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首页> 外文期刊>Journal of Mechanical Science and Technology >Experimental and numerical characterization of mechanical properties of carbon/jute fabric reinforced epoxy hybrid composites
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Experimental and numerical characterization of mechanical properties of carbon/jute fabric reinforced epoxy hybrid composites

机译:碳/黄麻织物增强环氧杂交复合材料力学性能的实验性和数值表征

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摘要

Natural fiber composites have great potential for reducing the product cost, lowering weight and enhancing renewability. Functionality and performance of natural fibers can be enhanced many folds using them together with synthetic fibers. Hybridization of carbon and low-cost natural jute fiber offers a sustainable hybrid composite having high modulus and mechanical strength. This study investigates flexural behavior of carbon/jute epoxy composites experimentally and numerically. Also, impact response is characterized through drop weight method. Study concludes that flexural strength decreases with increase in jute percentage. Simulation of flexural behavior diverges more than 10 % from experimental results. This anomaly is due to waviness of fiber resulting in heterogeneous property distribution in composites. Further, the fracto-graphic study revealed modes of failure. The drop weight impact tests reveal increased damage area with increase in jute percentage.
机译:天然纤维复合材料具有巨大的潜力,可降低产品成本,降低重量和增强可再生性。 天然纤维的功能性和性能可以通过与合成纤维一起使用它们来增强许多褶皱。 碳和低成本天然黄麻纤维的杂交提供了具有高模量和机械强度的可持续混合体复合材料。 本研究研究了实验和数值的碳/黄麻环氧复合材料的弯曲行为。 此外,通过下降重量法表征了影响响应。 研究总结,弯曲强度随着黄麻百分比的增加而降低。 弯曲行为的模拟偏离实验结果的10%以上。 这种异常是由于纤维的波纹导致复合材料中的异质性分布。 此外,Fracto-Graphic研究揭示了失败模式。 下降重量撞击试验揭示了伤害区域的增加,随着黄麻百分比增加。

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