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Effect of Moisture on the Tensile Properties of Composites with Bio-based Fibers and Matrix

机译:水分对基于生物基纤维和基质复合材料拉伸性能的影响

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Fibers and matrices made in full or part with plant-based (bio-based) materials are attracting increased attention in the composites industry on account of their potential for environmental sustainability. However, many bio-based constituents are known to be susceptible to moisture absorption and associated degradation. The objectives of this investigation are to evaluate the quasi-static tensile behavior of composites made with different combinations of jute and E-glass fibers and bio-based and synthetic (fossil-fuel based) epoxy matrices in the as-received condition and after a 24-hour soak in water at 66°C. The composites were manufactured using vacuum-assisted resin transfer molding. Fiber volume contents were determined for the composites. Tensile strength and modulus were measured on as-received and water-soaked composites. After water exposure, the jute fiber composites suffered a large reductions in modulus with either type of matrix and a large reduction in strength with the bio-based matrix but not the synthetic matrix. The E-glass composite with the synthetic matrix, which was only tested in the as-received condition, had much higher modulus and strength in comparison to the jute fiber composites.
机译:全部或部分组成的纤维和基于基于植物(生物)的材料的矩阵在复合材料行业中吸引了增加的关注,因为它们的环境可持续性潜力。然而,已知许多生物基成分易受吸湿和相关的降解影响。该研究的目的是评估用不同组合的复合材料的准合成的准静态拉伸行为,并在接收的条件下和之后在A型和合成的(化石 - 燃料基)环氧基质中制备的复合材料在66°C下24小时浸入水中。复合材料是使用真空辅助树脂转移成型制造的。测定复合材料的纤维体积含量。在接收和水浸涂复合材料上测量拉伸强度和模量。曝光后,黄麻纤维复合材料遭受了具有任一种基质的模量的较大减少,并且具有与生物基矩阵的强度大的强度降低,但不是合成基质。与舌纤维复合材料相比,仅在接收条件下测试的合成基质的E-玻璃复合材料具有更高的模量和强度。

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