Advances in Manufacturing ›› 2015, Vol. 3 ›› Issue (4): 263-268.doi: 10.1007/s40436-015-0123-4
• Articles • Previous Articles Next Articles
Ali Mamedov, Ismail Lazoglu
Received:2015-04-27
Revised:2015-09-29
Online:2015-12-25
Published:2015-10-20
Contact:
Ismail Lazoglu
E-mail:ilazoglu@ku.edu.tr
Supported by:The authors would like to acknowledge the Scientific and Technological Research Council of Turkey Project Support (TUBITAK Grant No. MAG110M697) and TUBITAK International Research Fellowship for Prof. Ismail Lazoglu.
Ali Mamedov, Ismail Lazoglu. Micro ball-end milling of freeform titanium parts[J]. Advances in Manufacturing, 2015, 3(4): 263-268.
| 1. Vogler M, Kapoor S, DeVor R (2004) On the modeling and analysis of machining performance in micro-end milling—Part II: cutting force prediction. Trans ASME Journal of Manufacturing Science and Engineering 126:695-7052. Waldorf DJ, DeVor R, Kapoor S (1998) Slip-line field for ploughing during orthogonal cutting. Trans ASME Journal of Manufacturing Science and Engineering 120:693-6983. Jun MBG, Liu X, DeVor RE et al (2006) Investigation of the dynamics of microend milling—Part I: model development. Journal of Manufacturing Science and Engineering 128:893-9004. Fang N (2003) Slip-line modeling of machining with a roundededge tool—Part I: new model and theory. Journal of the Mechanics and Physics of Solids 51:715-7425. Fang N, Jawahir IS (2002) An analytical predictive model and experimental validation for machining with grooved tools incorporating the effects of strains, strain-rates and temperatures. CIRP Annals Manufacturing Technology 51:83-866. Jin X, Altintas Y (2011) Slip-line field model of micro-cutting process with round tool edge effect. Journal of Materials Processing Technology 211:339-3557. Park SS, Malekian M (2009) Mechanistic modeling and accurate measurement of micro end milling forces. CIRP Annals Manufacturing Technology 58:49-528. Erdim H, Lazoglu I, Ozturk B (2006) Feedrate scheduling strategies for free-form surfaces. International Journal of Machine Tools and Manufacture 46:747-7579. Ko JH, Cho DW (2004) Feed rate scheduling model considering transverse rupture strength of a tool for 3D ball-end milling. International Journal of Machine Tools and Manufacture 44:1047-105910. Layegh KSE, Erdim H, Lazoglu I (2012) Offline force control and feedrate scheduling for complex free form surfaces in 5-axis milling. Procedia CIRP 1:96-10111. Yigit I, Layegh KSE, Lazoglu I (2015) A solid modeler based engagement model for 5-axis ball end milling. The 15th CIRP conference on modeling of machining operations, Karlsruhe, Germany12. Li C, Lai X, Li H et al (2007) Modeling of three-dimensional cutting forces in micro-end-milling. Journal of Micromechanics and Microengineering 17:671-67813. Kline W, DeVor RE (1983) The effect of runout on cutting geometry and forces in end milling. International Journal of Machine Tool Design and Research 23:123-14014. Mamedov A, Layegh KSE, Lazoglu I (2015) Instantaneous tool deflection model for micro milling. The International Journal of Advanced Manufacturing Technology. doi:10.1007/s00170-015- 6877-915. Altintas Y, Kersting P, Biermann D et al (2014) Virtual process systems for part machining operations. CIRP Annals Manufacturing Technology 63:585-60516. Budak E, Lazoglu I, Guzel BU (2004) Improving cycle time in sculptured surface machining through force modeling. CIRP Annals Manufacturing Technology 53:103-10617. Erkorkmaz K, Layegh SE, Lazoglu I et al (2013) Feedrate optimization for freeform milling considering constraints from the feed drive system and process mechanics. CIRP Annals Manufacturing Technology 62:395-398 |
