首页> 外文会议>ASME/JSME Joint Fluids Engineering Conference >MICROSCOPIC CHARACTERISTICS OF FUNCTIONAL FLUID SUSPENDED DIAMOND PARTICLES UNDER THE HIGH-VOLTAGE ALTERNATING ELECTRIC FIELD
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MICROSCOPIC CHARACTERISTICS OF FUNCTIONAL FLUID SUSPENDED DIAMOND PARTICLES UNDER THE HIGH-VOLTAGE ALTERNATING ELECTRIC FIELD

机译:高压交流电场下功能流体悬浮金刚石颗粒的微观特性

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The microscopic characteristics of a functional fluid for a micro polishing process were investigated by microscopic observation and micro particle image velocimetry. This functional fluid, which consists of suspended micro scale diamond particles in insulated silicon oil, has two specific flow structures under a high-voltage alternating electric field. One flow structure consists of a reciprocating flow generated in one direction between the electrodes under low-electric-field and high-frequency conditions. The other flow structure consists of a rotational flow formed under high-electric-field and low-frequency conditions. These specific flow structures contribute actively to a polishing process and to the development of micro fluidic devices in the future. In the present study, the effect of the electric field on specific flow structures and the mechanism of the induced flow are clarified.
机译:通过微观观察和微颗粒图像速度研究了微粒抛光过程的官能流体的微观特性。该功能流体由绝缘硅油中的悬浮微级金刚石颗粒组成,在高压交流电场下具有两个特定的流动结构。一个流动结构包括在低电场和高频条件下在电极之间的一个方向产生的往复流。另一个流动结构包括在高电场和低频条件下形成的旋转流动。这些特定的流动结构主动地贡献了抛光过程并在未来发展微流体装置。在本研究中,阐明了电场对特定流动结构的影响和诱导流动的机理。

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