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Modelling of EDM Process Parameters for Machining Stainless Steel using Copper Electrodes

机译:铜电极加工不锈钢的EDM工艺参数建模

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This paper reports on the experimental investigations of surface roughness and material removal rate in electric discharge machining (EDM) of austenitic stainless steel. The importance of this study is that it establishes empirical relations regarding machining parameters and the responses in analyzing the machinability of the austenitic stainless steel. The machining factors used are current intensity (I), pulse on-time (t{sub}i), pause-off time t{sub}0, and gap voltage (v), over the important factors of surface roughness (Ra) and material removal rate (MRR). The investigation and analysis of the influences of machining parameters on the response variables were performed by using the technique of design of experiments (DOE). The developed models show that current intensity and pulse on-time are the most significant machining parameters influencing Ra and MRR while increase in off-time results in decrease MRR response. These models can be used to get the desired responses within the experimental range.
机译:本文报道了奥氏体不锈钢放电加工(EDM)中表面粗糙度和材料去除率的实验研究。这项研究的重要性在于,它建立了有关加工参数和奥氏体不锈钢可加工性分析中响应的经验关系。在表面粗糙度(Ra)的重要因素上,所使用的加工因子为电流强度(I),脉冲接通时间(t {sub} i),暂停时间t {sub} 0和间隙电压(v)。和材料去除率(MRR)。使用实验设计技术(DOE)对加工参数对响应变量的影响进行了调查和分析。开发的模型表明,电流强度和脉冲导通时间是影响Ra和MRR的最重要的加工参数,而关断时间的增加会导致MRR响应的降低。这些模型可用于在实验范围内获得所需的响应。

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