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Polyurethane derived from castor oil reinforced with long cotton fibers: Static and dynamic testing of a novel eco-friendly composite material

机译:聚氨酯衍生自带长棉纤维的蓖麻油增强:新型环保材料的静态和动态测试

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摘要

A novel eco-friendly composite material made of polyurethane derived from castor oil reinforced with long cotton fibers was developed. A set of comparative analyses comprising static and dynamic tests was established using specimens made of castor oil-based polyurethane reinforced by glass fibers, and epoxy reinforced by glass and cotton fibers. The manufacturing method and estimation of fiber volume fraction of the specimens were described in detail. Tensile and flexural tests were performed to evaluate the mechanical performance of the novel laminate. Fractographic post-mortem examinations assessed the quality of the fiber-matrix interaction and allowed direct observation of the failure modes. Surface treatment of natural fibers appears necessary to improve the adhesion of the natural fibers to the matrix. Dynamic responses are discussed, considering natural frequencies and modal damping coefficients. In this context, the potentialities and the limitations of using the novel eco-friendly composite material as structural parts are discussed.
机译:开发了一种新型的环保复合材料,由源自长棉纤维增强的蓖麻油衍生的聚氨酯制成。使用由玻璃纤维增​​强的蓖麻油基聚氨酯制成的样品建立了一组比较分析,并通过玻璃纤维增​​强,并通过玻璃和棉纤维增强环氧树脂。详细描述了样本的纤维体积分数的制造方法和估计。进行拉伸和弯曲试验以评估新型层压板的机械性能。 Fretography后验尸检查评估了纤维 - 矩阵相互作用的质量,并允许直接观察失效模式。天然纤维的表面处理似乎是必要的,以改善天然纤维对基质的粘附性。考虑到自然频率和模态阻尼系数,讨论了动态响应。在这种情况下,讨论了使用新型环保复合材料作为结构部件的潜在和限制。

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