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Experimental investigation and optimization of EDM process parameters for machining of aluminum boron carbide (Al-B4C) composite

机译:碳化硼铝(Al-B4C)复合材料加工电火花加工工艺参数的实验研究与优化

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This study investigates the effect of electric discharge machining (EDM) process parameters [current, pulse-on time (T-on), pulse-off time (T-off) and electrode material] on material removal rate (MRR), electrode wear rate (EWR) and surface roughness (SR) during machining of aluminum boron carbide (Al-B4C) composite. This article also summarizes a brief literature review related to aluminum metal matrix composites (Al-MMCs) based on different process and response parameters, work and tool material along with their sizes, dielectric fluid and different optimization techniques used. The MMC used in the present work is stir casted using 5% (wt) B4C particles of 50micron size in Al 6061 metal matrix. Taguchi technique is used for the design of experiments (L-9-orthogonal array), while the experimental results are analyzed using analysis of variance (ANOVA). Response table for average value of MRR, EWR and SR shows that current is the most significant factor for MRR and SR, while electrode material is most important for EWR. ANOVA also confirms similar results. It is also observed that the optimum level of process parameters for maximum MRR is A(3)B(1)C(3)D(3), for minimum EWR is A(1)B(2)C(3)D(1), and for SR is A(1)B(3)C(3)D(3).
机译:这项研究调查了放电加工(EDM)工艺参数[电流,脉冲接通时间(T-on),脉冲断开时间(T-off)和电极材料]对材料去除率(MRR)和电极磨损的影响碳化硼铝(Al-B4C)复合材料加工过程中的加工速率(EWR)和表面粗糙度(SR)。本文还根据不同的工艺和响应参数,功和工具材料及其尺寸,介电液和使用的不同优化技术,对与铝金属基复合材料(Al-MMC)相关的文献进行了简要综述。在Al 6061金属基体中,使用5%(wt)的50微米大小的B4C颗粒对本工作中使用的MMC进行浇铸。 Taguchi技术用于实验设计(L-9正交阵列),而实验结果则使用方差分析(ANOVA)进行分析。 MRR,EWR和SR平均值的响应表显示,电流是MRR和SR的最重要因素,而电极材料对于EWR最为重要。方差分析也证实了类似的结果。还可以观察到,最大MRR的最佳工艺参数水平为A(3)B(1)C(3)D(3),最小EWR为A(1)B(2)C(3)D( 1),而对于SR,则为A(1)B(3)C(3)D(3)。

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