1 | Ming-Zong Chen and Ming-Chyuan Lu, 2021, ”Applying Microphone Array to the Quality Monitoring System in Laser Micro Lap Welding,” 2021 World Congress on Micro and Nano Manufacturing (WCMNM 2021), Mumbai, India, P. 087. |
2 | Chung-Ying Wang, Ming-Chyuan Lu, Chien-Yao Huang, Wei-Cheng Lin, Hsiao-Yu Chou and Fong-Zhi Chen, 2019, “Development of Sound based Tool Wear Monitoring System in the Milling of Inconel 718,” The 8th International Conference of Asian Society for Precision Engineering and Nanotechnology (ASPEN 2019), Matsue, Japan. |
3 | Bo-Si Kuo, Ming-Chyuan Lu, 2019, ” Analysis of Sound Signal for Quality Monitoring in Laser Micro Lap Welding,” 2019 World Congress on Micro and Nano Manufacturing (WCMNM 2019), Raleigh, USA, P. 077. |
4 | W.C. Yang, M.C. Lu, S.J.Chiou, 2019, “Experimental Study of Audible Sound and AE Signals for Defect Monitoring in DED Metal Additive Manufacturing, ,” Proceeding of 8th Virtual Machining Process Technology, Vancouver, Canada, No. 79 |
5 | Li-Ting Yang, Ming-Chyuan Lu, Shih-Ming Wang,, Yao-Yang Tsai, Yunn-Shiuan Liao, 2018, ” Experimental Investigation of Cutting Force and AE Signals for Cutting Mode Transform in the Machining of Zirconium Oxide,” 2018 World Congress on Micro and Nano Manufacturing (WCMNM 2018), Portoroz, Slovenia, P. 087. |
6 | Kuan-Mien Chang, Ming-Chyuan Lu, 2018, “Experimental Study of Acoustic Emission Signal for Surface Condition Monitoring in Si-Wafer Micro Milling,” ASME 2018 Manufacturing Science and Engineering Conference, College Station, USA, MSEC2018-6752. |
7 | C.Y. Wang, M.C. Lu, S.J. Chiou, 2018, “Study of Multi-Sensor Tool Wear Monitoring System with Modified Recurrent Hidden Markov Model in the Milling of Inconel 718,” Proceeding of 7th Virtual Machining Process Technology, Hamilton, Canada, No. 138. |
8 | Ming-Chyuan Lu, 2017, “Sensor and Feature Selection for Tool Condition Monitoring in Intelligent Manufacturing,” the 7th international conference of Asian Society for Precision Engineering and Nanotechnology, Nov.14-17, Seoul, Korea, Invited Speech |
9 | Cheng-Yu Liang, Ming-Chyuan Lu, and Shih-Ming Wang, 2017“Experimental Study of Spindle Vibration Signals for Tool Wear Monitoring in the Milling of Inconel 718,” ASME 2017 Manufacturing Science and Engineering Conference, LA, USA, MSEC2017-3137. |
10 | Kuan-Ting Kuo, Ming-Chyuan Lu, 2017, ”Investigation of AE signal Generation and Propagation for Laser Micro Lap Welding,” 2017 World Congress on Micro and Nano Manufacturing (WCMNM 2017), Kaohsiung, Taiwan, P. 036. |
11 | Liang, Chen-Yu, Lu, Ming-Chyuan, 2016, “Analysis of Workpiece-Clamp AE Signals for Tool Wear Monitoring System in the Milling of Inconel 718, “Proceedings of ICAM2016, SunMoon Lake, Nantou, Taiwan, Dec17-19, 009053 |
12 | Wang, Pei-Ning, Lu, Ming-Chyuan,Wang, Shih-Ming, Liao, Yunn-Shiuan, 2016, “Application of MEMS Microphone Array for Tool Wear Monitoring in Turning,” Proceedings of 4M/IWF 2016, Lyngby, Demark, No. 737. |
13 | Liang, Chen-Yu, Lu, Ming-Chyuan, Chiou, Shean-Juinn, 2016, “Development of Sound Based Tool Wear Monitoring System for The Milling of Inconel 718,” Proceedings of The 17th International Conference On Machine Design And Production, Bursa, Turky |
14 | Liao, Yu-Chi, Lu, Ming-Chyuan, Kuo, Kuan-Ting, Liang, Chen-Yu, and Yang, Li-Ting , 2016,”An Experimental Study of Workpiece Dimension and Cutting Location Effect on Chatter Generation in Turning,” Proceeding of 5th Virtual Machining Process Technology, Taipei, Taiwan. |
