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1
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85024727232
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The Construction and Characteristics of High Sensitive Vacuum Microbalance
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G. Okamoto and T. Shibata, “The Construction and Characteristics of High Sensitive Vacuum Microbalance”, DENKI KAGAKU, Vol. 32, pp. 293-296 (1964).
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Okamoto, G.1
Shibata, T.2
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2
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85024713955
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Oxygen Adsorption on Manganese Dioxide and its Effect on Activity
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H. Kobayashi and T. Shibata, “Oxygen Adsorption on Manganese Dioxide and its Effect on Activity”, SHOKUBAI, Vol. 4, No. 1, pp. 81-84 (1962).
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SHOKUBAI
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Kobayashi, H.1
Shibata, T.2
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5
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0000356693
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Desorption of Tritiated Bound-water from the Passive Film Formed on Stainless Steels
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G. Okamoto and T. Shibata, “Desorption of Tritiated Bound-water from the Passive Film Formed on Stainless Steels”, Nature, Vol. 206, pp. 1350 (1965).
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Okamoto, G.1
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85024735150
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Proc. Fundamental Aspects of Stress Corrosion Cracking
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R. W. Staehle
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Proc. Fundamental Aspects of Stress Corrosion Cracking, Ed. R. W. Staehle, NACE (1969).
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(1969)
NACE
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7
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2942520238
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Application of High Speed Elongation Technique to Stress Corrosion Cracking of Fe-Cr-Ni Alloys
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T. Shibata and R. W. Staehle, “Application of High Speed Elongation Technique to Stress Corrosion Cracking of Fe-Cr-Ni Alloys”, Proc. 5th ICMC, NACE, pp. 487-492 (1975).
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(1975)
Proc. 5th ICMC, NACE
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Shibata, T.1
Staehle, R.W.2
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8
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0345041912
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Dissolution and Film Formation of Fe-Cr-Ni Alloys in Boiling Magnesium Chloride Solution in Relation to Stress Corrosion Cracking
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T. Shibata and T. Takeyama, “Dissolution and Film Formation of Fe-Cr-Ni Alloys in Boiling Magnesium Chloride Solution in Relation to Stress Corrosion Cracking”, Boshoku Gijyutsu, Vol. 23, No. 8, pp. 379-383 (1974).
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Boshoku Gijyutsu
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Shibata, T.1
Takeyama, T.2
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9
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84914974597
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Rapid Straining Electrode Behavior of Iron and Nickel Base Alloys in High Temperature and High Pressure Aqueous Solutions
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S. Fujimoto and T. Shibata, “Rapid Straining Electrode Behavior of Iron and Nickel Base Alloys in High Temperature and High Pressure Aqueous Solutions”, Bulletin of Institute of Metals, Vol. 29, No. 3, pp. 132-140 (1990).
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Bulletin of Institute of Metals
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Fujimoto, S.1
Shibata, T.2
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0342698245
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Advance in Slow Strain Rate Technique (SSRT) for Evaluating Susceptibility of Stress Corrosion Cracking
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T. Haruna and T. Shibata, “Advance in Slow Strain Rate Technique (SSRT) for Evaluating Susceptibility of Stress Corrosion Cracking”, Materia Japan, Vol. 36, No. 4, pp. 311-316 (1997).
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Haruna, T.1
Shibata, T.2
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85024727183
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Application of the HSAB Rule to Stress Corrosion Cracking -Interaction of Passive Film and Stress Corrosion Cracking-
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T. Shibata, “Application of the HSAB Rule to Stress Corrosion Cracking -Interaction of Passive Film and Stress Corrosion Cracking-”, Proc. of JSMS Committee of Corrosion and Protection, No. 52, pp. 1-7 (2000).
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Proc. of JSMS Committee of Corrosion and Protection
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Shibata, T.1
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2442626934
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Straining Electrode
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T. Shibata, “Straining Electrode”, Boshoku Gijyutsu, Vol. 33, No. 10. pp. 603-605 (1984).
