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首页> 外文期刊>Particle & Particle Systems Characterization: Measurement and Description of Particle Properties and Behavior in Powders and Other Disperse Systems >Milling of Organic Solids in a Jet Mill.Part 2:Checking the Validity of the Predicted Rate of Breakage Function
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Milling of Organic Solids in a Jet Mill.Part 2:Checking the Validity of the Predicted Rate of Breakage Function

机译:在喷射磨中研磨有机固体第2部分:检验破损率预测函数的有效性

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The particle size distribution of fine chemicals in the solid state,like active pharmaceutical ingredients,is often a critical parameter.To achieve the desired particle size distribution,milling of such materials is usually the method of choice.Since these chemicals are often scarcely available,experimental optimization of milling is not possible.Therefore,a model to predict the milling conditions has been developed.The model estimates the rate of breakage function,and needs mechanical properties like hardness and yield strength as input to calculate the rate of breakage function.This paper attempts to check the validity of the model by a series of experiments.A comparison of the experimental results with the outcomes of the model using five different model compounds has been performed.It appears that the rate of breakage function can be estimated by:The model is able to rank the compounds by degree of fracture as an effect of milling.It was also possible to perform a quantitative prediction of the impact of milling pressure on the milling behavior.Finally,it appeared that the prediction of the large particles in the distribution was significantly better than small ones.Because the oversized material is usually the most critical parameter,the conclusion is that the model has acceptable practical applicability.
机译:固态精细化学品(如活性药物成分)的粒度分布通常是一个关键参数。要达到所需的粒度分布,通常需要选择研磨此类材料的方法。由于这些化学品通常很少可用,不可能对铣削进行实验优化,因此,开发了一种用于预测铣削条件的模型。该模型估算破损率,需要以硬度和屈服强度等机械性能作为输入来计算破损率。本文尝试通过一系列实验来检验模型的有效性。已使用五种不同的模型化合物对实验结果与模型结果进行了比较,似乎可以通过以下方法估算破损率:该模型能够根据破碎程度对化合物进行分级,从而得出研磨效果,还可以进行定量预处理最后,发现分布中大颗粒的预测明显优于小颗粒。由于超大材料通常是最关键的参数,因此得出的结论是模型具有可接受的实际适用性。

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