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MACHINABILITY OF CRYOGENICALLY TREATED WORKPIECE (AISI M2 HSS) IN EDM PROCESS

机译:低温处理的工件(AISI M2 HSS)在EDM过程中的可加工性

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The present experimental investigations are to evaluate the machinability of cryogenically treated AISI M2 HSS with copper as Tool in EDM process. The Experiments are performed to study the effects of input parameters such as Discharge current, Pulse on time, Duty cycle and Gap voltage on MRR, TWR and Radial overcut. Nowadays use of cryogenic treatment in machining is increasing day-by-day because the properties necessary for Tool we get after cryogenic treatment, except impact strength. After Cryogenic treatment there is improvement in the properties of the material such as electrical properties, thermal properties, brittleness and hardness. In this present investigation deep cryogenic treatment was done at -185°C for 36 hours on work piece (AISI M2 HSS) without tempering. Compared to conventional tool and work piece, the cryogenically treated work piece shows average increase 3.56% in MRR, the TWR is about 12.76%. The Radial overcut for cryogenic treated work piece is more than conventional EDM. The SEM images shows that machined surface of conventional EDM surface is better than cryogenically treated work piece.
机译:目前的实验研究是评估低温处理的AISI M2 HSS与铜作为EDM工艺的工具的加工性。进行实验以研究输入参数,例如放电电流,脉冲对MRR,TWR和径向过度的占空比电压等输入参数的影响。如今,在加工中使用低温处理正在增加日期,因为我们在低温处理后获得工具所需的性质,除了冲击力。低温处理后,材料的性质如电性质,热性质,脆性和硬度存在改善。在本出的情况下,在工件(AISI M2 HSS)上,在-185℃下进行深度低温处理,在工件(AISI M2 HSS)上进行36小时。与常规工具和工件相比,低温处理的工件在MRR中显示平均增加3.56%,TWR约为12.76%。低温处理工件的径向过度超过常规EDM。 SEM图像显示常规EDM表面的加工表面优于低温处理的工件。

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