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Analysis of the electrochemical behaviors of WC-Co alloy for micro ECM

机译:WC-Co合金在微观ECM中的电化学行为分析

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摘要

Micro electrochemical machining (ECM) of tungsten carbide with cobalt binder (WC-Co) was studied using ultrashort pulses. In ECM, the machining characteristics were investigated according to machining conditions such as electrolyte, workpiece potential, and applied voltage pulse. Using a mixture of sulfuric acid and nitric acid, microstructures with a sharp edge and good surface quality were machined on tungsten carbide alloy. The potentials of workpiece electrode and tool electrode were determined by considering the machining rate, machining stability, and surface quality of products. With the negative potential of the workpiece electrode, oxide formation was successfully prevented and shape with good surface quality in the range from R_a 0.069 μm to 0.075 μm were obtained by electrochemical machining. Moreover, the performance of ECM, which includes machining gap, tapering, surface roughness, and machining time, without tool wear was compared with that of electrical discharge machining (EDM). Microstructures of WC-Co with a sharp edge and good surface quality were obtained by electrochemical milling and electrochemical drilling. Micro electrochemical turningwas also introduced to fabricate micro shafts.
机译:使用超短脉冲研究了用钴粘结剂(WC-Co)对碳化钨的微电化学加工(ECM)。在ECM中,根据加工条件(例如电解质,工件电势和施加的电压脉冲)研究了加工特性。使用硫酸和硝酸的混合物,在碳化钨合金上加工了具有锋利边缘和良好表面质量的微结构。考虑加工速度,加工稳定性和产品的表面质量来确定工件电极和工具电极的电势。利用工件电极的负电位,成功地防止了氧化物的形成,并且通过电化学加工获得了具有在R_a0.069μm至0.075μm范围内的良好表面质量的形状。此外,将ECM的性能(包括加工间隙,锥度,表面粗糙度和加工时间)在不磨损刀具的情况下与放电加工(EDM)进行了比较。通过电化学研磨和电化学钻孔获得了具有尖锐边缘和良好表面质量的WC-Co的显微组织。还引入了微电化学车削来制造微轴。

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