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Experimental investigation on electrochemical grinding (ECG) of alumina-aluminum interpenetrating phase composite

机译:铝铝互穿相复合材料的电化学磨削实验研究

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The present paper focuses on the evaluation of material removal rate (MRR), surface finish, and cutting forces during electrochemical grinding of Al{sub}2O{sub}3/Al interpenetrating phase composite. The effect of electrolyte concentration, supply voltage, depth of cut, and electrolyte flow rate on machining performances has been studied. The characteristic features of the electrochemical grinding (ECG) process are explored through Taguchi-design-based experimental studies with various process parametric combinations and finally the process has been optimized. The mechanism of material removal and surface characteristics under different grinding conditions have been studied through SEM micrograph. Besides, another set of experimental investigation has been carried out in order to identify the influence of different type of electrolytes and degree of reduction in grinding force in ECG. Finally, a comparative study of conventional and electrochemical grinding of this special class of material has been carried out.
机译:本文的重点是对Al {sub} 2O {sub} 3 / Al互穿相复合材料的电化学磨削过程中材料去除率(MRR),表面光洁度和切削力的评估。研究了电解液浓度,电源电压,切割深度和电解液流速对加工性能的影响。通过基于Taguchi设计的各种工艺参数组合的实验研究,探索了电化学研磨(ECG)工艺的特征,最后对工艺进行了优化。通过SEM显微照片研究了不同磨削条件下材料去除的机理和表面特性。此外,还进行了另一组实验研究,以确定ECG中不同类型电解质的影响和磨削力降低的程度。最后,对这种特殊材料的常规和电化学研磨进行了比较研究。

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