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Modeling of Material Removal on Machining of Ti-6Al-4V through EDM using Copper Tungsten Electrode and Positive Polarity

机译:铜钨电极和正极性电火花加工Ti-6Al-4V的材料去除建模

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摘要

This paper deals optimized model to investigate the effects of peak current, pulse on time and pulse off time in EDM performance on material removal rate of titanium alloy utilizing copper tungsten as electrode and positive polarity of the electrode. The experiments are carried out on Ti6Al4V. Experiments were conducted by varying the peak current, pulse on time and pulse off time. A mathematical model is developed to correlate the influences of these variables and material removal rate of workpiece. Design of experiments (DOE) method and response surface methodology (RSM) techniques are implemented. The validity test of the fit and adequacy of the proposed models has been carried out through analysis of variance (ANOVA). The obtained results evidence that as the material removal rate increases as peak current and pulse on time increases. The effect of pulse off time on MRR changes with peak ampere. The optimum machining conditions in favor of material removal rate are verified and compared. The optimum machining conditions in favor of material removal rate are estimated and verified with proposed optimized results. It is observed that the developed model is within the limits of the agreeable error (about 4%) when compared to experimental results. This result leads to desirable material removal rate and economical industrial machining to optimize the input parameters.
机译:本文提出了优化模型,以研究峰值电流,脉冲时间和脉冲关闭时间对电火花加工性能的影响,以铜钨为电极和电极的正极性对钛合金的去除率有影响。实验在Ti6Al4V上进行。通过改变峰值电流,脉冲接通时间和脉冲断开时间来进行实验。建立了数学模型以将这些变量的影响与工件的材料去除率相关联。实现了实验设计(DOE)方法和响应面方法(RSM)技术。通过方差分析(ANOVA)对所提出模型的拟合度和充分性进行了有效性检验。获得的结果证明,随着材料去除率的增加,峰值电流和脉冲导通时间增加。脉冲关闭时间对MRR的影响随峰值安培而变化。验证并比较了有利于材料去除率的最佳加工条件。通过建议的优化结果估算并验证了有利于材料去除率的最佳加工条件。观察到,与实验结果相比,所开发的模型在可接受的误差范围内(约4%)。该结果导致理想的材料去除率和经济的工业加工以优化输入参数。

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