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Jet Electrochemical Micromachining of Micro-Grooves with Conductive-Masked Porous Cathode

机译:用导电掩蔽多孔阴极进行微槽的喷射电化学微机械线

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摘要

Surface structures with micro-grooves have been reported to be an effective way for improving the performance of metallic components. Through-mask electrochemical micromachining (TMEMM) is a promising process for fabricating micro-grooves. Due to the isotropic nature of metal dissolution, the dissolution of a workpiece occurs both along the width and depth. Overcut is generated inevitably with increasing depth, which makes it difficult to enhance machining localization. In this paper, a method of electrochemical machining using a conductive masked porous cathode and jet electrolyte supply is proposed to generate micro-grooves with high machining localization. In this configuration, the conductive mask is directly attached to the workpiece, thereby replacing the traditional insulated mask. This helps in achieving a reduction in overcut and an improvement in machining localization. Moreover, a metallic nozzle is introduced to supply a jetted electrolyte in the machining region with enhanced mass transfer via a porous cathode. The simulation and experimental results indicate that as compared with an insulated mask, the use of a conductive mask weakens the electric field intensity on both sides of machining region, which is helpful to reduce overcut and enhance machining localization. The effect of electrolyte pressure is investigated for this process configuration, and it has been observed that high electrolyte pressure enhances the mass transfer and improves the machining quality. In addition, as the pulse duty cycle is decreased, the dimensional standard deviation and roughness of the fabricated micro-groove are improved. The results suggest the feasibility and reliability of the proposed method.
机译:据报道,具有微槽的表面结构是改善金属部件性能的有效方法。通过掩模电化学微机械线(TMEMM)是制造微槽的有希望的方法。由于金属溶解的各向同性本质,工件的溶解沿宽度和深度发生。过度地产生了越来越深的深度,这使得难以增强加工定位。本文提出了一种使用导电掩模多孔阴极和喷射电解质供应的电化学加工方法,以产生具有高机械定位的微槽。在这种配置中,导电掩模直接连接到工件上,从而取代传统的绝缘掩模。这有助于实现加工定位的过度减少和改进。此外,引入金属喷嘴以在加工区域中提供喷射电解质,通过多孔阴极提高质量传递。模拟和实验结果表明,与绝缘掩模相比,使用导电掩模的使用削弱了加工区域两侧的电场强度,这有助于减少过度并增强加工定位。研究了电解质压力的效果,用于该方法构造,并且已经观察到高电解质压力增强了传质并提高了加工质量。另外,随着脉冲占空比减小,制造的微槽的尺寸标准偏差和粗糙度得到改善。结果表明该方法的可行性和可靠性。

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