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Experimental investigation of failure mechanisms and evaluation of physical/mechanical properties of unidirectional flax-epoxy composites

机译:单向亚麻环氧复合材料的失效机制的实验研究及物理/力学性能评价

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Using natural fibers as reinforcement in polymer matrix composites necessitates evaluating the latter under different modes of solicitation. This allows extracting its material properties for engineering design and research purposes. The main objective of the study is preparing a consistent set of material properties for unidirectional flax fiber-reinforced epoxy composite with defined composition and basic configuration. These data are prerequisites for growing researches on flax fiber-reinforced epoxy composites, especially for numerical analysis purposes using the finite element method. In this work, partially green unidirectional-flax fiber-reinforced epoxy composites are tested for physical and mechanical properties and studied for their failure modes. Tension, compression, flexion, and shear properties, as well as physical properties like density, specific heat capacity and thermal diffusivity, are evaluated according to ASTM standard test methods. Flax fibers, which are composites by themselves, come in bundles in the composites and demonstrate a complex behavior. Therefore, a fractographic analysis has been conducted to understand the macro and microscale failure mechanisms to correlate them with the material properties. The results are in good agreement with those of the literature, when available, but they mainly show the specific behavior of unidirectional-flax composites subject to different solicitation modes, especially compression and direct shear modes evaluated this way for the first time for unidirectional-flax fiber-reinforced epoxy composite. They cover most of the data required for engineering design and numerical analysis by methods like finite element method, particularly for simulating the machining process of flax fiber-reinforced epoxy composite in the ongoing works.
机译:在聚合物基质复合材料中使用天然纤维作为增强件需要在不同的征集模式下评估后者。这允许提取其用于工程设计和研究目的的材料特性。该研究的主要目的是为单向亚麻纤维增强环氧树脂复合材料制备一系列一致的材料性能,具有定义的组合物和碱性构型。这些数据是对亚麻纤维增强的环氧复合材料的研究越来越多的先决条件,特别是使用有限元方法的数值分析目的。在这项工作中,部分绿色的单向 - 亚麻纤维增强的环氧复合材料用于物理和机械性能,并研究其失效模式。根据ASTM标准试验方法,评估张力,压缩,屈曲和剪切性能,以及密度,比热容量和热扩散率等物理性质。由自己复合材料的亚麻纤维在复合材料中束并展示复杂的行为。因此,已经进行了宏观和微观故障机制,以与材料属性相关联的宏观和微观故障机制。结果与文献的那些吻合吻合,但它们主要显示出通过不同征集模式的单向 - 亚麻复合材料的具体行为,特别是压缩和直接剪切模式以这种方式评价为单向亚麻的第一次纤维增强环氧复合材料。它们通过有限元方法等方法涵盖了工程设计和数值分析所需的大部分数据,特别是在正在进行的作品中模拟亚麻纤维增强的环氧树脂复合材料的加工过程。

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