2016 - 2019 Early detection technique based on remote non-contacting non-destructive testing combining electromagentic and ultrasonic methods
2018 - 2019 超高感度SQUID磁気センサを用いた超音波ガイド波検査のCFRPへの適用
2016 - 2017 海中における磁気情報収集ステーション実現のための基礎的検討
2015 - 2017 超高感度磁気センサを用いたリモート非接触式配管非破壊検査技術の開発
2013 - 2016 Functional MRI microscopy in ultra-low field
2014 - 2015 電磁波を応用した非接触リモート非破壊検査技術の研究
2011 - 2012 Development of Earth's field MRI system for diagnosis at home
2009 - 2011 Development of Ultra-Low Field NMR Detection System for Underground Resources using Highly Sensitive Magnetic Sensor
2009 - 2010 Sensing system to detect magnetic nano-particles for magnetic drug delivery
2007 - 2008 Defect Detection System for Hydrogen Fuel Tank for Fuel Cell
2005 - 2006 超高感度磁気センサを用いた細胞膜電位計測システムの構築
2005 - 2006 超高感度磁気センサを用いた電磁的非破壊検査装置のモバイルロボット化
2004 - 2006 Study on Evaluation system for bio-molecules using thermo sensitive nano-particles
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Papers (116):
Wenxu Sun, Tomoki Kasa, Yoshimi Hatsukade, Makiko Yonehara, Toshitaka Ikeshoji, Hideki Kyogoku. Quality assessment of SUS316L fabricated by metal additive manufacturing with eddy current inspection. NDT & E International. 2023. 138. 102901-102901
Wenxu Sun, Tomoki Kasa, Yoshimi Hatsukade, Takao Sugiuchi, Hidetaka Nishida. Creep Life Assessment Method for Super304H Boiler Tubes Based on HTS-SQUID Gradiometer. IEEE Transactions on Applied Superconductivity. 2023. 33. 5. 1601005
Wenxu Sun, Tomoki Kasa, Yoshimi Hatsukade, Takao Sugiuchi, Hidetaka Nishida. Development of an HTS-SQUID Based Nondestructive Evaluation System for Boiler Tubes On-site Inspection in Thermal Power Plant. IEEE Transactions on Applied Superconductivity. 2023. 33. 5. 1600605
Tomoki Kasa, Wenxu Sun, Yoshimi Hatsukade, Makiko Yonehara, Toshi-Taka Ikeshoji, Hideki Kyogoku. Eddy Current Testing Based Non-destructive Inspection for Metal 3D Additive manufacturing Objects with HTS-SQUID. IEEE Transactions on Applied Superconductivity. 2023. 33. 5. 1600504
K. Watanabe, K. Okada, S. Masumitsu, T. Munkhnyam, W. Sun, Y. Hatsukade, Y. Shoyama, A. Tomotoshi. Guided Wave Transceive Technique Using Magnetostrictive Effect of STPG370 Pipe itself and High-Temperature Superconductor SQUID. Journal of Physics: Conference Series. 2022. 2323. 012027
Development of an Airborne Magnetic Measurement System with a High Sensitive Vector Magnetic Sensor and a Drone. IEICE Technical Report. 2022. PEM2022-10. 40-43
Development of Guided Wave Inspection Technique Using Novel FeCo-based Magnetostrictive Material for CFRP Plates
(The 43nd Symposium on Ultrasonic Electronics (USE2022) 2022)
Eddy Current Testing Based Non-destructive Inspection for Metal 3D Additive manufacturing Objects with HTS-SQUID
(Applied Superconductivity Conference 2022 (ASC 2022) 2022)
2009/06 - ISEC2009 Committee Young Researcher Award Study of Robustness of HTS-SQUID Magnetometer Covered by Superconducting Shield in AC Magnetic Field