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首页> 外文期刊>International Journal of Pharmaceutics >Effect of particle shape on powder flowability of microcrystalline cellulose as determined using the vibration shear tube method
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Effect of particle shape on powder flowability of microcrystalline cellulose as determined using the vibration shear tube method

机译:振动剪切管法测定颗粒形状对微晶纤维素粉末流动性的影响

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摘要

Powder flowability of microcrystalline cellulose particles having different particle shapes, whose aspect ratios ranged from 1.8 to 6.4, was measured using the vibration shear tube method. Particles lubricated with magnesium stearate were also investigated in order to evaluate the effect of surface modification on powder flowability. Particles were discharged through a narrow gap between a vibrating tube edge and a flat bottom surface, where each particle experienced high shear forces, thus, overcoming adhesion and friction forces. Vibration amplitude was increased at a constant rate during measurement and the masses of the discharged particles were measured at consistent time intervals. Flowability profiles, i.e., the relationships between the mass flow rates of the discharged particles and their vibration accelerations, were obtained from these measurements. Critical vibration accelerations and characteristic mass flow rates were then determined from flowability profiles in order to evaluate static and dynamic friction properties. The results were compared with those obtained using conventional methods. It was found that angle of repose and compressibility were related to static and dynamic friction properties. Furthermore, it was found that particle aspect ratio more significantly affects powder flowability than does lubrication with magnesium stearate.
机译:使用振动剪切管法测量纵横比在1.8至6.4范围内的具有不同颗粒形状的微晶纤维素颗粒的粉末流动性。还研究了用硬脂酸镁润滑的颗粒,以评估表面改性对粉末流动性的影响。颗粒通过振动管边缘和平坦底表面之间的狭窄缝隙排出,每个颗粒都经受高剪切力,从而克服了粘附力和摩擦力。在测量过程中,振动幅度以恒定的速率增加,并且以恒定的时间间隔测量排出颗粒的质量。从这些测量中获得流动性曲线,即排出颗粒的质量流率与其振动加速度之间的关系。然后,根据流动性曲线确定临界振动加速度和特征质量流量,以评估静摩擦和动摩擦特性。将结果与使用常规方法获得的结果进行比较。发现休止角和可压缩性与静态和动态摩擦特性有关。此外,发现与使用硬脂酸镁润滑相比,颗粒长径比对粉末流动性的影响更大。

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