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用于改善粉末冶金法制备的铜/钼-碳化硅复合材料加工工艺的参数优化

Parametric Optimization for Improving the Machining Process of Cu/Mo-SiC Composites Produced by Powder Metallurgy.

作者信息

Şap Emine, Usca Üsame Ali, Gupta Munish Kumar, Kuntoğlu Mustafa, Sarıkaya Murat, Pimenov Danil Yurievich, Mia Mozammel

机构信息

Department of Mechatronics, Vocational School of Technical Sciences, Bingöl University, 12000 Bingöl, Turkey.

Department of Mechanical Engineering, Faculty of Engineering and Architecture, Bingöl University, 12000 Bingöl, Turkey.

出版信息

Materials (Basel). 2021 Apr 12;14(8):1921. doi: 10.3390/ma14081921.

Abstract

The features of composite materials such as production flexibility, lightness, and excellent strength put them in the class of materials that attract attention in various critical areas, i.e., aerospace, defense, automotive, and shipbuilding. However, the machining of composite materials displays challenges due to the difficulty in obtaining structural integrity. In this study, Cu/Mo-SiC composite materials were produced by powder metallurgy with varied reinforcement ratios and then their machinability was investigated. In machinability experiments, the process parameters were selected as cutting speed (v), feed rate (f), depth of cut (a), and reinforcement ratio (R). Two levels of these parameters were taken as per the Taguchi's L8 orthogonal array, and response surface methodology (RSM) is employed for parametric optimization. As a result, the outcomes demonstrated that R = 5%, f = 0.25 mm/rev, a = 0.25 mm, v = 200 m/min for surface roughness, R = 0%, f = 0.25 mm/rev and a = 0.25 mm and v = 200 m/min for flank wear and R = 0%, f = 0.25 mm/rev, a = 0.25 mm, v = 150 m/min for cutting temperature for cutting temperature and flank wear should be selected for the desired results. In addition, ANOVA results indicate that reinforcement ratio is the dominant factor on all response parameters. Microscope images showed that the prominent failure modes on the cutting tool are flank wear, built up edge, and crater wear depending on reinforcement ratio.

摘要

复合材料具有生产灵活性、轻质和优异强度等特性,使其成为在航空航天、国防、汽车和造船等各个关键领域备受关注的材料类别。然而,由于难以获得结构完整性,复合材料的加工面临挑战。在本研究中,通过粉末冶金制备了不同增强比例的铜/钼-碳化硅复合材料,然后对其可加工性进行了研究。在可加工性实验中,将工艺参数选定为切削速度(v)、进给率(f)、切削深度(a)和增强比例(R)。根据田口的L8正交阵列选取这些参数的两个水平,并采用响应面方法(RSM)进行参数优化。结果表明,对于表面粗糙度,R = 5%,f = 0.25 mm/转,a = 0.25 mm,v = 200 m/min;对于后刀面磨损,R = 0%,f = 0.25 mm/转,a = 0.25 mm,v = 200 m/min;对于切削温度,R = 0%,f = 0.25 mm/转,a = 0.25 mm,v = 150 m/min,为获得理想结果应选择这样的切削温度和后刀面磨损参数。此外,方差分析结果表明增强比例是所有响应参数的主导因素。显微镜图像显示,切削刀具上的主要失效模式是取决于增强比例的后刀面磨损、积屑瘤和月牙洼磨损。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b47c/8069688/b0a7d39c61a9/materials-14-01921-g001.jpg

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