A comprehensive investigation on machining of composites by EDM for microfeatures and surface integrity

Suresh Gudipudi, Selvaraj Nagamuthu, Kanmani Subbu Subbian, Surya Prakasa Rao Chilakalapalli
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引用次数: 2

Abstract

In electro-discharge machining (EDM), the material removal takes place by precisely controlled sparks that occur between tool and workpiece separated with a spark gap in the presence of a dielectric. Generally, the non-contacting type and less material removal rates are attributed to attain a good surface finish and close dimensional tolerances during an EDM of monolithic metals and alloys. But the dimensional accuracy and surface integrity parameters would considerably affect during EDM of composites due to the existence of more than one material phase constituents. Therefore, the present work aims to study and optimize the performance characteristics under various EDM conditions employed in making rectangular channels on AA6061-B4C composite material. Initially, AA6061-4wt.%B4C composites were fabricated by ultrasonically assisted stir-casting, and the improved properties were obtained from various mechanical characterizations. The EDM experiments were conducted according to the full factorial experimental design. The three levels of input conditions such as discharge Current (I), discharge duration (T On), and discharge idle time (T Off) were considered. The considered output responses are material removal rate (MRR),taper (θ) of the machined channel, tool wear rate (TWR), average surface roughness (R) of the machined surface, and average recast layer thickness (ARLT) of the machined zone. These responses are co-related with multi-objective types in the sense that the MRR has to be maximized with all other responses minimized. Hence, principal component analysis (PCA) coupled with grey relation analysis (GRA) was used for optimization in which the results were normalized, and all the responses were converted into a single response named weighted grey relation grade (WGRG) for each trial. The experimental trial, which had the highest WGRG, was considered as a local optimum. The global optimum parameters were obtained by performing the Taguchi method (TM) (higher-the-better) for the maximization of WGRG. The analysis of variance (ANOVA) was performed to know the contribution of each EDM parameter toward the WGRG. The optimum levels of Current, T On, and T Off were identified as 8 A, 25 µs, and 36 µs, respectively. Results showed that all three input parameters significantly affected the WGRG, and a higher contribution of Current (52.11%) followed by the T On (26.72%) was observed. The interaction between the Current and T Off was found to be greater than other interactions. Taper values were observed to be reduced at the combination of 8 A discharge Current and 25 µs T On. None of the input parameters significantly affected the Ra, except for Current, which showed a slight effect. ARLT values showed an increasing trend of T On from 25 µs to 45 µs but decreased slightly at 65 µs for all Current levels. The moderate Current level 6 A was observed to be favorable in reducing ARLT when compared to low (4 A) and high (8 A) for all Ton values.
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电火花加工复合材料的微观特征和表面完整性的综合研究
在电火花加工(EDM)中,材料的去除是通过精确控制的火花来实现的,这些火花发生在工具和工件之间,在存在电介质的情况下被火花间隙隔开。一般来说,非接触式和较少的材料去除率可在整体金属和合金的电火花加工中获得良好的表面光洁度和紧密的尺寸公差。但由于多种材料相成分的存在,会对复合材料电火花加工过程中的尺寸精度和表面完整性参数产生较大影响。因此,本工作旨在研究和优化AA6061-B4C复合材料在不同电火花加工条件下制作矩形通道的性能特征。最初,AA6061-4wt。采用超声辅助搅拌铸造法制备了%B4C复合材料,并通过各种力学表征获得了较好的性能。电火花加工试验按全因子试验设计进行。考虑了放电电流(I)、放电持续时间(T On)和放电空闲时间(T Off)三个层次的输入条件。考虑的输出响应是材料去除率(MRR)、加工通道的锥度(θ)、刀具磨损率(TWR)、加工表面的平均表面粗糙度(R)和加工区域的平均重铸层厚度(ARLT)。这些反应与多目标类型相关,因为MRR必须最大化,而所有其他反应必须最小化。因此,采用主成分分析(PCA)结合灰色关联分析(GRA)进行优化,将结果归一化,并将每个试验的所有响应转换为单个响应,命名为加权灰色关联等级(WGRG)。以WGRG最高的试验为局部最优。采用Taguchi法(越高越好)获得WGRG的全局最优参数。进行方差分析(ANOVA)以了解每个EDM参数对WGRG的贡献。电流、T On和T Off的最佳电平分别为8 A、25µs和36µs。结果表明,3个输入参数均对WGRG有显著影响,其中电流(52.11%)的贡献最大,其次是电流(26.72%)。发现电流和T Off之间的相互作用比其他相互作用更大。在8 A放电电流和25µs T On的组合下,观察到锥度值减小。除电流有轻微影响外,其他输入参数对Ra均无显著影响。从25µs到45µs, ARLT值呈增加趋势,但在65µs时,ARLT值略有下降。与所有Ton值的低(4 A)和高(8 A)电流相比,观察到中等电流水平6 A有利于降低ARLT。
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