15 | Lee, Yu-Ting, Lu, Ming-Chyuan, and Wang, Shih-Ming, 2016, ” Study of Sound Signals for Penetration Monitoring in Laser Lap Micro Welding,” Proceedings of 2016 International Conference on Micro Manufacturing, Ervine, USA, No. 40 |
16 | Chen, Ken-Han, Lu, Ming-Chyuan, Wu, Chia-Che, Li, Kuan-Ming, Tsai, Yao-Yang, 2015,”An Experimental Study on Micro Milling of PZT deposited Si wafer,” Proceedings of 4M/ICOMM 2015, Milan, Italy, No. 43. |
17 | Huang, Ci-Rong, Lu, Ming-Chyuan, 2015, “Analysis of Cutting Path Effect on AE Signal Based Tool Wear Monitoring System in Micro Milling,” MIRAI 2015, Kaohsing, Taiwan. |
18 | Chang, Ling-Fang, Lu, Ming-Chyuan, Chen, Ko-Heng, and Wu, Chia-Che, 2014, “Development of Condition Monitoring System for Micro Milling of PZT Deposited Si Wafer,” Proceedings of International Workshop on Microfactories, Honolulu, 008. |
19 | Chien, Kun-Chieh and Lu, Ming-Chyuan, 2014,”Study of AE based Weld Quality Monitoring in Nd:YAG Laser Thin Plate Butt Welding,” Proceedings of ICAM2014, Chia-I, Taiwan, Sept. 30-Oct. 3, S0121. |
20 | Tai, Tsen-Chen, Lu, Ming-Chyuan, Wu Chia-Che, Chou, Yen-Cheng, Tsai, Yao-Yang,, 2014, “Investigation of PZT/Si Wafer Micro Milling using Diamond Coated Tool,” ASME 2014 International Manufacturing Science And Engineering Conference, June, Detroit, Michigan, USA,2014-4087. |
21 | Hsu, Li-Yu and Lu, Ming-Chyuan, 2014, “Analysis of Vibration Signal for Tool Breakage Prognosis in Micro Gun Drilling,” Proceedings of 2014 International Conference on Micro Manufacturing, Singapore, No. 79 |
22 | Lu, Ming-Chyuan, Shih, Han-Po, and Chiou, Shean-Juinn, 2013, “Experimental Study of AE Signals Affected by Tool Wear, Cutting Modes and Sensor Locations in Metal Cutting,” Proceeding of 2013 CACS International Automatic Control Conference (CACS 2013), Sun-Moon Lake, Taiwan, No. 1817. |
23 | Chien, Kun-Chieh and Lu, Ming-Chyuan, 2013, “Analysis of Sound Signal for Weld Quality Monitoring in Nd:YAG Laser Thin Plate Butt Welding,” Proceeding of 16th international conference on Advances in Materials and Processing Technologies, Taipei, Taiwan, No. 405. |
24 | Hsu, Li-Yu and Lu, Ming-Chyuan, 2013, “Development of AE Signal Based Tool Breakage Prognosis System in Micro Gun Drilling,” Proceedings of Structure Health Monitoring. |
25 | Huang, Ci-Rong and Lu, Ming-Chyuan, 2013, “Analysis of Cutting Path Effect on Spindle Vibration Based Tool Wear Monitoring System in Micro Milling,” Proceedings of 2013 International Conference on Micro Manufacturing, Victoria, Canada, No. 27 |
26 | Huang, Y., Lu, M., Huang, C., and Chiou, S., 2012, “Development of Spindle Vibration Based Tool Breakage Monitoring System for Micro Milling,” Proceeding of 9th International Conference on Machine Tools, Automation, Robotics and Technology. Prague, Czech Republic, 12028. |
27 | Liu, I. and Lu, M., 2012, “Analysis of Tool Wear and Size effect for Diamond Coated Tool in Micro Milling of Graphite,” Proceedings of 2012 International Conference on Micro Manufacturing, Evanston, USA, No. 69. |
28 | Huang C., Lu, M., Lu, C.and Hsu, Y., 2011, “Study of Spindle Vibration Signals for Tool Breakage Monitoring in Micro-Drilling,” 2011World Congress on Intelligent Control and Automation, Taipei, 2011, 00332. |
29 | Huang, C. and Lu, M., 2011, “Study of Microphone Array for Noise Reduction in Sound Based Micro-Tool Wear Monitoring,” ASME 2011 International Manufacturing Science And Engineering Conference, June, Corvallis, Oregon, USA, 2011-50099. |