| [1] | Gaetano Pollara, Amanda Heimbrook, Livan Fratini, Ken Gall. Effect of build and unit cell orientation on the tensile, compressive, and torsional behavior of Ti-6Al-4V gyroid sheet-based structures [J]. Advances in Manufacturing, 2026, 14(2): 259-273. |
| [2] | Heng Luo, Zhao-Cheng Wei, Zhi-Gang Dong, Ren-Ke Kang, Yi-Dan Wang. High efficiency roughing process for the ultrasonic cutting of Nomex honeycomb cores [J]. Advances in Manufacturing, 2026, 14(2): 377-396. |
| [3] | Xin Cui, Chuan-Zhan Zhang, Yan-Bin Zhang, Ze-Chen Zhang, Xiao-Liang Liang, Ming-Zheng Liu, Min Yang, Teng Gao, Xiao-Ming Wang, Yusuf Suleiman Dambatta, Chang-He Li. Magnetic field distribution mechanism and grindability in magnetic traction nano-lubricant grinding of Ti-6Al-4V [J]. Advances in Manufacturing, 2026, 14(1): 144-171. |
| [4] | Wen-Hao Xu, Chang-He Li, Pei-Ming Xu, Wei Wang, Yan-Bin Zhang, Min Yang, Xin Cui, Ben-Kai Li, Ming-Zheng Liu, Teng Gao, Yusuf Suleiman Dambatta, Ai-Guo Qin. Grinding mechanics of ceramics: from mechanism to modeling [J]. Advances in Manufacturing, 2026, 14(1): 4-42. |
| [5] | Ji-Hong Dong, Yi-Ming Huang, Jia-Lei Zhu, Wei Guan, Xu-Kai Ren, Huan-Wei Yu, Lei Cui. Quality assessment of friction-stir-welded aluminum alloy welds via three-dimensional force signals [J]. Advances in Manufacturing, 2024, 12(1): 61-75. |
| [6] | 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. |
| [7] | Qi-Dong Sun, Jie Sun, Kai Guo, Saad Waqar, Jiang-Wei Liu, Lei-Shuo Wang. Influences of processing parameters and heat treatment on microstructure and mechanical behavior of Ti-6Al-4V fabricated using selective laser melting [J]. Advances in Manufacturing, 2022, 10(4): 520-540. |
| [8] | Xiao-Xiang Zhu, Wen-Hu Wang, Rui-Song Jiang, Yi-Feng Xiong, Xiao-Fen Liu. Thrust force model for ultrasonic-assisted micro drilling of DD6 superalloy [J]. Advances in Manufacturing, 2022, 10(2): 313-325. |
| [9] | Xiao-Guang Guo, Ming Li, Zhi-Gang Dong, Rui-Feng Zhai, Zhu-Ji Jin, Ren-Ke Kang. Smooth particle hydrodynamics modeling of cutting force in milling process of TC4 [J]. Advances in Manufacturing, 2019, 7(4): 364-373. |
| [10] | Ning Li, Yong-Jie Chen, Dong-Dong Kong. Multi-response optimization of Ti-6Al-4V turning operations using Taguchi-based grey relational analysis coupled with kernel principal component analysis [J]. Advances in Manufacturing, 2019, 7(2): 142-154. |
| [11] | M. S. Uddin, Binh Pham, Ahmed Sarhan, Animesh Basak, Alokesh Pramanik. Comparative study between wear of uncoated and TiAlN-coated carbide tools in milling of Ti6Al4V [J]. Advances in Manufacturing, 2017, 5(1): 83-91. |
| [12] | Achilles Vairis, George Papazafeiropoulos, Andreas-Marios Tsainis. A comparison between friction stir welding, linear friction welding and rotary friction welding [J]. Advances in Manufacturing, 2016, 4(4): 296-304. |
| [13] | Sandip S. Anasane, B. Bhattacharyya. Experimental investigation into fabrication of microfeatures on titanium by electrochemical micromachining [J]. Advances in Manufacturing, 2016, 4(2): 167-177. |
| [14] | D. Biermann, H. Abrahams, M. Metzger. Experimental investigation of tool wear and chip formation in cryogenic machining of titanium alloys [J]. Advances in Manufacturing, 2015, 3(4): 292-299. |
| [15] | A. Ducato, G. Buffa, L. Fratini, R. Shivpuri. Dual phase titanium alloy hot forging process design: experiments and numerical modeling [J]. Advances in Manufacturing, 2015, 3(4): 269-281. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
Tel: 86-21-66135510
Fax: 86-21-66132736
E-mail: aim@oa.shu.edu.cn