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Modeling and Analysis of MRR, EWR and Surface Roughness in EDM Milling through Response Surface Methodology | Science Publications

机译:响应曲面法在电火花铣削中的MRR,EWR和表面粗糙度建模与分析|科学出版物

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> Problem statement: Electrical Discharge Machining (EDM) has grown over the last few decades from a novelty to a mainstream manufacturing process. Though, EDM process is very demanding but the mechanism of the process is complex and far from completely understood. It is difficult to establish a model that can accurately predict the performance by correlating the process parameters. The optimum processing parameters are essential to increase the production rate and decrease the machining time, since the materials, which are processed by EDM and even the process is very costly. This research establishes empirical relations regarding machining parameters and the responses in analyzing the machinability of the stainless steel. Approach: The machining factors used are voltage, rotational speed of electrode and feed rate over the responses MRR, EWR and Ra. Response surface methodology was used to investigate the relationships and parametric interactions between the three controllable variables on the MRR, EWR and Ra. Central composite experimental design was used to estimate the model coefficients of the three factors. The responses were modeled using a response surface model based on experimental results. The significant coefficients were obtained by performing Analysis Of Variance (ANOVA) at 95% level of significance. Results: The variation in percentage errors for developed models was found within 5%. Conclusion: The developed models show that voltage and rotary motion of electrode are the most significant machining parameters influencing MRR, EWR and Ra. These models can be used to get the desired responses within the experimental range.
机译: > 问题陈述:放电加工(EDM)在过去的几十年中已经从新颖的制造工艺发展成为主流的制造工艺。虽然,EDM过程要求很高,但是过程的机制很复杂,并且远未完全了解。很难建立一个可以通过关联过程参数来准确预测性能的模型。最佳的加工参数对于提高生产率和减少加工时间至关重要,因为用EDM加工甚至加工的材料非常昂贵。这项研究建立了关于加工参数和分析不锈钢切削性能的响应的经验关系。 方法:在响应MRR,EWR和Ra的基础上,使用的加工因子为电压,电极转速和进给速度。响应面方法用于研究MRR,EWR和Ra上三个可控制变量之间的关系和参数交互作用。使用中央复合实验设计来估计这三个因素的模型系数。使用基于实验结果的响应面模型对响应进行建模。通过在显着性水平为95%的情况下执行方差分析(ANOVA)获得有效系数。 结果:发现已开发模型的百分比误差变化在5%以内。 结论:开发的模型表明,电极的电压和旋转运动是影响MRR,EWR和Ra的最重要的加工参数。这些模型可用于在实验范围内获得所需的响应。

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