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首页> 外文期刊>International Journal of Pharmaceutics >Experimental investigation of granule size and shape dynamics in twin-screw granulation
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Experimental investigation of granule size and shape dynamics in twin-screw granulation

机译:双螺杆造粒中颗粒大小和形状动力学的实验研究

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摘要

A twin-screw granulator (TSG), a promising equipment for continuous high shear wet granulation (HSWG), achieves the desired level of mixing by a combination of the appropriate screw configuration and a suitable set of process settings (e.g. feed rate, screw speed, etc.), thus producing a certain granule size and shape distribution (GSSD). However, the primary sizing and shaping mechanism behind the resulting distribution is not well understood due to the opacity of the multiphase system in the granulator. This study experimentally characterised the GSSD dynamics along the TSG barrel length in order to understand the function of individual screw modules and process settings, as well as their interaction. Particle size analysis of granules collected at the outlet of the TSG suggested significant interaction between the process and screw configuration parameters influencing the heterogeneity in the GSSD. By characterising the samples collected along the screw length, a variable influence of the screw modules at different process conditions was observed. At low liquid-to-solid ratio (L/S), the first kneading module seemed to play a significant role in mixing, whereas the second kneading module was found to be more involved in reshaping the granules. At high L/S and high throughput, aggregation mainly took place in the second kneading module changing the GSSD. The results obtained from this study will be further used for the calibration and validation of a mechanistic model and, hence, support future development of a more detailed understanding of the HSWG process in a TSG.
机译:双螺杆造粒机(TSG)是连续高剪切湿法制粒(HSWG)的有前途的设备,通过适当的螺杆配置和适当的工艺设置(例如进料速度,螺杆速度)的组合,可以达到所需的混合水平等),从而产生一定的颗粒大小和形状分布(GSSD)。然而,由于制粒机中多相系统的不透明性,导致最终分布背后的主要尺寸和成形机制尚未得到很好的理解。这项研究通过实验研究了沿TSG枪管长度的GSSD动力学特性,以了解各个螺杆模块的功能和工艺设置,以及它们之间的相互作用。在TSG出口处收集的颗粒的粒度分析表明,工艺和影响GSSD异质性的螺杆配置参数之间存在显着的相互作用。通过表征沿螺杆长度收集的样品,可以观察到螺杆模块在不同工艺条件下的可变影响。在低的液/固比(L / S)下,第一个捏合模块似乎在混合中起着重要作用,而第二个捏合模块则更多地参与了颗粒的重塑。在高L / S和高吞吐量的情况下,聚集主要发生在第二个捏合模块中,从而改变了GSSD。从这项研究中获得的结果将进一步用于机械模型的校准和验证,因此,支持在TSG中对HSWG流程进行更详细的了解。

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