30 | Wan, B., Lu, M., and Chiou, S., 2011, “Analysis of AE signal for HMM based Tool Wear Monitoring in Micro Milling,” Proceedings of International Conference on Micro Manufacturing, Tokyo, No. 55. |
31 | Lee, M., Lu, M., and Tsai, J., 2010, “Development of Sound Based Tool Wear Monitoring System in Micro-milling,” ASME 2010 International Manufacturing Science And Engineering Conference, October, Erie, Pennsylvania, USA,2010-34240. |
32 | Yen, C., Lu, M. and Chen J., 2010, “Study of AE signal for Tool Wear Monitoring in Micro Milling Based on LVQ Algorithm,” The 13th International Symposium on Advances in Abrasive Technology, Taipei, Taiwan. |
33 | 彭華威、吳炫澍、葉展碩、盧銘銓、田仲凱,2010,”線上切削刀具狀態動態訊號監測與分析系統建置”中國機械工程學會第二十七屆全國學術研討會論文集,國立台北科技大學台北市,BB18-013 |
34 | 陳韋任、蔡志成、盧銘詮,2010,”大量資料自動分群演算法之研發與驗證”2010第十八屆全國自動化科技研討會,臺灣‧中壢 中原大學 |
35 | Lu, M., Hsieh, W., and Chiou, S., 2010, “Study of Spindle Vibration based Tool Condition Monitoring in Micro Milling,” Proceedings of ICAM2010, Keng-Ting, Taiwan, Feb.2-5, pp. 528-532. |
36 | 蔡志成、盧銘詮、林敬偉、黃添祥, 2010,“應用振動訊號與模糊演算法偵測刀具磨耗狀態之研究” 2010第十八屆全國自動化科技研討會,臺灣‧中壢 中原大學 |
37 | Chen, T., Lu, M., Chiou, S., Lin, C., Lee, M., 2009, “Study of Sound Signal for Tool Wear Monitoring System in Micro-milling Processes”, ASME 2009 International Manufacturing Science And Engineering Conference, October, West Lafayette, Indiana, USA, 2009-84178 |
38 | Lu, M., Chiou, S, and Hsieh W., 2009, “Investigation of Spindle Vibration Signals for Tool Wear Monitoring in Micro Milling,” Proceedings of the 10th international conference on automation technology, Tainan, Taiwan, P131. |
39 | 蔡志成、吳承佑、陳峰志、盧銘詮、郭慶祥,2009年十二月18日,“刀具傾角對B270玻璃刻劃深度與應力影響之實驗探討”,精密加工技術及其應用研討會論文集,台灣台中,235-240頁。NSC 97-2221-E-492-007 |
40 | Lu, M., Tsai, J., Chen, W., Lin, C., Lee, M., Kuo, T., and Peng H., 2009, “Development of On-line Monitoring Systems for Tool Degrading,” Proceedings of the 10th international conference on automation technology, Tainan, Taiwan, P168. |
41 | 陳義吉、蔡志成、陳韋任、林敬偉、郭德明、陳昭亮、盧銘詮、彭華威、劉旺林,2008,”工具機運轉性能監測系統開發”2008第十六屆全國自動化科技研討會,臺灣‧高雄國立高雄第一科技大學 |
42 | Yen, C., Lu, M., Lin, C., and Chen, T., 2008, “Experimental Study of Sound Signal For Tool Condition Monitoring In Micro Milling Processes,” Proceedings of the ASME 2008 International Manufacturing Science And Engineering Conference, October, Evanston, Illinois, USA, 2008-72181. |
43 | Tsui, C., Wu, C., Lu, M., and Huang C., 2008, “ Drilling Of Microholes On Silicon Wafer With Ultrasonic Workpiece Holder,” Proceedings of the ASME 2008 International Design Engineering Technical Conferences & Computers and Information in Engineering Conference, August, 2008, New York City, NY, USA, 2008 -50026 |
44 | Yen, C., Lu., M., and Chen, T, 2008, “Investigation Of Multi-Sensor Signals For Tool Condition Monitoring In Micro-Milling Processes,” Proceedings of the 10th Anniversary International Conference of the European Society for Precision Engineering and Nanotechnology, Zurich, Switzerland, Vol.2, pp. 72-76. |
45 | Lu, Ming-Chyuan and Kannatey-Asibu Jr., E., 2000, “Analysis of Sound Signal Characteristics Associated with Adhesive Wear in Machining,” Transactions of the NAMRI/SME, Vol. XXVIII, pp. 257-262. |
46 | Lu, M., and Kannatey-Asibu, 2000, “Analysis of sound signal generation due to flank wear in turning,” American Society of Mechanical Engineers, Manufacturing Engineering Division, MED, v 11, 2000, pp 165-171 |