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电火花加工纳米CrC-MoS混合金属基复合材料时的力学性能及表面粗糙度研究。

Investigation mechanical properties and on surface roughness during WEDM machining of nano CrC-MoS hybrid metal matrix composites.

作者信息

Vellaichamy Ramesh, Rajagopal Pugazhenthi, Selvarani A Geetha, Veeranjaneyulu Itha, Raj J Immanuel Durai, Balaji E, Alwetaishi Mamdooh, Baskar S, Sivalingam Krishna Moorthy, Elumalai P V

机构信息

Department of Mechanical Engineering, Vels Institute of Science, Technology & Advanced Studies, Chennai, 600 117, Tamil Nadu, India.

Department of Civil Engineering, Vel Tech Rangarajan Dr. Sagunthala R&D Institute of Science and Technology, Chennai, 600 062, Tamil Nadu, India.

出版信息

Sci Rep. 2025 Aug 2;15(1):28230. doi: 10.1038/s41598-025-08309-3.

Abstract

The study aims to identify a suitable machining parameter during Wire Cut Electrical Discharge Machining (WEDM) of duralumin reinforced with varying amounts of particulates. The nano chromium carbide (CrC) at 3%, 4%, and 5% and Molybdenum diSulphide (MoS) at 2%, 3%, and 4% are chosen as reinforcements. In WEDM, machining parameters such as Pulse ON time, Pulse OFF time, and Wire Feed rate were considered, while surface roughness was measured as the response parameter. The Taguchi method of experimental design was employed to optimize the process parameters. To investigate the impact of process parameters on the surface roughness of Duralumin/CrC/MoS composites, an analysis of variance (ANOVA) table and regression equation were constructed. The findings indicated that the weight% of CrC had the most significant influence on the machining of hybrid metal matrix composites. The optimal combination for achieving better surface roughness was determined to be 3% of CrC, 2% of MoS a Pulse ON time of 100 µs, a Pulse OFF time of 100 µs, and a Wire Feed rate of 65 mm/sec, as determined by experimental values.

摘要

该研究旨在确定在电火花线切割加工(WEDM)不同颗粒含量增强硬铝时的合适加工参数。选择3%、4%和5%的纳米碳化铬(CrC)以及2%、3%和4%的二硫化钼(MoS)作为增强材料。在电火花线切割加工中,考虑了诸如脉冲导通时间、脉冲关断时间和丝进给速度等加工参数,同时将表面粗糙度作为响应参数进行测量。采用田口实验设计方法对工艺参数进行优化。为了研究工艺参数对硬铝/CrC/MoS复合材料表面粗糙度的影响,构建了方差分析(ANOVA)表和回归方程。结果表明,CrC的重量百分比对混合金属基复合材料的加工影响最为显著。根据实验值确定,实现较好表面粗糙度的最佳组合为3%的CrC、2%的MoS、100 µs的脉冲导通时间、100 µs的脉冲关断时间和65毫米/秒的丝进给速度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b04/12318003/7529a1aeb352/41598_2025_8309_Fig1_HTML.jpg

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