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Large-scale parallel alignment of platelet-shaped particles through gravitational sedimentation

机译:重力沉降使血小板状颗粒大范围平行排列

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摘要

Parallel and concentric alignment of microscopic building blocks into several orders of magnitude larger structures is commonly observed in nature. However, if similarly aligned structures are artificially produced their thickness is generally limited to just about one or two orders of magnitude more than the dimensions of the smallest element. We show that sedimentation provides a promising approach to manufacture solid materials consisting of well-aligned platelet-shaped particles while being more than 30 000 times thicker than the individual particle. Such sediments contain up to 28 vol% of particles without any further treatment and can be densified to 67 vol% particle fraction by subsequent unidirectional pressing. The degree of orientation of the platelet-shaped particles within the sediments was tracked by high-energy X-ray diffraction measurements. The Hermans orientation parameter, a statistical measure of the quality of alignment, was determined to be 0.63 ± 0.03 already for as-sedimented samples while the standard deviation of the orientation distribution of particles, another measure of average misalignment, was found to be (21.5 ± 1.4)°. After pressing, these values further improved to (0.81 ± 0.01) and (14.6 ± 0.4)°, respectively. Such quality of alignment competes with, if not even exceeds, values reported in the literature.
机译:在自然界中通常观察到微观构建块平行和同心对齐成几个数量级的较大结构。然而,如果人工制造相似排列的结构,则其厚度通常被限制为比最小元件的尺寸大大约一两个数量级。我们表明,沉降提供了一种制造固体材料的有前途的方法,该固体材料由排列良好的片状颗粒组成,并且比单个颗粒的厚度厚3万倍以上。此类沉积物无需进行任何进一步处理即可包含多达28%(体积)的颗粒,并且可以通过后续的单向压实将其浓缩为67%(体积)的颗粒。通过高能X射线衍射测量追踪沉积物中血小板状颗粒的取向程度。沉积样品的Hermans取向参数(一种统计取向质量的统计量度)已确定为0.63±±0.03,而颗粒取向分布的标准偏差(另一种平均未对准度)为(21.5 ±1.4)°。压制后,这些值分别进一步提高到(0.81±0.01)和(14.6±0.4)°。这样的比对质量与甚至超过文献中报道的值竞争。

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