首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Controlled Phase Interactions Between Pulsed Electric Fields, Ultrasonic Motion, and Magnetic Fields in an Anodic Dissolution Cell
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Controlled Phase Interactions Between Pulsed Electric Fields, Ultrasonic Motion, and Magnetic Fields in an Anodic Dissolution Cell

机译:阳极溶解细胞中脉冲电场,超声波运动和磁场之间的受控相互作用

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摘要

This paper presents the design of a novel testbed that effectively combines pulsed electric field waveforms, ultrasonic velocity, and magnetic field waveforms in an anodic dissolution electrochemical machining (ECM) cell. The testbed consists of a custom three-dimensional (3D)-printed flow cell that is integrated with (i) a bipolar-pulsed ECM circuit, (ii) an ultrasonic transducer, and (iii) a custom-built high-frequency electromagnet. The driving voltages of the ultrasonic transducer and electromagnet are calibrated to achieve a timed workpiece velocity and magnetic field, respectively, in the machining area. The ECM studies conducted using this testbed reveal that phase-controlled waveform interactions between the three assistances affect both the material removal rate (MRR) and surface roughness (Ra) performance metrics. The triad-assisted ECM case involving phase-specific combinations of all three high-frequency (15.625 kHz) assistance waveforms is found to be capable of achieving a 52% increase in MRR while also simultaneously yielding a 78% improvement in the Ra value over the baseline pulsed-ECM case. This result is encouraging because assisted ECM processes reported in the literature typically improve only one of these performance metrics at the expense of the other. In general, the findings reported in this paper are expected to enable the realization of multifield assisted ECM testbeds using phase-specific input waveforms that change on-the-fly to yield preferential combinations of MRR and surface finish.
机译:本文介绍了一种新型试验台的设计,有效地将脉冲电场波形,超声波速度和磁场波形组合在阳极溶出电化学加工(ECM)细胞中。该测试平板由定制的三维(3D) - 打印流电池组成,与(i)相结合的双极脉冲ECM电路,(ii)超声换能器,(iii)是定制的高频电磁铁。超声换能器和电磁铁的驱动电压被校准,以分别在加工区域中分别实现定时工件速度和磁场。使用该试验台进行的ECM研究揭示了三个辅助关系之间的相控波形相互作用影响材料去除率(MRR)和表面粗糙度(RA)性能度量。发现涉及所有三个高频(15.625 kHz)辅助波形的相位特定组合的三合会辅助ECM案件能够实现MRR增加52%,同时也同时产生78%的ra值为78%基线脉冲 - ECM案例。这一结果是令人鼓舞的,因为文献中报告的辅助ECM过程通常以牺牲另一个的绩效指标改善其中一个。通常,本文报告的调查结果预计会使用相位特定的输入波形来实现多牛辅助ECM测试平台,这些输入波形可以在飞行中改变,以产生MRR和表面光洁度的优先组合。

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