Rchr
J-GLOBAL ID:200901055867704563
Update date: Sep. 16, 2024
Hayashi Takahiro
ハヤシ タカヒロ | Hayashi Takahiro
Affiliation and department:
Job title:
Professor
Homepage URL (2):
http://www-nde.mech.eng.osaka-u.ac.jp/
,
http://www-nde.mech.eng.osaka-u.ac.jp/index_e.html
Research field (4):
Applied physics - general
, Safety engineering
, Social systems engineering
, Machine materials and mechanics
Research keywords (5):
non-contact measurements
, guided waves
, materials evaluation
, non-destructive testing
, ultrasonic
Research theme for competitive and other funds (23):
- 2024 - 2027 視界不良・高線量下での空間認識のための超音波可視化技術
- 2023 - 2026 Development of in-pipe exploration techniques in high background radiation environments.
- 2023 - 2026 継手の接着強化に向けた超音波共振処理法の研究
- 2021 - 2024 Autonomous nondestructive evaluation using non-contact ultrasonic measurements and machine learning
- 2021 - 2024 Nondestructive evaluation of crack in structural material based on interactions of light, sound, and vibration obtained by advanced sensing technique
- 2018 - 2021 Efficient nondestructive evaluation for a pipe using circumferential guided wave resonance with non-contact measurements
- 2017 - 2020 Development of super-resolution elastic wave camera using evanescent modes of guided wave
- 2015 - 2018 Guided wave inspection for large structures using active smart sensors
- 2014 - 2017 Development of monitoring system for large structures by non-contact defect imaging technique
- 2013 - 2016 Study of Nonlinear Guided Wave Behavior at Imperfect Interfaces for Efficient and Sensitive Ultrasonic Nondestructive Evaluation
- 2008 - 2010 Establishment of an reliability evaluation scheme based on statistical analysis and electronic defect sensing for the reliability of silicon against fatigue failure
- 2006 - 2008 Defect imaging using scanning over curved surfaces of non-contact non-linear ultrasonic technique
- 2004 - 2005 Research on Highly Sensitive Quantitative Nondestructive Evaluation Techniques of Closed Cracks and Branched Cracks
- 2003 - 2004 ガイド波を利用した大規模構造物の健全性評価
- 2003 - 2003 レーザー超音波と赤外線サーモグラフィを組合せた非接触広域構造不健全部検出法
- 2001 - 2003 NONDESTRUCTIVE EVALUATION OF MATERIAL DAMAGE WITH NONLINEAR ULTRASONIC CT
- 2002 - 2002 ガイド波を利用した大型構造物の健全性評価
- 2000 - 2002 Development of a nonlinear acoustic microscope and evaluation of bond integrity
- 1998 - 2000 Nondestructive evaluation of the initial surface damage of structural elements by using nonlinear surface wave
- ラム波の数値計算と可視化
- 空気結合超音波に関する研究
- Calculation and Visualization of Lamb wave
- Study on air-coupled ultrasonic
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Papers (101):
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Shoma Tanaka, Takahiro Hayashi, Naoki Mori. Detection of deposits adhered on the back surface of plate-like structures using a scanning laser source technique. International Journal of Pressure Vessels and Piping. 2024. 212. 105303-105303
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Akira Sasaki, Naoki Mori, Takahiro Hayashi. Tunable elastic wave transmission and resonance in a periodically aligned tube-block structure. The Journal of the Acoustical Society of America. 2024. 156. 1. 44-54
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Naoki Mori, Takahiro Hayashi, Taiki Okabe. Viscoelastic characterization of coating layers by ultrasonic interference and critical attenuation. e-Journal of Nondestructive Testing. 2024. 29. 6
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Mingqian Xia, Takahiro Hayashi, Naoki Mori. Numerical analysis of the phased array imaging with a stacked plate buffer. Japanese Journal of Applied Physics. 2024
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T. Kawabata, T. Hayashi, F. Simonetti. Ice-enhanced thermoelastic excitation of ultrasonic waves. Applied Physics Letters. 2024
more...
