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APPLICATION NOTES: Particle Sizing with Static Laser Scattering

机译:应用说明:带有静态激光散射的颗粒尺寸

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摘要

When determining particle sizes a wide variety of techniques are used in which sieving may be the most popular. Sieving is a relatively simple technique, despite the fact that of course different instrumental approaches can be used. The main advantages of sieving are the low price of the instrumentation and the fact that different fractions of the original sample can be prepared for further use. On the other hand, sieving is very time consuming and yields results only for a very limited number of particle sizes. Results from sieving typically vary due to several factors: the method of moving the sieve, the period of operation, the number of particles on the sieve and some physical properties such as shape or stickiness of the sample. In addition, the actual size of the mesh gaps of the sieves can have large variations from the nominal size. All these and some others limit the accuracy and precision of sieve analysis and are reasons for this technology being widely replaced by light scattering methods, especially for sizing particles smaller than a few millimeters.
机译:在确定粒度时,使用了多种技术,其中筛分可能是最流行的技术。尽管事实上可以使用不同的仪器方法,但筛分是一种相对简单的技术。筛分的主要优点是仪器价格低廉,并且可以制备原始样品的不同部分以备进一步使用。另一方面,筛分非常耗时,并且仅在非常有限数量的粒度下才产生结果。筛分的结果通常因以下几个因素而有所不同:移动筛子的方法,操作时间,筛子上颗粒的数量以及某些物理性质(例如样品的形状或粘性)。另外,筛子的网孔的实际尺寸可能与标称尺寸有很大的差异。所有这些以及其他一些因素限制了筛分分析的准确性和精确度,这是该技术被光散射方法广泛取代的原因,尤其是对于尺寸小于几毫米的颗粒。

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