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Boshoku Gijyutsu
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Shibata, T.1
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14
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85024738477
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Mechanisms of Environmental Cracking in Systems Peculiar to the Power Generation Industry
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F. P. Ford, “Mechanisms of Environmental Cracking in Systems Peculiar to the Power Generation Industry”, NP-2589, EPRI, pp. 3-7 (1982).
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(1982)
NP-2589, EPRI
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Ford, F.P.1
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15
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0004388701
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The Stress-Corrosion Cracking of Austenitic Stainless Steels. Part 1-Mechanism of the Process in Hot Magnesium-Chloride Solutions
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th Meeting of International Committee for Electrochemical Thermodynamics and Kinetics (CITCE), London, Butterworths, pp. 273-291 (1956)
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th Meeting of International Committee for Electrochemical Thermodynamics and Kinetics (CITCE), London, Butterworths, pp. 273-291 (1956).
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Stress Corrosion Cracking
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R. N. Parkins, Applied Science Publishers
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F. P. Ford, “Stress Corrosion Cracking”, Corrosion Process, Ed. R. N. Parkins, Applied Science Publishers, pp. 271 (1982).
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Corrosion Process
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Ford, F.P.1
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17
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85024731510
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Limitations of the Slow Strain Rate Test for Stress Corrosion Cracking Testing
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J. A. Beavers and G. H. Koch, MTI publication
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“Limitations of the Slow Strain Rate Test for Stress Corrosion Cracking Testing”, Ed. J. A. Beavers and G. H. Koch, MTI publication No. 39 (1995).
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18
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85024745889
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Selected Papers of Prof. Hideo Kitagawa
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H. Kitagawa, “Selected Papers of Prof. Hideo Kitagawa”, p. 421 (983).
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Kitagawa, H.1
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0003524391
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Advances in Corrosion Science and Technology
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Plenum Press
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M. O. Speidel and M. V. Hyatt, “Advances in Corrosion Science and Technology”, Vol. 2, Plenum Press, p. 115 (1972).
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Speidel, M.O.1
Hyatt, M.V.2
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20
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0003788760
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The Theory of Stress Corrosion Cracking in Alloys
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J. C. Scully, NATO
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M. O. Speidel, “The Theory of Stress Corrosion Cracking in Alloys”, Ed. J. C. Scully, NATO, p. 289 (1971).
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Speidel, M.O.1
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21
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85024732293
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Prediction of Stress Corrosion Crack Growth in Service, Based on Laboratory Data
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R. H. Jones, TMS
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M. O. Speidel and R. Mgdowski, “Prediction of Stress Corrosion Crack Growth in Service, Based on Laboratory Data”, Proc. Chemistry and Electrochemistry of Corrosion and Stress Corrosion Cracking, Ed. R. H. Jones, TMS, pp. 181-192 (2001).
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Speidel, M.O.1
Mgdowski, R.2
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22
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3342924209
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Statistical and Probabilistic Nature of localized Corrosion and its Evaluation
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T. Shibata, “Statistical and Probabilistic Nature of localized Corrosion and its Evaluation”, Zairyo-to-Kankyo, Vol. 47, No. 12, pp. 742-749 (1998).
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Shibata, T.1
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Probability Distribution of Failure Timesof Stress Corrosion Cracking of 17Cr-11Ni Stainless Steel
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T. Shibata and T. Takeyama, “Probability Distribution of Failure Timesof Stress Corrosion Cracking of 17Cr-11Ni Stainless Steel”, Japan Institute of Iron and Steel, Vol. 66, No. 6, pp. 693-701 (1980).
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0043031211
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Stress Corrosion Cracking of Fe-Cr-Ni Alloy Systems
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J. C. Scully, ed., NATO Scientific Affairs Division, Brussels
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R. W. Staehle, “Stress Corrosion Cracking of Fe-Cr-Ni Alloy Systems”, Theory of Stress Corrosion Cracking, J. C. Scully, ed., NATO Scientific Affairs Division, Brussels, p. 222 (1971).
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28
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0347904730
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Lifetime Prediction of Materials in Environments
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Second Edition, Edited by R. W. Revie, John Wiley & Sons, INC
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