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Optimization of melt pelletization in a high shear mixer.

机译:在高剪切混合机中优化熔体造粒。

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The effects of process conditions and binder content on the process yield and pellet characteristics of two formulations prepared by melt pelletization in a laboratory-type high shear mixer were investigated. The formulations were prepared using Gelucire 50/13 and Lutrol F68 as meltable binders. The factors under investigation were impeller speed, mixing time, mixer load, binder concentration, and their reciprocal interactions. Analysis of variance (ANOVA) was used in order to study the significance of above mentioned process variables on the useful yield. Twenty-seven experiments were required for the response surface methodology based on Box-Behnken experimental design (24 combinations with three replications of the centre point) for each formulation. The control over the process and the quality of the resulting pellets were found to depend on the rheological properties of the binders used. In the case of a low viscosity binder (Gelucire 50/13), the process was easily controllable whereas in the case of a high viscosity binder (Lutrol F68), the process was more difficult to control. The useful yield of the formulation in the case of the low viscosity binder was found to be mostly influenced by the concentration of the binder. On the other hand, different binder concentrations did not affect the useful yield of the formulation prepared by use of the high viscosity binder. In the latter case, mixing time was identified as the variable that mostly influenced the pelletization process. Finally response surface methodology was applied to find the optimum values of the process variables.
机译:研究了工艺条件和粘合剂含量对在实验室型高剪切混合机中通过熔融造粒制备的两种配方的工艺收率和造粒特性的影响。使用Gelucire 50/13和Lutrol F68作为可熔粘合剂制备制剂。研究的因素是叶轮速度,混合时间,混合器负载,粘合剂浓度及其相互影响。为了研究上述过程变量对有用产量的重要性,使用了方差分析(ANOVA)。对于每个配方,基于Box-Behnken实验设计(24个组合以及中心点的三个重复),响应面方法需要进行27个实验。发现对过程和所得粒料质量的控制取决于所用粘合剂的流变性质。在低粘度粘合剂(Gelucire 50/13)的情况下,该过程易于控制,而在高粘度粘合剂(Lutrol F68)的情况下,该过程更难控制。发现在低粘度粘合剂的情况下制剂的有用产率主要受粘合剂浓度的影响。另一方面,不同的粘合剂浓度不影响通过使用高粘度粘合剂制备的制剂的有用产率。在后一种情况下,混合时间被确定为主要影响制粒过程的变量。最后,应用响应面方法来找到过程变量的最佳值。

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