Advances in Manufacturing ›› 2020, Vol. 8 ›› Issue (2): 252-264.doi: 10.1007/s40436-020-00294-2
• ARTICLES • Previous Articles
Xiao-Fen Liu1, Wen-Hu Wang1, Rui-Song Jiang2, Yi-Feng Xiong1, Kun-Yang Lin1
Received:2019-07-22
Revised:2019-10-02
Online:2020-06-25
Published:2020-06-08
Contact:
Xiao-Fen Liu
E-mail:xiaofl1987@mail.nwpu.edu.cn
Supported by:Xiao-Fen Liu, Wen-Hu Wang, Rui-Song Jiang, Yi-Feng Xiong, Kun-Yang Lin. Tool wear mechanisms in axial ultrasonic vibration assisted milling in-situ TiB2/7050Al metal matrix composites[J]. Advances in Manufacturing, 2020, 8(2): 252-264.
| 1. Przestacki D (2014) Conventional and laser assisted machining of composite A359/20SiCp. Proc CIRP. https://doi.org/10.1016/j.procir.2014.03.029 2. Teng XY, Huo DH, Shyha I et al (2018) An experimental study on tool wear behaviour in micro milling of nano Mg/Ti metal matrix composites. Int J Adv Manuf Technol 96:2127-2140 3. Geng JW, Liu G, Wang FF et al (2017) Microstructural correlated damage mechanisms of the high-cycle fatigued in-situ TiB2/AlCu-Mg composite. Mater Des 135:423-438 4. Xiang JF, Pang SQ, Xie LJ et al (2018) Investigation of cutting forces, surface integrity, and tool wear when high-speed milling of high-volume fraction SiCp/Al6063 composites in PCD tooling. Int J Adv Manuf Technol 98:1237-1251 5. Brehl DE, Dow TA (2008) Review of vibration-assisted machining. Precis Eng 32:153-172 6. Lotfi M, Amini S, Aghaei M (2018) 3D FEM simulation of tool wear in ultrasonic assisted rotary turning. Ultrasonics 88:106-114 7. Peng Y, Liang Z, Wu Y et al (2012) Effect of vibration on surface and tool wear in ultrasonic vibration-assisted scratching of brittle materials. Int J Adv Manuf Technol 59:67-72 8. Soleimanimehr H, Nategh MJ, Najafabadi AF et al (2018) The analysis of the Timoshenko transverse vibrations of workpiece in the ultrasonic vibration-assisted turning process and investigation of the machining error caused by this vibration. Precis Eng 54:99-106 9. Nath C, Rahman M, Andrew SSK (2007) A study on ultrasonic vibration cutting of low alloy steel. J Mater Process Technol 192-193:159-165 10. Nath C, Rahman M (2008) Effect of machining parameters in ultrasonic vibration cutting. Int J Mach Tool Manuf 48:965-974 11. Nath C, Rahman M, Neo KS (2009) Machinability study of tungsten carbide using PCD tools under ultrasonic elliptical vibration cutting. Int J Mach Tool Manuf 49:1089-1095 12. Dong GJ, Zhang HJ, Zhou M et al (2013) Experimental investigation on ultrasonic vibration-assisted turning of SiCp/Al composites. Mater Manuf Process 28:999-1002 13. Liu CS, Zhao B, Gao GF et al (2002) Research on the characteristics of cutting force in the vibration cutting of a particlereinforced metal matrix composites SiCp/Al. J Mater Process Technol 129:196-199 14. Zheng W, Wang YJ, Zhou M et al (2018) Material deformation and removal mechanism of SiC p/Al composites in ultrasonic vibration assisted scratch test. Ceram Int 44:15133-15144 15. Zha HT, Feng PF, Zhang JF et al (2018) Material removal mechanism in rotary ultrasonic machining of high-volume fraction SiC p/Al composites. Int J Adv Manuf Technol 97:2099-2109 16. Zhou M, Wang M, Dong GJ (2016) Experimental investigation on rotary ultrasonic face grinding of SiCp/Al composites. Mater Manuf Process 31:673-678 17. Xiong YF, Wang WH, Jiang RS et al (2016) Tool wear mechanisms for milling in situ TiB2 particle-reinforced Al matrix composites. Int J Adv Manuf Technol 86:3517-3526 18. Xiong YF, Wang WH, Jiang RS et al (2018) Machinability of in situ TiB2 particle reinforced 7050Al matrix composites with TiAlN coating tool. Int J Adv Manuf Technol 97:3813-3825 19. Lin KY, Wang WH, Jiang RS et al (2019) Effect of tool nose radius and tool wear on residual stresses distribution while turning in situ TiB2/7050 Al metal matrix composites. Int J Adv Manuf Technol 100:143-151 20. Jiang RS, Wang WH, Song GD et al (2016) Experimental investigation on machinability of in situ formed TiB2 particles reinforced Al MMCs. J Manuf Process 23:249-257 21. Kim JD, Choi IH (1998) Characteristics of chip generation by ultrasonic vibration cutting with extremely low cutting velocity. Int J Adv Manuf Technol 14:2-6 22. Verma GC, Pandey PM, Dixit US (2018) Modeling of static machining force in axial ultrasonic-vibration assisted milling considering acoustic softening. Int J Mech Sci 136:1-16 23. Shen XH, Xu GF (2018) Study of milling force variation in ultrasonic vibration-assisted end milling. Mater Manuf Process 33:644-650 24. Chen G, Ren CZ, Zou YH et al (2019) Mechanism for material removal in ultrasonic vibration helical milling of Ti-6Al-4V alloy. Int J Mach Tool Manuf 138:1-13 25. Jin M, Murakawa M (2001) Development of a practical ultrasonic vibration cutting tool system. J Mater Process Technol 113:342-347 26. Mitrofanov AV, Ahmed N, Babitsky VI et al (2005) Effect of lubrication and cutting parameters on ultrasonically assisted turning of Inconel 718. J Mater Process Technol 162-163:649-654 27. Zhu KP, Zhang Y (2019) A generic tool wear model and its application to force modeling and wear monitoring in high speed milling. Mech Syst Signal Process 115:147-161 |
