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A Regime Map for Granule Formation by Drop Impact on Powder Beds

机译:液滴对粉末床的冲击形成颗粒的状态图

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"Tunneling," "Spreading," and "Crater Formation" are the three granule formation mechanisms known to occur when single drops impact static powder beds. To quantify the conditions under which each mechanism will occur, dimensional analysis was performed, and a new regime map was created that plots the powder bed porosity against the modified granular Bond number (Bo_g~*), which is a ratio of the capillary force to the gravitational force acting on a particle. Tunneling occurred for Bo_g~* >65,000 for all values of bed porosity, whereas Spreading and Crater Formation occurred when Bo_g~* < 65,000 for all values of bed porosity below the minimum fluidization porosity. The granule formation mechanism regime map provides a useful tool to design and predict wet granulation processes by predicting the granule formation mechanism, and thereby general granule shape, from a few key dimensionless groups involving formulation properties and process parameters that can be calculated a priori.
机译:“隧道”,“铺展”和“板条箱形成”是已知的三种颗粒形成机制,当单滴撞击静态粉末床时会发生。为了量化每种机理发生的条件,进行了尺寸分析,并创建了一个新的状态图,该图绘制了粉床孔隙率与修饰的颗粒键值(Bo_g〜*)的关系图,键值是毛细管力与作用在粒子上的重力。对于所有床层孔隙度值,当Bo_g〜*> 65,000时,会发生隧穿;而对于所有低于最小流化孔隙度的床层孔隙度,当Bo_g〜* <65,000时,会发生铺展和火山口形成。颗粒形成机理方案图提供了一个有用的工具,可以通过预测颗粒形成机理,从而从几个关键的无因次组中预测颗粒的形成机理,从而预测颗粒的总体形状,从而可以预测和设计湿法制粒过程。

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