論文- 庄子 哲雄 -
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件数:553件
[2002]
261.Estimating the size of surface cracks based on Hall element measurements of the leakage magnetic fild and a dipole model.[Applied Physics A,74,(2002),169-176]D. Minkov, Y. Takeda, T. Shoji, J. Lee
262.Influence of Pre-Aging on Creep Rupture Strength of Tungsten Alloyed 9%Cr Ferritic Steel and Creep Damage Evaluation by Electrochemical Method.[JSME International Journal,45(1),(2002),30-38]Shin-ichi KOMAZAKI, Shigeo KISHI, Tetsuo SHOJI, Tetsuo KUMAZAWA, Kojiri HIGUCHI and Koshi SUZUKI
263.Development of novel NDE techniques and their significance in the COE program on the physics and chemistry of fracture and failure prevention.[International Journal of Applied Electromagnetics and Mechanics 14(2001/2002),(2002)]Tetsuo Shoji, Yasumoto Sato, Dorian Minkov, Kenichi Yagi, Toshimitsu Baba, Kinji Tamakawa
264.照射誘起応力腐食割れメカニズム研究と今後の課題.[原子力高度技術研究会議事録,(2002)]庄子 哲雄
[2001]
265.The In-Situ Measurement of a Local Chemical Reaction by Raman Spectroscopy -Time dependent Enrichment of Chloride Ions on the Surface of 304L Stainless Steel-.[Proceedings of APCFS&ATEM'01,(2001),76-81]Masao TAKEGOSHI, Yutaka WATANABE, Tetsuo SHOJI
266.Analysis of Crack Growth Kinetics and Crack Tip Strain Rates of Sensitized Type 304 Stainless Steel in Simulated Boiling Water Reactor Environment - Experiments and Theory Q.[Proc.of APCFS&ATEM'01 (Oct.20-22,Sendai,Japan),(2001)]Peng, J. Kwon, T. Shoji
267.SCC Growth Behaviour of Surface Cracked Specimens in High Temperature Water.[Proc.of APCFS&ATEM'02 (Oct.20-22,Sendai,Japan 2001),(2001)]S. Suzuki (Tokyo Electric Power Corp., Japan)T. Shoji
268.Effect of Yield Strength on Stress Corrosion Crack Growth of Stainless Steel in High Temperature Water Environment.[Proc.of APCFS&ATEM'01 (Oct.20-22,Sendai,Japan,2001),(2001)]G. Li, K. Ohashi, T. Shoji
269.電気化学的手法によるW強化型9%Crフェライト系耐熱鋼のクリ-プ損傷評価.[材料,50(5),(2001),503-509]駒崎慎一, 岸繁男, 庄子哲雄, 樋口康二郎, 鈴木康吏
270.Effect of Ce doping on passive film electrical resistance of 316 stainless steel exposed to oxygenated pure water at 288 degrees C and its relation to stress corrosion cracking.[JOURNAL OF MATERIALS SCIENCE LETTERS,20(10),(2001),965-968]K.S. Raja, Y. Watanabe, T. Shoji
271.Mechanistic Understanding for Degraded Thermal Barrier Coatings.[JSME International Journal, Series A,44(4),(2001),507-513]K. Ogawa, T. Shoji, H. Aoki, N. Fujita
272.Inspection of Metal Surface Containing Cracks by Small Antennas.[Review of Progress in Quantitative Evaluation,(20),(2001),338-345]K. Yagi, K. Tamakawa, D. Minkov, Y. Sato, T. Shoji
273.Determining the sizes of 3-D surface cracks using dipole model of a crack and Hall element measurements.[日本AEM学会誌,9(1),(2001),78-84]Dorian Minkov, Jinyi Lee, Tetsuo Shoji
274.Effects of Water Flow Rate in Fatigue Life of Carbon Steel in Simulated LWR Environment under low stain rate conditions.[ASME PVP,416(111),(2001)]A. Hirano, M. Yamamoto, K. Sakaguchi, T. Shoji and K. Iida
275.Nondestructive Evaluation of Fatigue and Creep-Fatigue Damage in 12%Cr Stainless Steel by the Induced Current Focusing Potential Drop Technique.[Journal of Testing and Materials,Nov.,(2001),544-555]M. Yamashita, S. Tada and T. Shoji
276.高効率ガスタ-ビン用Ni基超合金のクリ-プ条件下でのき裂形劣化挙動.[日本機械学会論文集(A編),67(654),(2001),280-287]駒崎慎一, 庄子哲雄, 千葉秀樹, 阿部宏紀
277.高温環境下における熱遮へいコ-ティング経年の非破壊評価.[非破壊検査,50(3),(2001),164-169]小川和洋, 庄子哲雄, 千葉秀樹, 阿部宏紀, 鳥越泰治
278.Non-destructive evaluation of fatigue and creep-fatigue damaged by means of the induced-current focused potential drop technique.[Fatigue Fract Engng Mater Struct,24,(2001),885-893]Y. Sato, Y. Takeda and T. Shoji
279.A Study on Development of Safety Monitoring System for Structure Using a Laser and 2-D Arrayed Photo Sensors.[Proc.of APCFS&ATEM'01 (Oct.20-22,Sendai,Japan 2001),(2001)]J-Y. Lee, M-P. Kang, M-S. Kim, D-J. Kim, W-H. Choe (Lacomm Co. Ltd., Korea)T. Shoji
280.Small Punch Creep Behavior of Service-Exposed SUS 316 HTB Superheater Boiler Tube.[Proc.of APCFS&ATEM'01 (Oct.20-22,Sendai,Japan 2001),(2001)]S. Komazaki (Muroran Inst. of Tech., Japan)M. L. Saucedo-Munoz (Instituto Politecnico Nacional, Mexico)T. Takahashi, T. Hashida, T. Shoji
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