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首页> 外文期刊>International Journal of Pharmaceutics >A method for grindability testing using the Scirocco disperser
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A method for grindability testing using the Scirocco disperser

机译:使用Scirocco分散机进行可磨性测试的方法

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In the early stages of development of a new Active Pharmaceutical Ingredient (API), insufficient material quantity is available for addressing processing issues, and it is highly desirable to be able to assess processability issues using the smallest possible powder sample quantity. A good example is milling of new active pharmaceutical ingredients. For particle breakage that is sensitive to strain rate, impact testing is the most appropriate method. However, there is no commercially available single particle impact tester for fine particulate solids. In contrast, dry powder dispersers, such as the Scirocco disperser of the Malvern Mastersizer 2000, are widely available, and can be used for this purpose, provided particle impact velocity is known. However, the distance within which the particles can accelerate before impacting on the bend is very short and different particle sizes accelerate to different velocities before impact. As the breakage is proportional to the square of impact velocity, the interpretation of breakage data is not straightforward and requires an analysis of particle velocity as a function of size, density and shape. We report our work using an integrated experimental and CFD modelling approach to evaluate the suitability of this device as a grindability testing device, with the particle sizing being done immediately following dispersion by laser diffraction. Aspirin, sucrose and alpha-lactose monohydrate are tested using narrow sieve cuts in order to minimise variations in impact velocity. The tests are carried out at eight different air nozzle pressures. As intuitively expected, smaller particles accelerate faster and impact the wall at a higher velocity compared to the larger particles. However, for a given velocity the extent of breakage of larger particles is larger. Using a numerical simulation based on CFD, the relationship between impact velocity and particle size and density has been established assuming a spherical shape, and using one-way coupling, as the particle concentration is very low. Taking account of these dependencies, a clear unification of the change in the specific surface area as a function of particle size, density and impact velocity is observed, and the slope of the fitted line gives a measure of grindability for each material. The trend of data obtained here matches the one obtained by single particle impact testing. Hence aerodynamic dispersion of solids by the Scirocco disperser can be used to evaluate the ease of grindability of different materials. (C) 2016 Elsevier B.V. All rights reserved.
机译:在开发新的活性药物成分(API)的早期阶段,没有足够的材料数量来解决加工问题,因此非常希望能够使用最小的粉末样品量来评估加工性问题。一个很好的例子是研磨新的活性药物成分。对于对应变率敏感的颗粒破裂,冲击试验是最合适的方法。但是,没有可商购的用于细颗粒固体的单颗粒冲击测试仪。相比之下,干粉分散器,例如Malvern Mastersizer 2000的Scirocco分散器,可广泛使用,并且可以用于此目的,前提是已知粒子的撞击速度。但是,粒子在撞击弯头之前可以加速的距离非常短,并且不同大小的粒子在撞击前可以加速到不同的速度。由于破损与冲击速度的平方成正比,因此破损数据的解释并不简单,需要根据大小,密度和形状对粒子速度进行分析。我们使用集成的实验和CFD建模方法报告了我们的工作,以评估该设备作为可磨性测试设备的适用性,并在通过激光衍射分散后立即进行粒度测量。阿司匹林,蔗糖和α-乳糖一水合物使用窄筛网进行测试,以最大程度地降低冲击速度的变化。测试是在八种不同的空气喷嘴压力下进行的。正如直觉上所期望的,与较大的粒子相比,较小的粒子会更快地加速并以更高的速度撞击墙。但是,对于给定的速度,较大颗粒的破裂程度较大。使用基于CFD的数值模拟,假设颗粒的浓度非常低,假设球形,并使用单向耦合,建立了冲击速度与粒径和密度之间的关系。考虑到这些依赖性,观察到比表面积的变化作为颗粒大小,密度和冲击速度的函数的明显统一,并且拟合线的斜率给出了每种材料的可磨性的量度。此处获得的数据趋势与通过单粒子冲击测试获得的数据趋势相匹配。因此,通过Scirocco分散器对固体进行气动分散,可用于评估不同材料的易磨性。 (C)2016 Elsevier B.V.保留所有权利。

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