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Fraunhofer diffraction of short-fiber-reinforced composites aligned by an electric field

机译:电场使短纤维增强复合材料的弗劳恩霍夫衍射

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Objectives: This study aims to determine if aligned, short-fiber composites are capable of producing Fraunhofer diffraction patterns similar to those of human enamel sections and to validate the mechanism of diffraction by comparing the experimental and theoretical fiber spacings. Methods: Rectangular composite specimens were filled with short E-glass fibers (120 μm length, 15 μm diameter) to contents of 1, 5, 10, and 25% (vol%). The fibers were oriented perpendicular to the surface normal using an alternating electric field of 0.75 kV/mm. A He-Ne laser was used with thin slices of specimen placed behind a pinhole to produce diffraction patterns. The locations of the diffraction maxima were used to determine the theoretical slit spacings which were compared to the experimental slit spacings determined by microscopy. Results: The specimens produced diffraction patterns analogous to the theoretical Fraunhofer diffraction of light through multiple slits. This was verified by comparing the theoretical spacing of the fibers calculated from the diffraction pattern with the experimental spacing of the fibers determined from the optical micrographs. Significance: This work has verified that orientation of short-fiber composites using an electric field can yield composites with sufficient order to produce Fraunhofer diffraction patterns that are qualitatively similar to the diffraction patterns of human enamel sections.
机译:目的:本研究旨在确定对齐的短纤维复合材料是否能够产生类似于人类牙釉质切片的弗劳恩霍夫衍射图样,并通过比较实验和理论纤维间距来验证衍射机理。方法:将矩形复合材料样品填充短的E玻璃纤维(长度为120μm,直径为15μm),含量为1、5、10和25%(体积%)。使用0.75 kV / mm的交变电场使纤维垂直于表面法线取向。使用氦氖激光器,将样品薄片放在针孔后面,以产生衍射图样。衍射最大值的位置用于确定理论狭缝间距,将其与通过显微镜确定的实验狭缝间距进行比较。结果:标本产生的衍射图类似于通过多个狭缝的光的理论弗劳恩霍夫衍射。通过比较由衍射图样计算出的纤维的理论间距与由光学显微照片确定的纤维的实验间距,可以证实这一点。启示:这项工作已经证实,短纤维复合材料在电场作用下可以产生足够数量的复合材料,以产生与人类牙釉质切片的衍射图质相似的弗劳恩霍夫衍射图。

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