calculated parameters.
机译:可以通过不同的微机械模型来评估增强件对复合材料的拉伸强度的贡献。尽管如此,主要困难之一是评估增援的内在特性。该文献显示了实验性和基于模型的方法,以估计这种内在性质,并且很少是基于单纤维拉伸试验与Weibull分析组合。本文提出使用亨氏股线制备聚丙烯基复合材料。亨肯纤维显示出高纤维素含量,当加入复合制剂时允许在偶联剂时获得强嵌段。这项工作的新颖性是基于简化的方法来评估增强材料的固有拉伸强度及其对复合材料的拉伸强度的贡献。用强界面识别返回最高拉伸强度的偶联剂的百分比。然后,耦合因子和界面剪切强度的典型值与修改的混合物和改进的凯利和泰森模型一起使用,以获得取向因子。需要预测纤维属性的复合行为,以期望实验和后计算参数之间的相关性。

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