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Machining performance study in Radial Ultrasonic-Assisted Rolling Electrochemical Micromachining

机译:径向超声波辅助轧制电化学微机加工性能研究

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Surface texturing is an attractive approach for improving the friction, tribological and heat transfer performance in the equipment. Ultrasonically assisted electrochemical micromachining (USEMM) is a promising method for generating micro dimples as it can reduce the overcutting and enhance electrolyte renewal to improve the machining localization and increase the material removal. Considering the micro dimple array fabrication on smooth and rotary workpiece, the radial ultrasonic rolling electrochemical micromachining (RUREMM) is presented in this paper. With the cathode revolving and ultrasonic vibration in the interelectrode gap, the electrolyte renewal and the machining stability improves, micro dimples array with good performance could be obtained. Detailed discussions were done based on the machined micro dimples on 304 stainless steel plate at different conditions. Results show that the machining efficiency of micro dimple in RUREMM is better than in (electrochemical micromachining) EMM and the existing ultrasonic vibration in the interelectrode gap is more effective to enhance the machining performance. Then, effects of gap pressure on the material removal rate, machining accuracy and roughness are studied and discussed in detail. Experiments denote that the width of the micro dimples is decreased by 14.6%, the depth of the micro dimples is increased by 19.2%, the cross-sectional area is expanded by 31.2%, the roughness of the bottom is decreased by 23.9% and better surface quality for the side wall could be obtained by using the selected parameters, 10% NaN03, 50 μm machining gap, 0.8 r/min rotation speed, 28 kHz Ultrasonic vibration frequency, 10μm amplitude in RUREMM.
机译:表面纹理是一种有吸引力的方法,用于提高设备中的摩擦,摩擦传热性能。超声辅助电化学微机械线(USEMM)是一种有希望的方法,用于产生微凹坑,因为它可以减少超剖解和增强电解质更新,以改善加工定位并增加材料去除。考虑到在光滑旋转工件上的微浊阵列制造,本文提出了径向超声轧制电化学微机械线(RUREMM)。通过在电极间隙中的阴极旋转和超声波振动,电解质更新和加工稳定性改善,可以获得具有良好性能的微凹坑阵列。在不同条件下,基于304个不锈钢板上的加工微芯片进行了详细的讨论。结果表明,RUREMM中微齿的加工效率优于(电化学微机械线)EMM,并且电极间隙中的现有超声波振动更有效地增强加工性能。然后,研究并详细讨论了差距压力对材料去除率,加工精度和粗糙度的影响。实验表示微凹槽的宽度降低14.6%,微凹槽的深度增加19.2%,横截面积扩大31.2%,底部的粗糙度降低23.9%,更好通过使用所选参数,10%NAN03,50μm加工差距,0.8升/最小转速,28 kHz超声波振动频率,10μm幅度,柔软,可以获得侧壁的表面质量。

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