Advances in Manufacturing ›› 2020, Vol. 8 ›› Issue (3): 265-278.doi: 10.1007/s40436-020-00309-y
• ARTICLES • Next Articles
Wei Han1, Feng-Zhou Fang1,2
Received:2020-02-02
Revised:2020-03-17
Online:2020-09-25
Published:2020-09-10
Contact:
Feng-Zhou Fang
E-mail:fengzhou.fang@ucd.ie
Supported by:Wei Han, Feng-Zhou Fang. Investigation of electropolishing characteristics of tungsten in ecofriendly sodium hydroxide aqueous solution[J]. Advances in Manufacturing, 2020, 8(3): 265-278.
| 1. Fan HG, Tsai HL, Na SJ (2001) Heat transfer and fluid flow in a partially or fully penetrated weld pool in gas tungsten arc welding. Int J Heat Mass Transf 44:417-428 2. Tanaka M, Shimizu T, Terasaki H et al (2000) Effects of activating flux on arc phenomena in gas tungsten arc welding. Sci Technol Weld Join 5:397-402 3. Abyzov AM, Kidalov SV, Shakhov FM (2011) High thermal conductivity composites consisting of diamond filler with tungsten coating and copper (silver) matrix. J Mater Sci 46:1424-1438 4. Ju BF, Chen YL, Fu M et al (2009) Systematic study of electropolishing technique for improving the quality and production reproducibility of tungsten STM probe. Sens Actuators A Phys 155:136-144 5. Kelsey GS (1977) The anodic oxidation of tungsten in aqueous base. J Electrochem Soc 124:814-819 6. Han W, Kunieda M (2019) A novel method to switch machining mode between micro-ECM and micro-EDM using oxide film on surface of tungsten electrode. Precis Eng 56:455-465 7. Wang J, Fang FZ, Yan G et al (2019) Study on diamond cutting of ion implanted tungsten carbide with and without ultrasonic vibration. Nanomanuf Metrol 2:177-185 8. Wang XL, Han LH, Geng YQ et al (2019) The simulation and research of etching function based on scanning electrochemical microscopy. Nanomanuf Metrol 2:160-167 9. Fang FZ, Zhang N, Guo D et al (2019) Towards atomic and close-to-atomic scale manufacturing. Int J Extrem Manuf 1:1-33 10. Fang FZ, Xu F (2018) Recent advances in micro/nano-cutting:effect of tool edge and material properties. Nanomanuf Metrol 1:4-31 11. Suzuki N, Haritani M, Yang J et al (2007) Elliptical vibration cutting of tungsten alloy molds for optical glass parts. CIRP Ann Manuf Technol 56:127-130 12. Sarkar S, Sekh M, Mitra S et al (2008) Modeling and optimization of wire electrical discharge machining of c-TiAl in trim cutting operation. J Mater Process Technol 17:525-536 13. Chen HC, Lin JC, Yang YK et al (2010) Optimization of wire electrical discharge machining for pure tungsten using a neural network integrated simulated annealing approach. Expert Syst Appl 37:7147-7153 14. Yang RT, Tzeng CJ, Yang YK et al (2012) Optimization of wire electrical discharge machining process parameters for cutting tungsten. Int J Adv Manuf Technol 60:135-147 15. Masuzawa T (2000) State of the art of micromachining. CIRP Ann Manuf Technol 49:473-488 16. Reinhardt KA, Kern W (2018) Handbook of silicon wafer cleaning technology, 3rd edn. William Andrew, Park Ridge 17. Fang FZ, Zhang XD, Gao W et al (2017) Nanomanufacturing-perspective and applications. CIRP Ann Manuf Technol 66:683-705 18. Bielmann M, Mahajan U, Singh RK (1999) Effect of particle size during tungsten chemical mechanical polishing. Mater Res Soc Symp Proc 2:401-403 19. Larsen-Basse J, Liang H (1999) Probable role of abrasion in chemo-mechanical polishing of tungsten. Wear 233(235):647-654 20. Nanz G, Camilletti LE (1995) Modeling of chemical-mechanical polishing:a review. IEEE Trans Semicond Manuf 8(4):382-389 21. Wang F, Zhang X, Deng H (2019) A comprehensive study on electrochemical polishing of tungsten. Appl Surf Sci 475:587-597 22. Han W, Fang FZ (2020) Investigation of electrochemical properties of electropolishing Co-Cr dental alloy. J Appl Electrochem 50:367-381 23. Han W, Fang FZ (2020) Two-step electropolishing of 316L stainless steel in a sulfuric acid-free electrolyte. J Mater Process Technol 279:116558 24. Han W, Fang FZ (2019) Fundamental aspects and recent developments in electropolishing. Int J Mach Tools Manuf 139:1-23 25. Schubert N, Schneider M, Michaelis A et al (2018) Electrochemical machining of tungsten carbide. J Solid State Electrochem 22:859-868 26. Han W, Fang FZ (2019) Electropolishing of 316L stainless steel using sulfuric acid-free electrolyte. J Manuf Sci Eng 141:101015 27. Hu YN, Zhou H, Liao LP et al (2003) Surface quality analysis of the electropolishing of cemented carbide. J Mater Process Technol 139:253-256 28. Holstein N, Krauss W, Konys J et al (2016) Advanced electrochemical machining (ECM) for tungsten surface micro-structuring in blanket applications. Fusion Eng Des 109:956-960 29. Lee ES, Shin TH (2011) An evaluation of the machinability of nitinol shape memory alloy by