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Performance evaluation of electrical discharge machining on stainless steel 316L using copper impregnated graphite

机译:铜浸石墨对316L不锈钢进行放电加工的性能评估

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摘要

The electrical discharge machining (EDM) is considered as non-conventional machining due to its different method of machining compared to conventional machining. This study presents the results of experimental studies carried out to conduct a comprehensive investigation on the influence of EDM input parameters on the characteristics of EDM process. The machining parameters include peak current, servo voltage, pulse ON time and pulse OFF time. The study was conducted using 2 levels of full factorial method in Design of Experiments (DOE). The design expert version 9software was employed to perform all the data analysis for full factorial and Central Composite Design (CCD) experiments. Basically, this study evaluates the EDM performance on Stainless Steel 316L using Sodick EDM linear motor series AM3Lwhich employed copper impregnated graphite of diameter 7.0 mm as the tool electrode.The machining responses are material removal rate (MRR), electrode wear rate (EWR),surface roughness (SR) and dimensional accuracy. An optimum setting was determined based on DOE and analysis of variance analysis (ANOVA). Result’s showed that peak current was the most significant factors to all machining responses. The servo voltage does not have significant effect to the machining responses in the Response Surface Methodology (RSM). Higher current produced higher MRR, EWR, SR and dimensional accuracy. Maximum MRR was obtained at peak current ranging from 27amp to 38amp,pulse on time range from 120μs to 145μs and 60μs of pulse off time. Maximum EWR was obtained at peak current ranging from 27amp to 37amp, pulse on time range from140μs to 160μs and 60μs of pulse off time. Lower dimensional accuracy and SR obtained at 5amp of pulse on time. Higher pulse off time produced lower MRR and EWR.
机译:由于放电加工(EDM)与常规加工相比,其加工方法不同,因此被视为非常规加工。这项研究提出了进行有关EDM输入参数对EDM工艺特性的影响进行全面调查的实验研究的结果。加工参数包括峰值电流,伺服电压,脉冲打开时间和脉冲关闭时间。该研究是在实验设计(DOE)中使用2个级别的全因子方法进行的。设计专家版本9software被用于执行全因子和中央复合设计(CCD)实验的所有数据分析。基本上,本研究使用Sodick EDM线性马达AM3L系列(其直径为7.0 mm的铜浸渍石墨作为工具电极)评估不锈钢316L的电火花加工性能,加工响应为材料去除率(MRR),电极磨损率(EWR),表面粗糙度(SR)和尺寸精度。基于DOE和方差分析(ANOVA)确定最佳设置。结果表明,峰值电流是影响所有加工响应的最重要因素。响应表面方法(RSM)中,伺服电压对加工响应没有显着影响。较高的电流产生较高的MRR,EWR,SR和尺寸精度。在峰值电流为27amp至38amp,脉冲接通时间为120μs至145μs,脉冲断开时间为60μs的情况下获得了最大MRR。在峰值电流为27amp至37amp,脉冲接通时间范围为140μs至160μs以及脉冲断开时间为60μs时获得最大EWR。较低的尺寸精度和在5amp的脉冲导通时间下获得的SR。较高的脉冲关闭时间产生较低的MRR和EWR。

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    Safiei Wahaizad;

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  • 年度 2014
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