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Theoretical calculation of uncertainty region for spherical particles based on a picket fence, quasi-monodisperse particles

机译:基于栅栏,准单分散粒子的球形粒子不确定区域的理论计算

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摘要

In order to confirm the reliability of particle size measurement technique and to prepare standard reference particles for calibrating particle size measurement devices, experimental and theoretical studies have been conducted about the uncertainty region of particle size measurement for the picket fence and quasi mono-disperse particles. The vertical and horizontal uncertainty regions based on Tsche-byscheff theory are calculated to the picket fence distribution composed of two kinds of nearly mono-disperse particles. The uncertainty region increases around the intermediate particle diameters between the two kinds of particles. Because the original particle size distribution is nearly mono-disperse, the uncertainty regions around the minimum and maximum particle diameter are small compared to the intermediate particle diameters between the two kinds of particles. The uncertainty region in vertical and horizontal direction changes to decrease with the increase of sample size. For the picket fence distribution composed of two kinds of nearly mono-disperse particles, the sample size about more than 10,000 is necessary to obtain the reliable results in particle size counting process.
机译:为了确定粒径测量技术的可靠性并准备用于校准粒径测量装置的标准参考颗粒,已经对纠察栅和准单分散颗粒的粒径测量的不确定区域进行了实验和理论研究。基于Tsche-byscheff理论,计算了由两种几乎单分散的颗粒组成的栅栏分布的垂直和水平不确定区域。不确定区域在两种粒子之间的中间粒子直径附近增加。由于原始粒度分布几乎是单分散的,因此与两种粒子之间的中间粒径相比,最小和最大粒径周围的不确定区域较小。垂直和水平方向上的不确定区域随样本大小的增加而减小。对于由两种几乎单分散的颗粒组成的栅栏分布,需要大约10,000以上的样本大小才能在粒度计数过程中获得可靠的结果。

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