electrochemical polishing. J Mech Sci Technol 25:963-969 30. Rajurkar KP, Zhu D, McGeough JA et al (1999) New developments in electro-chemical machining. CIRP Ann Manuf Technol 48:567-579 31. Piotrowski O, Madore C, Landoly D (1998) The mechanism of electropolishing of titanium in methanol-sulfuric acid electrolytes. J Electrochem Soc 145:2362-2369 32. Anik M (2006) Effect of concentration gradient on the anodic behavior of tungsten. Corros Sci 48:4158-4173 33. Anik M, Osseo-Asare K (2002) Effect of pH on the anodic behavior of tungsten. J Electrochem Soc 149:B224-B233 34. Di PA, Di QF, Sunseri C (1980) Anodic oxide films on tungstenI. The influence of anodizing parameters on charging curves and film composition. Corros Sci 20:1067-1078 35. Evans TE, Hart AC, Skedgell AN (1973) The nature of the film on coloured stainless steel. Trans IMF 51:108-112 36. Shimasaki T, Kunieda M (2016) Study on influences of bubbles on ECM gap phenomena using transparent electrode. CIRP Ann Manuf Technol 65:225-228 37. Zhang R, Ivey DG (1996) Preparation of sharp polycrystalline tungsten tips for scanning tunneling microscopy imaging. J Vac Sci Technol B Microelectron Nanom Struct 14:1-10 38. Krauss W, Holstein N, Konys J (2007) Strategies in electrochemical machining of tungsten for divertor application. Fusion Eng Des 82:1799-1805 39. Park JJ, Il PS, Lee SB (2004) Growth kinetics of passivating oxide film of Inconel alloy 600 in 0.1 M Na2SO4 solution at 25-300 ℃ using the abrading electrode technique and ac impedance spectroscopy. Electrochim Acta 49:281-292 40. Schuster R, Kirchner V, Allongue P et al (2000) Electrochemical micromachining. Science 289:98-111 |
| [1] | 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. |
| [2] | 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. |
| [3] | Sana Zaki, Nan Zhang, Michael D. Gilchrist. Microscale shaping and rounding of ridge arrays and star pattern features on nickel mould via electrochemical polishing [J]. Advances in Manufacturing, 2024, 12(2): 207-226. |
| [4] | 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. |
| [5] | Yong-Hua Shi, Zi-Shun Wang, Xi-Yin Chen, Yan-Xin Cui, Tao Xu, Jin-Yi Wang. Real-time K-TIG welding penetration prediction on embedded system using a segmentation-LSTM model [J]. Advances in Manufacturing, 2023, 11(3): 444-461. |
| [6] | Xue-hong Shen, Chang-Feng Yao, Liang Tan, Ding-Hua Zhang. Prediction model of surface integrity characteristics in ball end milling TC17 titanium alloy [J]. Advances in Manufacturing, 2023, 11(3): 541-565. |
| [7] | 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. |
| [8] | Chang-Yong Yang, Zhi Wang, Hao Su, Yu-Can Fu, Nian-Hui Zhang, Wen-Feng Ding. Numerical analysis and experimental validation of surface roughness and morphology in honing of Inconel 718 nickel-based superalloy [J]. Advances in Manufacturing, 2023, 11(1): 130-142. |
| [9] | Long-Hua Xu, Chuan-Zhen Huang, Jia-Hui Niu, Jun Wang, Han-Lian Liu, Xiao-Dan Wang. Prediction of cutting power and surface quality, and optimization of cutting parameters using new inference system in high-speed milling process [J]. Advances in Manufacturing, 2021, 9(3): 388-402. |
| [10] | Yan-Xin Cui, Yong-Hua Shi, Qiang Ning, Yun-Ke Chen, Bao-Ri Zhang. Investigation into keyhole-weld pool dynamic behaviors based on HDR vision sensing of real-time K-TIG welding process through a steel/glass sandwich [J]. Advances in Manufacturing, 2021, 9(1): 136-144. |
| [11] | Rityuj Singh Parihar, Raj Kumar Sahu, Srinivasu Gangi Setti. Novel design and composition optimization of self-lubricating functionally graded cemented tungsten carbide cutting tool material for dry machining [J]. Advances in Manufacturing, 2021, 9(1): 34-46. |
| [12] | Guo Zhou, Chao Xu, Yuan Ma, Xiao-Hao Wang, Ping-Fa Feng, Min Zhang. Prediction and control of surface roughness for the milling of Al/SiC metal matrix composites based on neural networks [J]. Advances in Manufacturing, 2020, 8(4): 486-507. |
| [13] | Peng Lyu, Min Lai, Feng-Zhou Fang. Nanometric polishing of lutetium oxide by plasma-assisted etching [J]. Advances in Manufacturing, 2020, 8(4): 440-446. |
| [14] | Mirsadegh Seyedzavvar, Hossein Abbasi, Mehdi Kiyasatfar, Reza Najati Ilkhchi. Investigation on tribological performance of CuO vegetable-oil based nanofluids for grinding operations [J]. Advances in Manufacturing, 2020, 8(3): 344-360. |
| [15] | Wei Zhao, Asif Iqbal, Ding Fang, Ning He, Qi Yang. Experimental study on the meso-scale milling of tungsten carbide WC-17.5Co with PCD end mills [J]. Advances in Manufacturing, 2020, 8(2): 230-241. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
Tel: 86-21-66135510
Fax: 86-21-66132736
E-mail: aim@oa.shu.edu.cn