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Abrasive enhanced electrochemical slurry jet micro-machining: Comparative experiments and synergistic effects

机译:磨料增强电化学浆料射流微加工:对比实验和协同效应

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摘要

Abrasive enhanced electrochemical slurry-jet machining (ESJM) is presented as a new approach to the micro-machining of metals using a combination of abrasive slurry-jet machining (ASJM) and electrochemical jet machining (ECJM). A novel ESJM prototype was developed to generate a charged slurry jet consisting of a mixture of Al_2O_3 abrasive particles and an electrolytic solution of NaCl and NaNO_3. A DC potential of 30V was applied between the nozzle and specimen. A series of micro-channels were machined in Stellite 12 using ASJM, ECJM and ESJM processes to investigate the relative effects of erosion and anodic dissolution on the material removal rate and surface finish in the combined process of ESJM. The results illustrated that the ESJM process results in significantly greater target mass loss rate than the separate erosion and corrosion processes. The magnitude of the synergistic effect on the rate of mass loss was found to vary from positive to negative as the erosion component increased with increasing particle kinetic energy (jet pressure) and particle concentration. The roughness of the channels machined using ESJM was between that obtained with ASJM and ECJM. The roughness decreased as the erosion component of the total mass loss increased.
机译:磨料增强电化学浆料喷射加工(ESJM)是结合磨料浆料喷射加工(ASJM)和电化学喷射加工(ECJM)进行金属微加工的一种新方法。开发了新颖的ESJM原型,以生成带电的浆料射流,该浆料射流由Al_2O_3磨料颗粒和NaCl和NaNO_3的电解质溶液组成。在喷嘴和样品之间施加30V的直流电。使用ASJM,ECJM和ESJM工艺在Stellite 12中加工了一系列微通道,以研究ESJM组合工艺中腐蚀和阳极溶解对材料去除率和表面光洁度的相对影响。结果表明,与单独的腐蚀和腐蚀过程相比,ESJM过程导致的目标质量损失率明显更高。发现随着腐蚀成分随颗粒动能(喷射压力)和颗粒浓度的增加而增加,对质量损失速率的协同作用的大小从正变负。使用ESJM加工的通道的粗糙度介于使用ASJM和ECJM获得的粗糙度之间。随着总质量损失的侵蚀成分增加,粗糙度降低。

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