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Mechanical and viscoelastic properties of soybean oil thermoset reinforced with jute fabrics and carded lyocell fiber

机译:黄麻织物和梳理莱赛尔纤维增强大豆油热固性的力学和粘弹性

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摘要

Composites and hybrid composites were manufactured from renewable materials based on jute fibers, regenerated cellulose fibers (Lyocell), and thermosetting polymer from soybean oil. Three different types of jute fabrics with biaxial weave architecture but different surface weights, and carded Lyocell fiber were used as reinforcements. Hybrid composites were also manufactured by combining the jute reinforcements with the Lyocell. The Lyocell composite was found to have better mechanical properties than other composites. It has tensile strength and modulus of about 144 MPa and 18 GPa, respectively. The jute composites also have relatively good mechanical properties, as their tensile strengths and moduli were found to be between 65 and 84 MPa, and between 14 and 19 GPa, respectively. The Lyocell-reinforced composite showed the highest flexural strength and modulus, of about 217 MPa and 13 GPa, respectively. In all cases, the hybrid composites in this study showed improved mechanical properties but lower storage modulus. The Lyocell fiber gave the highest impact strength of about 35 kJ/m~2, which could be a result of its morphology. Dynamic mechanical analysis showed that the Lyocell reinforced composite has the best viscoelastic properties.
机译:复合材料和杂化复合材料由基于黄麻纤维,再生纤维素纤维(莱赛尔)和大豆油的热固性聚合物的可再生材料制成。具有双轴编织结构但表面重量不同的三种不同类型的黄麻织物和梳理的莱赛尔纤维被用作增强材料。杂化复合材料也通过将黄麻增强材料与莱赛尔纤维结合而制成。发现莱赛尔复合材料具有比其他复合材料更好的机械性能。它的抗张强度和模量分别约为144 MPa和18 GPa。黄麻复合材料还具有相对较好的机械性能,因为发现它们的拉伸强度和模量分别在65和84 MPa之间,在14和19 GPa之间。莱赛尔纤维增强的复合材料显示出最高的弯曲强度和模量,分别约为217 MPa和13 GPa。在所有情况下,本研究中的杂化复合材料均显示出改善的机械性能,但储能模量较低。 Lyocell纤维的最高冲击强度约为35 kJ / m〜2,这可能是其形态的结果。动态力学分析表明,莱赛尔增强复合材料具有最佳的粘弹性。

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