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Preliminary Design and Experimental Investigation of a Novel Pneumatic Conveying Method to Disperse Natural Fibers in Thermoset Polymers

机译:一种将天然纤维分散在热固性聚合物中的新型气动输送方法的初步设计和实验研究

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摘要

Natural fibers can be attractive reinforcing materials in thermosetting polymers due to their low density and high specific mechanical properties. Although the research effort in this area has grown substantially over the last 20 years, manufacturing technologies to make use of short natural fibers in high volume fraction composites; are still limited. Natural fibers, after retting and preprocessing, are discontinuous and easily form entangled bundles. Dispersion and mixing these short fibers with resin to manufacture high quality, high volume fraction composites presents a significant challenge. In this paper, a novel pneumatic design for dispersion of natural fibers in their original discontinuous form is described. In this design, compressed air is used to create vacuum to feed and convey fibres while breaking down fibre clumps and dispersing them in an aerosolized resin stream. Model composite materials, made using proof-of-concept prototype equipment, were imaged with both optical and X-ray tomography to evaluate fibre and resin dispersion. The images indicated that the system was capable of providing an intimate mixture of resin and detangled fibres for two different resin viscosities. The new pneumatic process could serve as the basis of a system to produce well-dispersed high-volume fraction composites containing discontinuous natural fibres drawn directly from a loosely packed source.
机译:天然纤维由于其低密度和高比机械性能而可以是热固性聚合物中有吸引力的增强材料。尽管在过去的20年中,这一领域的研究工作已大大增加,但制造技术已在高体积分数复合材料中利用短天然纤维。仍然有限。在脱胶和预处理之后,天然纤维是不连续的,很容易形成缠结的束。将这些短纤维与树脂分散并混合以制造高质量,高体积分数的复合材料提出了重大挑战。在本文中,描述了一种新颖的气动设计,用于分散天然纤维以其原始的不连续形式。在这种设计中,压缩空气用于产生真空以输送和输送纤维,同时分解纤维团并将其分散在雾化的树脂流中。使用概念验证原型设备制造的模型复合材料通过光学和X射线断层扫描成像,以评估纤维和树脂的分散性。图像表明,该系统能够为两种不同的树脂粘度提供树脂和缠结纤维的紧密混合物。新的气动工艺可以作为系统的基础,以生产分散良好的大体积复合材料,其中包含直接从松散包装的来源中提取的不连续天然纤维。

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