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Control of the behavior of abrasive grains by the effect of electrorheological fluid assistance - Study on electrorheological fluid-assisted micro ultrasonic machining

机译:电流流体辅助效果控制磨粒的行为 - 电流流体辅助微型超声加工的研究

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Micro ultrasonic machining (micro-USM) is an effective machining method for hard brittle materials. In the micro-USM process, the workpiece materials are machined through the accumulation of small brittle fractures generated by the impacts of abrasive grains. Therefore, it becomes difficult to obtain a smooth machined surface. In the proposed electrorheological fluid-assisted ultrasonic machining (ER fluid-assisted USM), the behavior of abrasive grains is controlled using the effect of dielectrophoretic force acting on the abrasive grains and the ER effect. The behavior of the abrasive grains can be controlled by changing the electric field distribution. In the present paper, the shape and position of the auxiliary electrode are arranged in order to control the abrasive grains to the side surface of the micro rectangular tool. By positioning the auxiliary electrode parallel to the micro rectangular tool, it becomes possible to concentrate abrasive grains to the side surface of the micro rectangular tool. Smoothing of the side surface of the workpiece by using the side surface of the micro rectangular tool is then investigated. As a result, the surface roughness of the side surface of the workpiece can be improved.
机译:微超声波加工(微USM)是用于硬质脆性材料的有效加工方法。在微USM过程中,工件材料通过的由磨料颗粒的影响产生的小脆性断裂的积累加工。因此,变得难以得到平滑的加工表面。在所提出的电流变流体辅助超声波加工(ER流体辅助USM),磨粒的行为是使用作用于磨粒与ER作用的介电电泳力的作用来控制。这些磨料颗粒的行为可以通过改变电场分布来控制。在本文件中,形状和辅助电极的位置被布置以控制所述磨粒到微矩形工具的侧表面。由电极平行的辅助定位到微矩形的工具,它能够磨粒集中到微矩形工具的侧表面。然后通过使用微矩形工具的侧面工件的侧表面的平滑化进行了研究。其结果是,对工件的侧表面的表面粗糙度的提高。

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