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Fabrication of high-aspect ratio micro holes on hard brittle materials:Study on electrorheological fluid-assisted micro ultrasonic machining

机译:在硬质脆性材料上高纵横比的微孔的制备:流变流体辅助微超声加工的研究

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摘要

Ultrasonic machining (USM) is an effective method for machining of hard brittle materials. In this process, the slurry is supplied to the gap between the workpiece and the ultrasonic vibrating tool, and the materials are removed by the impacts of the abrasive grains that are pressurized by an ultrasonic vibrating tool. The purpose of this research is to achieve precise and efficient microfabrication on hard brittle materials by USM. However, in the case of microfabrication, chipping which is generally observed around the edges of machined micro holes and grooves, deteriorates the machining accuracy. In addition, there is another problem in that the machining efficiency decreases with the progress of the machining. Electrorheological fluid-assisted USM has been proposed as a countermeasure to these problems. In the present study, the problems and countermeasures associated with the machining of high-aspect ratio micro holes in hard brittle materials by electrorheological fluid-assisted USM are investigated. By positioning an auxiliary electrode under the workpiece, it becomes possible to keep the electric field high even when the machining depth becomes large. As a result, high-precision and high-aspect ratio micro holes can be machined on hard brittle materials.
机译:超声波加工(USM)是加工硬质脆性材料的有效方法。在该过程中,将浆液供应到工件和超声振动工具之间的间隙,并且通过由超声振动工具加压的磨粒的冲击来去除材料。这项研究的目的是通过USM在硬质脆性材料上实现精确而有效的微加工。然而,在微加工的情况下,通常在加工的微孔和凹槽的边缘周围观察到的碎裂会降低加工精度。另外,还存在随着加工的进行而加工效率降低的问题。已经提出了电流变流体辅助USM作为解决这些问题的对策。在本研究中,研究了用电流变流体辅助USM加工硬质脆性材料中高纵横比微孔的问题和对策。通过在工件的下方设置辅助电极,即使加工深度变大,也能够保持高电场。结果,可以在坚硬的脆性材料上加工高精度和高纵横比的微孔。

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