脉冲电流与低频振动同步的电化学加工研究

Jin Tao, Jinkai Xu, Wanfei Ren
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引用次数: 1

摘要

脉冲与振动同步电解加工作为一种精密电化学加工方法,其原理复杂。建立了脉冲与振动同步电解加工的多物理场耦合模型,包括电场、气液两相流场和温度场。分析了电解液温度、电解液流速、气泡体积分数和电解液电导率随振动周期的变化规律。此外,在与仿真参数相同工艺参数的精密电化学加工设备上进行实验,加工锥度为0.9º、端面粗糙度为0.134µm、侧面粗糙度为0.586µm的工件。脉冲与振动同步电解加工可以提高加工精度和加工质量。研究结果对实际加工具有重要的指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on Electrochemical Machining with Synchronization of Pulse Current and Low-frequency Vibration
As a method of precision electrochemical machining, the principle of pulse and vibration synchronized electrochemical machining is complex. In this work, a multi physical field coupling model of pulse and vibration synchronized electrochemical machining including electric field, gas-liquid two-phase flow field and temperature field was established. The changes of electrolyte temperature, electrolyte flow velocity, bubble volume fraction and electrolyte conductivity in end gap with vibration period were analyzed. In addition, the experiment was carried out on the precision electrochemical machining equipment with the same process parameters as the simulation parameters, and the workpiece with taper of 0.9º, end surface roughness of 0.134 µm and side surface roughness of 0.586 µm was machined. The pulse and vibration synchronized electrochemical machining can improve machining accuracy and machining quality. The research results have important guiding significance for practical machining.
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