Tohoku University Graduate School of Engineering Fracture and Reliability Research Institute Division of Advanced Electric Power Research (Joint Research with Tohoku Electric Power Co., Inc.)
About Tohoku University Graduate School of Engineering Fracture and Reliability Research Institute Division of Advanced Electric Power Research (Joint Research with Tohoku Electric Power Co., Inc.)
2016 - 2019 Development of a visualization method of hidden damage for integrity evaluation of components exposed to a massive earthquake
2014 - 2017 Application of morphological analysis of the interface at oxide and alloy for continuous quantitative evaluation on initiation process of stress corrosion cracking
2013 - 2016 Elucidation of intergranular stress corrosion cracking crack growth mechanism of the Ni-base high-Cr alloy and creation of their maintainability
2011 - 2013 Role of Grain Boundary in Stress Corrosion Cracking based upon Elastic-Plastic Fracture Machanics
2010 - 2012 Understanding initiation processes of stress corrosion cracking by means of real time imaging and development of anti-SCC materials
2008 - 2010 Mechanical-Electrochemical Interaction Mechanism for the Effect of Elastic-Plastic Anisotropy on Stress Corrosion Cracking in High Temperature Water
2008 - 2009 Identification of reactions at solid/solution interface based onselective in-situ measurement of multilayer film in high temperature water
2006 - 2007 軽水炉環境における動的ひずみ下での固液界面相互作用
2006 - 2007 Kinetics Analysis of Thermally Activated Elementary Processes in Stress Corrosion Cracking Crack Growth
2006 - Mechanistic study of materials degradation behaviors in high temperature helium gas cooled reactor environments
2005 - 2006 Research on the Stress Accelerated Grain Boundary Oxidation of Super Alloys for Advanced Ultra Supercritical Turbine Systems
2004 - 地熱発電システムにおける経年劣化と最適運用に関する研究
2004 - Study on material degradation mechanism of advanced ultra super critical turbine system
2001 - Mechanistic study of stress corrosion cracking based on oxide film properties
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Papers (145):
Zihao Wang, Sergio Lozano-Perez, Yutaka Watanabe, Yoichi Takeda, Xiangyu Zhong, Zhengcao Li, Tetsuo Shoji. Impact of diffusible hydrogen on corrosion of Alloy 600 at 288 °C: An in-situ electrochemical study. Corrosion Science. 2024. 234. 112150-112150
Yuichi Kato, Yoichi Takeda, Susumu Nakano. Crack growth acceleration of Ni-based superalloy 625 under cyclic loading in superheated steam environment at 750 °C. Proceedings of the International Conference on Power Engineering-2023. 2023. ICOPE-2023-1134
Youichi Takeda, Seitaro Fujiwara, Susumu Nakano. Localized Oxidation Behavior of aged Alloy 617 in Supercritical Water and Superheated Steam Environment at 750°C. Proceedings of the International Conference on Power Engineering-2023. 2023. ICOPE-2023-1279
SAITO Masashi, OZAWA Yuji, NAKANO Susumu, TAKEDA Yoichi. 103 Oxidation behavior during fatigue crack growth of alloy 625 at 750°C in steam and dry gas environments. 2015. 2015. 51. "103-1"-"103-2"
SEKI Keiichi, NAKANO Susumu, TAKEDA Yoichi. 613 A fundamental study of a dynamic simulator for small gas turbines. 2014. 2014. 50. 139-140
TAKEDA Yoichi, MORITA Hiroki, OZAWA Yuji. OS0826 Crack Growth Behaviour of Alloy 625 Under Cyclic Loading in Steam and Air Environments at 750°C. 2014. 2014. "OS0826-1"-"OS0826-2"
Localized Oxidation Behavior of aged Alloy 617 in Supercritical Water and Superheated Steam Environment at 750°C
(International Conference on Power Engineering 2023, ICOPE-2023 2023)
Change in Crack Path and Acceleration Rate during Fatigue Crack Growth of 316 Stainless Steel in a Simulated PWR Primary Water
(AWC Symposium on Water Chemistry and Corrosion in Nuclear Power in Asia, 2022 2022)
Effect of grain boundary precipitations on fatigue cracking path of Alloy 617 in a superheated steam environment at 750C
(International Conference on Power Engineering-2021 2021)
Comparison of Fatigue Crack Growth Rate of Aged CrMo Steel in Superheated Steam and Air Environments
(International Conference on Power Engineering-2019 2019)
Dependence of Local Deformation Behavior Around Fatigue Crack Tip on Cyclic Loading Frequency in Steam and Inert Environments at 750°C
(Asia-Pacific Conference on Fracture and Strength 2018 2018)
2008/10/24 - 日本機械学会 Japan Society of Mechanical Engineers (JSME) Power and Energy System Division's General Awards, Outstanding presentation of young researchers and engineers Oxidation and Cracking Behavior of Nickel Base Superalloys Under Bending Stress in Advanced Steam Condition Beyond 700C
2001/10/22 - Japan Society of Mechanical Engineers The best paper in student poster session
2001/03/10 - 日本機械学会東北支部 独創学生研究賞
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Association Membership(s) (5):
Japan Society of Maintenogy
, Thermal and Nuclear Power Engineering Society
, Atomic Energy Society of Japan
, Japan Society of Corrosion Engineering
, Japan Society of Mechanical Engineers