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Investigation of the WEDM of Al/B 4C/Gr reinforced hybrid composites using the Taguchi method and response surface methodology

机译:Taguchi法和响应面法研究Al / B 4 C / Gr增强杂化复合材料的WEDM

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In this study, the effects of machining parameters on the material removal rate (MRR) and surface roughness (Ra) were investigated during the cutting of Al/B_(4)C/Gr hybrid composites by wire electrical discharge machining (WEDM). Wire speed (W_(S)), pulse-on time (T_(on)) and pulse-off time (T_(off)) were chosen as the control factors. The L_(27)(3~(3)) orthogonal array in the Taguchi method was used in the experimental design and for the determination of optimum control factors. Response surface methodology was also used to determine interactions among the control factors. Variance analysis (ANOVA) was applied in the determination of the effects of control factors on the MRR and Ra. According to the ANOVA results, the most effective parameters on MRR and Ra were wire speed with a 85.94% contribution ratio, and pulse-on-time with a 47.7% contribution ratio. The optimum levels of the control factors for MRR and Ra were determined as A_(3)B_(3)C_(3)and A_(1)B_(1)C_(2). In addition, second-order predictive models were developed for MRR and Ra; correlation coefficients (R~(2)) were calculated as 0.992 and 0.63.
机译:在这项研究中,研究了电火花加工(WEDM)切割Al / B_(4)C / Gr杂化复合材料过程中加工参数对材料去除率(MRR)和表面粗糙度(Ra)的影响。选择线速(W_(S)),脉冲接通时间(T_(on))和脉冲断开时间(T_(off))作为控制因素。 Taguchi方法中的L_(27)(3〜(3))正交阵列用于实验设计和确定最佳控制因子。响应面方法还用于确定控制因素之间的相互作用。方差分析(ANOVA)用于确定控制因素对MRR和Ra的影响。根据ANOVA结果,对MRR和Ra而言,最有效的参数是线速度,贡献率为85.94%,脉冲导通时间,贡献率为47.7%。确定MRR和Ra的最佳控制因子水平为A_(3)B_(3)C_(3)和A_(1)B_(1)C_(2)。此外,还为MRR和Ra开发了二阶预测模型。相关系数(R〜(2))经计算为0.992和0.63。

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