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Dielectrophoretic classification of fibres: principles and application to glass fibres suspended in air

机译:纤维的介电泳分类:悬浮在空气中的玻璃纤维的原理和应用

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Particles exposed to an electric field experience forces that influence their movement. This effect can be used for filtration of air, or for size classification of aerosols. The motion of charged particles in a non-uniform electric field is called electrophoresis. Two processes are involved in this phenomenon: 1) charging of particles and 2) electrical mobility separation. If fibres are exposed to electrophoresis, they are separated on the basis of two parameters: diameter and length. Regrettably, as naturally occurring fibres are polydisperse both in diameter and length, the electrophoresis is not very efficient in length classification. In contrast, dielectrophoresis is the motion of electrically neutral particles in a non-uniform electric field due to the induced charge separation within the particles. As deposition velocity of fibres induced by dielectrophoretic force strongly depends on length and only weakly on diameter, it can be used for efficient length classification.Principles of length classification of conducting and non-conducting fibres are presented together with design of a fibre classifier. Lastly, images of motion of fibres recorded by high-speed camera are depicted.
机译:暴露于电场的粒子会经历影响其运动的力。此效果可用于空气过滤或气溶胶的大小分类。带电粒子在非均匀电场中的运动称为电泳。该现象涉及两个过程:1)粒子带电和2)电迁移率分离。如果将纤维暴露在电泳中,则会根据两个参数将它们分开:直径和长度。遗憾的是,由于天然存在的纤维在直径和长度上都是多分散的,因此电泳在长度分类方面不是很有效。相反,介电泳是由于颗粒内感应的电荷分离,电中性颗粒在非均匀电场中的运动。由于介电泳力引起的纤维沉积速度在很大程度上取决于长度,而对直径的影响很小,因此可以用于有效的长度分类。给出了导电和非导电纤维长度分类的原理以及纤维分类器的设计。最后,描绘了由高速相机记录的纤维运动的图像。

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