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Investigation on material removal rate and surface roughness in electrical discharge turning process of Al 7075-based metal matrix composites

机译:Al 7075基金属基复合材料放电车削过程中材料去除率和表面粗糙度的研究

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摘要

An attempt is made for the first time to machine metal matrix composites (MMCs) consisting of aluminium alloy 7075 (Al7075) reinforced with silicon carbide (SiC) in the form of particles with different particle sizes such as 0.149 mm and 0.018 mm using wire electrical discharge turning (WEDT) process. The experiments were conducted based on response surface methodology (RSM) using Box-Behnken method. The input machining parameters considered are pulse-on time (T_(ON)), pulse-off time (T_(OFF)), gap voltage (V) and spindle speed (SS). The significant WEDT parameters and their levels were identified for higher material removal rate (MRR) and lower surface roughness (R_a) by using response surfaces. From this study, it is found that similar combinations of WEDT process parameters resulted in higher MRR in both the materials studied in this work. However, in the case of R_a, it is found that the different combinations of process parameters and their levels are significant. The findings from this study are useful to manufacturing engineers in order to increase productivity during cylindrical turning of Al/SiC_p-based MMC in WEDT process.
机译:首次尝试通过电线电气加工金属基复合材料(MMC),该金属基复合材料(MMC)由用碳化硅(SiC)增强的铝合金7075(Al7075)制成,其颗粒形式具有不同的粒径,例如0.149毫米和0.018毫米放电车削(WEDT)过程。使用Box-Behnken方法基于响应面方法(RSM)进行了实验。输入的加工参数为脉冲接通时间(T_(ON)),脉冲断开时间(T_(OFF)),间隙电压(V)和主轴转速(SS)。通过使用响应表面,可以识别出重要的WEDT参数及其水平,以实现更高的材料去除率(MRR)和更低的表面粗糙度(R_a)。从这项研究中发现,在这项工作中研究的两种材料中,WEDT工艺参数的相似组合均导致较高的MRR。然而,在R_a的情况下,发现工艺参数及其水平的不同组合是重要的。这项研究的发现对制造工程师很有用,以便在WEDT工艺中对Al / SiC_p基MMC进行圆柱形车削时提高生产率。

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