Tool wear mechanisms in axial ultrasonic vibration assisted milling in-situ TiB2/7050Al metal matrix composites

被引:0
作者
Xiao-Fen Liu
Wen-Hu Wang
Rui-Song Jiang
Yi-Feng Xiong
Kun-Yang Lin
机构
[1] Northwestern Polytechnical University,School of Mechanical Engineering
[2] Sichuan University,School of Aeronautics and Astronautics
来源
Advances in Manufacturing | 2020年 / 8卷
关键词
Aluminum matrix composites; Ultrasonic vibration; Milling; Cutting force; Tool wear;
D O I
暂无
中图分类号
学科分类号
摘要
The in-situ TiB2 particle reinforced aluminum matrix composites are materials that are difficult to machine, owing to hard ceramic particles in the matrix. In the milling process, the polycrystalline diamond (PCD) tools are used for machining these materials instead of carbide cutting tools, which significantly increase the machining cost. In this study, ultrasonic vibration method was applied for milling in-situ TiB2/7050Al metal matrix composites using a TiAlN coated carbide end milling tool. To completely understand the tool wear mechanism in ultrasonic-vibration assisted milling (UAM), the relative motion of the cutting tool and interaction of workpiece-tool-chip contact interface was analyzed in detail. Additionally, a comparative experimental study with and without ultrasonic vibration was carried out to investigate the influences of ultrasonic vibration and cutting parameters on the cutting force, tool life and tool wear mechanism. The results show that the motion of the cutting tool relative to the chip changes periodically in the helical direction and the separation of tool and chip occurs in the transverse direction in one vibration period, in ultrasonic vibration assisted cutting. Large instantaneous acceleration can be obtained in axial ultrasonic vibration milling. The cutting force in axial direction is significantly reduced by 42%–57%, 40%–57% and 44%–54%, at different cutting speeds, feed rates and cutting depths, respectively, compared with that in conventional milling. Additionally, the tool life is prolonged approximately 2–5 times when the ultrasonic vibration method is applied. The tool wear pattern micro-cracks are only found in UAM. These might be of great importance for future research in order to understand the cutting mechanisms in UAM of in-situ TiB2/7050Al metal matrix composites.
引用
收藏
页码:252 / 264
页数:12
相关论文
共 50 条
[41]   Tool Wear in High Speed Milling of SiCp/Al2024 Metal Matrix Composites [J].
Wang, Y. J. ;
Zhou, M. ;
Huang, S. N. ;
Zhang, Y. J. .
ADVANCES IN FUNCTIONAL MANUFACTURING TECHNOLOGIES, 2010, 33 :200-+
[42]   Investigation on the Microstructure and Friction Wear Behavior of In-Situ TiC-TiB2/Al-12Si Composites Fabricated by Ultrasonic Assisted Laser Deposition [J].
Zhao Mingjuan ;
Hu Yong ;
Fu Shengqi ;
Zhao Longzhi ;
Jiao Haitao ;
Liu Dejia ;
Tang Yanchuan .
RARE METAL MATERIALS AND ENGINEERING, 2022, 51 (12) :4632-4639
[43]   Study on Tool Wear of High Volume Fraction SiCp/Al Composites with Ultrasonic Vibration High Speed Milling [J].
Xiang, Daohui ;
Liu, Haitao ;
Jiang, Xiao ;
Liang, Song ;
Yang, Guangbin .
ADVANCED RESEARCH ON APPLIED MECHANICS AND MANUFACTURING SYSTEM, 2013, 252 :198-201
[44]   Investigations of flank wear, cutting force, and surface roughness in the machining of Al-6061-TiB2 in situ metal matrix composites produced by flux-assisted synthesis [J].
Anandakrishnan, V. ;
Mahamani, A. .
INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2011, 55 (1-4) :65-73
[45]   Effect of in-situ TiB2 particles on microstructure and mechanical properties of Mg2 Si/Al composites [J].
Du, Rui ;
Yuan, Du ;
Li, Fei ;
Zhang, Dongcheng ;
Wu, Shusen ;
Lu, Shulin .
JOURNAL OF ALLOYS AND COMPOUNDS, 2019, 776 :536-542
[46]   Evaluation of tool wear in high-speed face milling of Al/SiC metal matrix composites [J].
Reza Ghoreishi ;
Amir H. Roohi ;
Amir Dehghan Ghadikolaei .
Journal of the Brazilian Society of Mechanical Sciences and Engineering, 2019, 41
[47]   Evaluation of tool wear in high-speed face milling of Al/SiC metal matrix composites [J].
Ghoreishi, Reza ;
Roohi, Amir H. ;
Ghadikolaei, Amir Dehghan .
JOURNAL OF THE BRAZILIAN SOCIETY OF MECHANICAL SCIENCES AND ENGINEERING, 2019, 41 (03)
[48]   A novel fabrication technology of in situ TiB2/6063Al composites: High energy ball milling and melt in situ reaction [J].
Zhang, S. -L. ;
Yang, J. ;
Zhang, B. -R. ;
Zhao, Y. -T. ;
Chen, G. ;
Shi, X. -X. ;
Liang, Z. -P. .
JOURNAL OF ALLOYS AND COMPOUNDS, 2015, 639 :215-223
[49]   Microstructure, Tensile Properties, and Wear Resistance of In Situ TiB2/6061 Composites Prepared by High Energy Ball Milling and Stir Casting [J].
Zhuang, Weibin ;
Yang, Hairui ;
Yang, Weibo ;
Cui, Jialong ;
Huang, Liguo ;
Wu, Chun ;
Liu, Jingfu ;
Sun, Yuejun ;
Meng, Chao .
JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2021, 30 (10) :7730-7740
[50]   Microstructure, Tensile Properties, and Wear Resistance of In Situ TiB2/6061 Composites Prepared by High Energy Ball Milling and Stir Casting [J].
Weibin Zhuang ;
Hairui Yang ;
Weibo Yang ;
Jialong Cui ;
Liguo Huang ;
Chun Wu ;
Jingfu Liu ;
Yuejun Sun ;
Chao Meng .
Journal of Materials Engineering and Performance, 2021, 30 :7730-7740