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Experimental Investigations of Abrasive Mixed Electro Discharge Diamond Grinding of Nimonic 80A

机译:镍80A磨料混合放电金刚石磨削的实验研究。

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摘要

This paper presents a novel hybrid machining process (HMP) called abrasive mixed electro discharge diamond grinding (AMEDDG) in which abrasive powder is mixed in dielectric fluid to perform electro discharge diamond grinding (EDDG) action on a workpiece. In-house-fabricated AMEDDG setup was used to experimentally evaluate the performance of the process during the machining of Nimonic 80A. The effects of wheel speed, powder concentration, current, and pulse-on-time (POT) were investigated on the material removal rate (MRR). The surface morphological properties of the machined workpiece were investigated based on some quality surface indicators. The experimental results show that MRR of the workpiece was influenced by wheel speed, current, and powder concentration, and optimum MRR can be achieved at a wheel speed of 1400RPM, a powder concentration of 4g/L, a current of 10 A, and a POT of 26 mu s.
机译:本文提出了一种称为磨料混合放电金刚石磨削(AMEDDG)的新型混合加工工艺(HMP),其中将磨料粉末混合在介电液中以对工件执行放电金刚石磨削(EDDG)作用。内部制造的AMEDDG设置用于在Nimonic 80A的加工过程中通过实验评估该过程的性能。研究了砂轮速度,粉末浓度,电流和脉冲接通时间(POT)对材料去除率(MRR)的影响。基于一些优质的表面指示剂,研究了加工工件的表面形态特性。实验结果表明,工件的MRR受轮速,电流和粉末浓度的影响,并且在1400RPM的轮速,4g / L的粉末浓度,10 A的电流和a电位计26亩

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