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首页> 外文期刊>International Journal of Pharmaceutics >Visualization and quantitative profiling of mixing and segregation of granules using synchrotron radiation X-ray microtomography and three dimensional reconstruction
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Visualization and quantitative profiling of mixing and segregation of granules using synchrotron radiation X-ray microtomography and three dimensional reconstruction

机译:使用同步辐射X射线显微断层照相术和三维重建技术对颗粒混合和分离进行可视化和定量分析

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摘要

Tomographic imaging techniques have great potential for improving understanding of the dynamics of granular materials during manufacturing, handling, and storage. In this study, the synchrotron radiation X-ray computed microtomography (SR-μCT) was used non-invasively to monitor blend homogeneity of binary mixtures. Granular samples of microcrystalline cellulose and starch were characterized using the SR-μCT individually. Simultaneously, particle distribution was investigated by calculating the frequency distribution of a statistic for testing sphericity. Then, the microcrystalline cellulose and starch granules were blended in a cylindrical container. Influences of the time of rotations TR and the time of vibration TV on the mixture homogeneity were studied with the SR-μCT and statistical evaluation. The mixing index is also adopted to evaluate the mixture homogeneity of the particle system. The results showed that mixture homogeneity is improved with increasing TR. Furthermore, segregation increased with longer T V when particles are different in size and shape. The larger starch granules of non-spherical shape have a tendency to rise to the top, while the smaller microcrystalline cellulose granules which are spherical tend to migrate to the bottom of the mixture. Therefore, we demonstrate that SR-μCT can investigate the mixing and segregation of granular materials in three-dimensions combined with statistic method.
机译:层析成像技术具有巨大的潜力,可以改善对制造,处理和存储过程中粒状材料动力学的理解。在这项研究中,同步辐射X射线计算机断层扫描(SR-μCT)被无创地用于监测二元混合物的混合物均质性。分别使用SR-μCT对微晶纤维素和淀粉的颗粒样品进行了表征。同时,通过计算用于测试球形度的统计量的频率分布来研究粒子分布。然后,将微晶纤维素和淀粉颗粒在圆柱形容器中混合。通过SR-μCT和统计评估研究了旋转时间TR和振动TV时间对混合物均匀性的影响。还采用混合指数来评估颗粒系统的混合物均匀性。结果表明,随着TR的增加,混合物的均匀性得到改善。此外,当颗粒的大小和形状不同时,随着T V的增加,偏析会增加。非球形的较大的淀粉颗粒具有上升到顶部的趋势,而球形的较小的微晶纤维素颗粒倾向于迁移到混合物的底部。因此,我们证明了SR-μCT可以结合统计方法研究三维材料中颗粒材料的混合和分离。

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