首页> 外文期刊>Particle & Particle Systems Characterization: Measurement and Description of Particle Properties and Behavior in Powders and Other Disperse Systems >Mean Particle Diameters. Part VI: Fundamental Distinction between Statistics Based (ISO/DIN) and Physics Based (Moment-Ratio) Definition Systems
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Mean Particle Diameters. Part VI: Fundamental Distinction between Statistics Based (ISO/DIN) and Physics Based (Moment-Ratio) Definition Systems

机译:平均粒径。第六部分:基于统计的(ISO / DIN)与基于物理的(矩比)定义系统之间的根本区别

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摘要

Two methods to define mean particle diameters exist, viz., the statistics based ISO/DIN method and the physics based Moment-Ratio (M-R) method. The ISO/DIN method characterizes a size distribution by an average particle diameter of that distribution. The M-R method expresses mean diameters as ratios of two moments of a size distribution. The M-R method enables the user to derive mathematically or select empirically the type of mean diameter from the physical product or process property to be described by that mean diameter, irre-spective the shape of the size distribution. The application of both definition methods to theoretical derivation and to empirical selection of that type of mean diameter is evaluated. The statistical character of the ISO/DIN system hampers its application to theoretical derivation and empirical selection of mean particle diameter types describing product or process properties. Although the ways of defining mean particle diameters according to both methods differ mathematically, a clear mathematical relationship exists.
机译:存在两种定义平均粒径的方法,即基于统计的ISO / DIN方法和基于物理的矩比(M-R)方法。 ISO / DIN方法通过粒度分布的平均粒径来表征粒度分布。 M-R方法将平均直径表示为尺寸分布的两个矩之比。 M-R方法使用户能够从物理产品或要通过该平均直径描述的过程属性中,从数学上或经验上选择平均直径的类型,而与尺寸分布的形状无关。评估了两种定义方法在理论推导和该类型平均直径类型的经验选择中的应用。 ISO / DIN系统的统计特性妨碍了其在描述产品或工艺特性的平均粒径类型的理论推导和经验选择中的应用。尽管根据这两种方法定义平均粒径的方法在数学上有所不同,但是存在明确的数学关系。

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