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首页> 外文期刊>Journal of natural fibers >Water Uptake and Its Effects on Mechanical and Acoustic Properties of flax/polypropylene Composite
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Water Uptake and Its Effects on Mechanical and Acoustic Properties of flax/polypropylene Composite

机译:水吸收及其对亚麻/聚丙烯复合材料机械和声学性质的影响

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The effects of moisture on the mechanical and acoustic properties of flax fibers embedded in polypropylene (PP) were investigated in the present study. Flax/PP and hybrid flax-carbon/PP samples were immersed in water at controlled temperatures. The water intake over time in flax/PP was shown to approach Fickian behavior at room temperature while hybrids showed strong deviations. Through hybridization with 13% carbon fibers, water uptake in flax-carbon PP was reduced by 25%. For thin hybrid laminates, positioning carbon fibers at the outer edges caused no significant difference in the rate of moisture uptake. Micrographic analysis revealed that carbon fiber bundles are more susceptible to resin deficiency in flax-carbon/PP hybrids due to its densely packed thin fibers. The stiffness of moisture-saturated flax/PP samples was 50% lower than dry specimens, with 35% increase in failure strain. The tensile strength, however, was almost unaffected, and both, dry and wet samples, exhibited similar damage characteristics. The stiffness reduction affected the acoustic performance: the resonant frequency was reduced, and the STL were lowered in the stiffness-controlled frequency domain. To determine the unknown water uptake at saturation, an accelerated method was presented as an alternative time-efficient solution for designers.
机译:本研究研究了水分对嵌入聚丙烯(PP)中亚麻纤维的机械和声学性质的影响。将亚麻/ PP和杂交亚麻 - 碳/ PP样品浸入受控温度的水中。随着时间的推移在亚麻/ pp中的水摄入量在室温下接近Fickian行为,而杂种显示出强烈的偏差。通过与13%碳纤维的杂交,亚麻碳PP中的水吸收降低25%。对于薄的混合层压材料,在外边缘处定位碳纤维不会因水分吸收率而没有显着差异。显微镜分析显示,由于其密集填充的薄纤维,碳纤维束更容易对亚麻碳/ PP杂种的树脂缺乏影响。水分饱和亚麻/ PP样品的刚度低于干试剂50%,失效应变增加35%。然而,拉伸强度几乎不受影响,并且干燥和湿法样品,表现出类似的损伤特性。刚度减少影响声学性能:谐振频率降低,并且STL在刚度控制的频域中降低。为了确定饱和度的未知水摄取,将加速方法作为设计人员的替代时间效率。

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