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Controlled motion of electrically neutral microparticles by pulsed direct current

机译:脉冲直流电控制电中性微粒的运动

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摘要

A controlled motion of electrically neutral microparticles in a conductive liquid at high temperatures has not yet been realized under the uniform direct electric current field. We propose a simple method, which employs pulsed direct current to a conductive liquid metal containing low-conductivity objects at high temperature. The electric current enables the low-conductivity particles to pass from the centre towards the various surfaces of the high-conductivity liquid metal. Most interestingly, the directionality of microparticles can be controlled and their speed can be easily regulated by adjusting pulsed current density. We find that the movement may arise from the configuration of electrical domains which generates a driving force which exceeds the force of gravity and viscous friction. All of these features are of potential benefit in separating the particles of nearly equal density but distinctly different electrical conductivities, and also offer considerable promise for the precise and selective positioning of micro-objects or the controlled motion of minute quantities of surrounding fluids.
机译:在均匀的直流电流场下,尚未实现导电液体中的电中性微粒在高温下的受控运动。我们提出了一种简单的方法,该方法在高温下将脉冲直流电应用于包含低电导率物体的导电液态金属。电流使低电导率粒子从中心流向高电导率液态金属的各个表面。最有趣的是,可以通过调节脉冲电流密度来控制微粒的方向性,并可以轻松地调节其速度。我们发现,运动可能是由电域的配置引起的,其产生的驱动力超过了重力和粘性摩擦力。所有这些特征在分离密度几乎相等但导电率截然不同的粒子方面具有潜在的优势,并且还为微对象的精确和选择性定位或微量流体的受控运动提供了可观的前景。

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