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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Experimental investigation on the performance improvement of electrochemical machining process using oxygen-enriched electrolyte
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Experimental investigation on the performance improvement of electrochemical machining process using oxygen-enriched electrolyte

机译:富氧电解质电化学加工工艺性能改进的实验研究

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摘要

This paper investigates the performance enhancement of electrochemical machining (ECM) process by oxygenated aqueous sodium chloride (NaCl) electrolyte. It is experimentally found that the performance parameters such as material removal rate (MRR) and surface roughness (R_a) are greatly improved with this new mix of electrolyte. The oxygen gas is suitable to electrochemically react with aqueous NaCl solution to enhance the oxidation of metal oxides on the machined surface to increase the MRR. In this work, experimental investigations are conducted with both aqueous NaCl electrolyte and oxygenated aqueous NaCl electrolyte on the alloy steel specimen (20MnCr5). Largest MRR of 7.33 g/min with R_a of 1.90 μm is obtained in oxygenated NaCl environment compared to MRR of 1.98 g/min and R_a of 3.13 μm in aqueous NaCl environment with machining conditions of voltage (V) of 17 V, tool feed rate (F) of 0.5 mm/min, and electrolyte concentration (EC) of 142.5 g/l of water. Microstructure of surface of the specimen machined with oxygenated aqueous NaCl electrolyte is more homogeneous and promises a good surface quality.
机译:本文研究了含氧氯化钠水溶液(NaCl)电解质增强电化学加工(ECM)工艺的性能。实验发现,这种新的电解质混合物极大地改善了性能参数,例如材料去除率(MRR)和表面粗糙度(R_a)。氧气适合与氯化钠水溶液进行电化学反应,以增强加工表面上金属氧化物的氧化,从而提高MRR。在这项工作中,对合金钢样品(20MnCr5)上的NaCl电解液和含氧的NaCl电解液进行了实验研究。在含氧的NaCl环境中获得最大的MRR为7.33 g / min,R_a为1.90μm,而在电压(V)为17 V,刀具进给率为机加工条件的NaCl水溶液环境中获得的MRR为1.98 g / min和R_a为3.13μm (F)为0.5毫米/分钟,电解质浓度(EC)为142.5克/升水。用含氧的氯化钠水溶液加工的试样表面的微观结构更为均匀,并具有良好的表面质量。

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