| [1] | Peng Wang, Chang-Yong Yang, Ying-Ying Yuan, Yu-Can Fu, Wen-Feng Ding, Jiu-Hua Xu, Yong Chen. Study on the mechanism of burr formation in ultrasonic vibration-assisted honing 9Cr18MoV valve sleeve [J]. Advances in Manufacturing, 2025, 13(3): 606-619. |
| [2] | Chao-Jun Zhang, Song-Qing Li, Pei-Xuan Zhong, Fei-Fan Zhang, Wen-Jun Deng. Cutting performance and effectiveness evaluation on organic monolayer embrittlement in ductile metal precision machining [J]. Advances in Manufacturing, 2025, 13(2): 395-412. |
| [3] | Zhen-Jing Duan, Shuai-Shuai Wang, Shu-Yan Shi, Ji-Yu Liu, Yu-Heng Li, Zi-Heng Wang, Chang-He Li, Yu-Yang Zhou, Jin-Long Song, Xin Liu. Surface quality evaluation of cold plasma and NMQL multi-field coupling eco-friendly micro-milling 7075-T6 aluminum alloy [J]. Advances in Manufacturing, 2025, 13(1): 69-87. |
| [4] | Xiao-Fei Lei, Wen-Feng Ding, Biao Zhao, Dao-Hui Xiang, Zi-Ang Liu, Chuan Qian, Qi Liu, Dong-Dong Xu, Yan-Jun Zhao, Jian-Hui Zhu. Surface roughness model of ultrasonic vibration-assisted grinding GCr15SiMn bearing steel and surface topography evaluation [J]. Advances in Manufacturing, 2025, 13(1): 88-104. |
| [5] | Xin Wang, Qing-Liao He, Biao Zhao, Wen-Feng Ding, Qi Liu, Dong-Dong Xu. Effects of tool coating and tool wear on the surface and chip morphology in side milling of Ti2AlNb intermetallic alloys [J]. Advances in Manufacturing, 2025, 13(1): 155-166. |
| [6] | Jin Zhang, Li Ling, Qian-Yue Wang, Xue-Feng Huang, Xin-Zhen Kang, Gui-Bao Tao, Hua-Jun Cao. Surface quality investigation in high-speed dry milling of Ti-6Al-4V by using 2D ultrasonic-vibration-assisted milling platform [J]. Advances in Manufacturing, 2024, 12(2): 349-364. |
| [7] | Long-Hua Xu, Chuan-Zhen Huang, Zhen Wang, Han-Lian Liu, Shui-Quan Huang, Jun Wang. Novel intelligent reasoning system for tool wear prediction and parameter optimization in intelligent milling [J]. Advances in Manufacturing, 2024, 12(1): 76-93. |
| [8] | Guo-Liang Liu, Jin-Tao Zheng, Chuan-Zhen Huang, Shu-Feng Sun, Xin-Fu Liu, Long-Jie Dai, De-Xiang Wang, Xiang-Yu Wang. Coupling effect of micro-textured tools and cooling conditions on the turning performance of aluminum alloy 6061 [J]. Advances in Manufacturing, 2023, 11(4): 663-681. |
| [9] | Shailendra Chauhan, Rajeev Trehan, Ravi Pratap Singh. State of the art in finite element approaches for milling process: a review [J]. Advances in Manufacturing, 2023, 11(4): 708-751. |
| [10] | Zheng Zhou, Chang-Feng Yao, Liang Tan, Ya Zhang, Yi Fan. Experimental study on surface integrity refactoring changes of Ti-17 under milling-ultrasonic rolling composite process [J]. Advances in Manufacturing, 2023, 11(3): 492-508. |
| [11] | Lorcan O'Toole, Feng-Zhou Fang. Optimal tool design in micro-milling of difficult-to-machine materials [J]. Advances in Manufacturing, 2023, 11(2): 222-247. |
| [12] | Vitor F. C. Sousa, Francisco J. G. Silva, Ricardo Alexandre, José S. Fecheira, Gustavo Pinto, Andresa Baptista. Experimental study on the wear evolution of different PVD coated tools under milling operations of LDX2101 duplex stainless steel [J]. Advances in Manufacturing, 2023, 11(1): 158-179. |
| [13] | Bao-Yu Zhang, Yu-Ning Zeng, Xue-Qin Pang, Song-Qing Li, Xiao Liu, Wen-Jun Deng. Feasibility analysis and process characteristics of selective laser ablation assisted milling Inconel 718 [J]. Advances in Manufacturing, 2022, 10(4): 495-519. |
| [14] | Jiang Guo, Xing-Yu Wang, Yong Zhao, Chen-Yi Hou, Xu Zhu, Yin-Di Cai, Zhu-Ji Jin, Ren-Ke Kang. On-machine measurement of tool nose radius and wear during precision/ultra-precision machining [J]. Advances in Manufacturing, 2022, 10(3): 368-381. |
| [15] | Long-Xu Yao, Zhan-Qiang Liu, Qing-Hua Song, Bing Wang, Yu-Kui Cai. Effects of process parameters on periodic impact force exerting on cutting tool in ultrasonic vibration-assisted oblique turning [J]. Advances in Manufacturing, 2022, 10(3): 411-427. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
Tel: 86-21-66135510
Fax: 86-21-66132736
E-mail: aim@oa.shu.edu.cn