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Akio Hayashi
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2020 – today
- 2023
- [j10]Akio Hayashi, Yoshitaka Morimoto:
Study on Process Design Based on Language Analysis and Image Discrimination Using CNN Deep Learning. Int. J. Autom. Technol. 17(2): 112-119 (2023) - 2022
- [j9]Hiroto Tanaka, Yoshitaka Morimoto, Akio Hayashi, Hidetaka Yamaoka:
Posture Evaluation Based on Forward Kinematics and Inverse Kinematics of Parallel Link Type Machine Tool. Int. J. Autom. Technol. 16(4): 497-506 (2022) - [j8]Akio Hayashi, Okitoshi Shibata, Yoshitaka Morimoto:
Study on Method for Avoiding Chatter Vibration by Changing Machine Tool Rigidity. Int. J. Autom. Technol. 16(6): 853-861 (2022) - 2021
- [j7]Akio Hayashi, Hiroto Tanaka, Masato Ueki, Hidetaka Yamaoka, Nobuaki Fujiki, Yoshitaka Morimoto:
Forward Kinematics Model for Evaluation of Machining Performance of Robot Type Machine Tool. Int. J. Autom. Technol. 15(2): 215-223 (2021) - [j6]Keisuke Nagao, Nobuaki Fujiki, Hiroto Tanaka, Akio Hayashi, Hidetaka Yamaoka, Yoshitaka Morimoto:
Machining Performance of Robot-Type Machine Tool Consisted of Parallel and Serial Links Based on Calibration of Kinematics Parameters. Int. J. Autom. Technol. 15(5): 611-620 (2021) - [j5]Akio Hayashi, Fumiya Arai, Yoshitaka Morimoto:
Simulation of Energy Consumption During Machine Tool Operations Based on NC Data. Int. J. Autom. Technol. 15(6): 764-773 (2021) - 2020
- [j4]Keisuke Nagao, Nobuaki Fujiki, Yoshitaka Morimoto, Akio Hayashi:
Calibration Method of Parallel Mechanism Type Machine Tools. Int. J. Autom. Technol. 14(3): 429-437 (2020)
2010 – 2019
- 2019
- [j3]Hikaru Nishikawa, Yoshitaka Morimoto, Akio Hayashi:
Development of Path Generation Method for Five-Axis 3D Printer. Int. J. Autom. Technol. 13(3): 361-371 (2019) - [j2]Yohichi Nakao, Rei Kirigaya, Dmytro Fedorynenko, Akio Hayashi, Kenji Suzuki:
Thermal Characteristics of Spindle Supported with Water-Lubricated Hydrostatic Bearings. Int. J. Autom. Technol. 13(5): 602-609 (2019) - [j1]Akio Hayashi, Tatsuya Mukai, Yusuke Inomata, Yoshitaka Morimoto:
Improvement of Reverse Motion of an NC Moving Table Based on Vector Control Method by Friction Force Compensation. Int. J. Autom. Technol. 13(5): 610-618 (2019)
Coauthor Index
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