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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Measuring bulk density variations in a moving powder bed via terahertz in-line sensing
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Measuring bulk density variations in a moving powder bed via terahertz in-line sensing

机译:通过太赫兹在线感测量测量移动粉末床中的堆积密度变化

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摘要

Monitoring the relative density of static or moving powder inside a process line is essential for manufacturing high-quality products. The aim of this study was to predict density variations in a moving powder bed using terahertz reflection technology. We systematically investigated three grades (varying true density and particle size) of two materials: lactose and silicified microcrystalline cellulose (SMCC). These six powders specifically differ in their compressibility, which can be applied to assess the sensitivity and applicability of our method. The powders were filled into a round container, and terahertz reflection measurements were acquired continuously during the container's rotation. The setup allowed to adjust the relative density by compacting the powders into specific powder bed heights. Each powder was compacted to various relative densities (compression pressures up to 100 kPa). We calculated the surface refractive index based on the in-line terahertz measurements acquired during rotation, which has a linear dependence on the relative density of the powder. This was confirmed by correlating the refractive index values with the theoretical relative densities based on the bulk and true densities of the powder. The coefficient of determination (R-2) was larger than 0.962 (Lactohale 100) for all six powders, with the highest coefficients for Lactohale 220 (R-2 = 0.996) and SMCC 50 LD (R-2 = 0.995). The results suggest that the proposed method can resolve relative densities averaged across the powder bed that are as small as 0.3% (Lactohale 100). The high acquisition rate of the terahertz system (15 Hz) made it possible to determine the powder density in 230 positions uniformly distributed throughout the container, facilitating the investigation of the relative density uniformity in the container as a function of the powder bed height. It was observed that SMCC powders undergo a smaller change in the relative density variations upon compaction than the lactose powders. Moreover, the relative density maps clearly indicate local density differences in the powder bed for all powders. The relative density variations that were introduced by packing of the container prevailed throughout the compaction process for all samples with the exception of Lactohale 220. The presented approach allows a precise resolution of the spatial distribution of relative density, which facilitates an in-depth analysis of powder behavior upon compaction. (C) 2018 Elsevier B.V. All rights reserved.
机译:监测过程线内静态或移动粉末的相对密度对于制造高质量产品至关重要。本研究的目的是使用太赫兹反射技术预测移动粉末床的密度变化。我们系统地研究了两种材料的三个等级(不同的真实密度和粒径):乳糖和硅化微晶纤维素(SMCC)。这六个粉末特别不同于它们的可压缩性,可用于评估我们方法的灵敏度和适用性。将粉末填充到圆形容器中,并且在容器旋转期间连续地获得太赫兹反射测量。通过将粉末压缩成特定的粉末床高度,设定允许调节相对密度。将每种粉末压实到各种相对密度(压缩压力高达100kPa)。我们基于在旋转期间获取的在线Terahertz测量的表面折射率计算,其对粉末的相对密度具有线性依赖性。通过将折射率值与理论相对密度相关的折射率值与粉末的真实密度相关来证实这一点。所有六个粉末的测定系数(R-2)大于0.962(乳酸100),乳酸220的最高系数(R-2 = 0.996)和SMCC 50LD(R-2 = 0.995)。结果表明,所提出的方法可以解决平均的相对密度,该粉末床平均为0.3%(Lactohale 100)。太赫兹系统(15Hz)的高采集率使得可以确定均匀分布在整个容器中的230个位置中的粉末密度,便于作为粉末床高度的函数来研究容器中的相对密度均匀性。观察到,SMCC粉末在压实比乳糖粉末相压实的相对密度变化的较小变化。此外,相对密度图清楚地表示所有粉末的粉末床中的局部密度差异。通过乳酸220除以所有样品的整个样品的压实过程中,通过包装填充的相对密度变化。所提出的方法允许精确分辨相对密度的空间分布,这有利于深入分析压实时粉末行为。 (c)2018 Elsevier B.v.保留所有权利。

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