MISC (34):
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林高弘, 森直樹, 上野智丈. 表面直下の微小欠陥検出-レーザ弾性波源走査法による表面傷の非接触画像化. 光学. 2022. 51. 6. 280
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ハヤシ タカヒロ. レーザ超音波(超音波部門). 2021. 70. 12. 501-509
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ハヤシ タカヒロ, フジタ フミオ. レーザ弾性波励振とマイクロホン受信による遠隔配管診断. 2021. 70. 9. 393-396
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ハヤシ タカヒロ. 超音波による非破壊試験の活動報告と今後の展望. 2021. 70. 8. 292-294
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Hayashi Takahiro. Defect imaging with a scanning laser source technique. THE JOURNAL OF THE ACOUSTICAL SOCIETY OF JAPAN. 2021. 77. 6. 374-381
more...
Books (2):
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Advances in Nondestructive Testing and Materials Evaluation Technologies Using Ultrasonic Waves
2024 ISBN:4781318010
-
超音波による非破壊材料評価の基礎
大阪大学出版会 2021 ISBN:4872597478
Lectures and oral presentations (48):
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Numerical analysis of wave propagation control using evanescent modes of Lamb waves
(The Proceedings of Mechanical Engineering Congress, Japan 2021)
-
Remote anomaly detection of pipeworks using One-Class SVM and wireless microphone
(The Proceedings of the Materials and Mechanics Conference 2021)
-
Transmission spectrum characteristics of Lamb waves at single lap adhesive joints
(The Proceedings of the Materials and Mechanics Conference 2021)
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Transient wave analysis of leaky Lamb wave with a semi-analytical finite element method
(Mechanical Engineering Congress, Japan 2015)
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Simulation of Leaky Lamb Wave Propagation with a Semi-Analytical Finite Element Technique(Poster Session)
(Proceedings of Symposium on Ultrasonic Electronics 2014)
more...
Education (2):
- - 1997 Kyoto University Graduate School of Engineering Department of Mechanical Engineering
- - 1995 Kyoto University Faculty of Engineering Department of Mechanical Engineering
Professional career (1):
Work history (6):
Awards (8):
- 2023/09 - Best Paper Award of USE2022 Ultrasonic focusing using a stacked thin-plate region
- 2023/06 - Japanese Society of Nondestructive Inspection Best Paper Award in the 70th anniversary of the Japan Society for Non-Destructive Inspection Numerical Analysis of Harmonic Generation at Metal Block-Thin Film Interface Using Separation Spring Model
- 2019/11 - 超音波エレクトロニクスの基礎とその応用に関するシンポジウム 超音波シンポジウム論文賞
- 2017/06 - 日本非破壊検査協会 平成27年度一般社団法人日本非破壊検査協会論文賞 分離バネモデルを用いた金属ブロック-薄板界面の分調波発生の数値解析
- 2007/11 - 第27回超音波エレクトロニクスの基礎とその応用に関するシンポジウム 超音波シンポジウム奨励賞 On SH wave propagating in a pipe in the longitudinal direction
- 2007/05 - 日本非破壊検査協会 平成18年度日本非破壊検査協会奨励賞 鉄道レール底端部のガイド波非破壊検査
- 2006/04 - 日本機械学会 平成17年度日本機械学会奨励賞(研究) 超音波ガイド波を用いた板及び円管薄肉大型構造物の非破壊評価の研究
- 2000/05 - 日本非破壊検査協会 平成11年度日本非破壊検査協会新進賞 ラム波伝播シミュレーションによる積層薄板中剥離性状の評価
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Association Membership(s) (4):
Americal Society of Nodestructive Testing
, THE SOCIETY OF MATERIALS SCIENCE, JAPAN
, THE JAPAN SOCIETY OF MECHANICAL ENGINEERS
, THE JAPANESE SOCIETY FOR NON-DESTRUCTIVE INSPECTION
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