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Fabrication of an electrode insulated by using hot dip aluminizing and micro-arc oxidation method for electrochemical microhole machining

机译:采用热浸镀铝和微弧氧化方法为电化学微孔加工制造电极的制造

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In this research, electrode insulation of the electrochemical machining tool has been produced by hot dip aluminized micro arc oxidation techniques. In order to form an effective layer on the tungsten carbide tool and achieve higher precision, the tool will then be micro-arc oxidizing, convert the aluminum-rich into aluminum oxide insulating layer. Withstanding Voltage of the tool is being tested afterward by sodium chloride electrolysis method, and the surface and the cross section is being observed. Eventually, the tools were examined and discussed for their machining performance by ECM drilling through stainless steel plate. We were expecting to produce a precise and better insulation. By reducing ECM stray effect, the precision can be achieved. The experimental result shows the optimum parameters are aluminum dipping for 4 minutes, 450 V of micro-arc voltage for 20 minutes and 40 minutes of boiling water sealing, reaching 10.2 V of withstanding voltage. A further electrochemical drilling has been done to explore the effect of insulation. Two electrodes, with and without insulation had been compared. The difference between the entrance and the exit diameter of the hole of insulated tool reaches 17μm, compare to the one without insulation, we have successfully reduced 81μm. The result shows that the insulation has effectively reduced the stray effect, and achieve high precision machining.
机译:在该研究中,通过热浸镀铝微弧氧化技术生产了电化学加工工具的电极绝缘。为了在碳化钨工具上形成有效层并实现更高的精度,然后该工具将是微电弧氧化,将富含铝氧化铝绝缘层的氧化铝转化为氧化铝绝缘层。通过氯化钠电解方法之后的工具的承受电压,并且观察到表面和横截面。最终,通过不锈钢板通过ECM钻探检查并讨论了它们的加工性能。我们预计会产生精确和更好的绝缘。通过减少ECM杂散效果,可以实现精度。实验结果表明,最佳参数是铝浸渍4分钟,450V的微电弧电压20分钟和40分钟的沸水密封,达到10.2V的耐压。已经进行了进一步的电化学钻孔以探索绝缘的效果。已经比较了两个电极,具有和不具有绝缘层。绝缘工具孔的入口和出口直径之间的差异达到17μm,比较与没有绝缘的一个,我们已成功降低了81μm。结果表明,绝缘有效地降低了杂散效果,并实现了高精度加工。

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