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Characteristic Evaluation according to Heat Treatment Conditions of Super Duplex Stainless Steel with Additive 0.2% N - Part 2: Fatigue Crack Propagation Behavior
Ahn Seok-Hwan,Kang Heung-Joo,Seo Hyun-Soo,Nam Ki-Woo,Lee Kun-Chan
J. Ocean Eng. Technol. 2009;23(5):79-84.
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A Study on the X-ray Diffraction Analysis and the Fatigue Crack Growth Behavior for the Gas Piping Material
임만배,윤한기,박원조
J. Ocean Eng. Technol. 2002;16(3):54-58.
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The Effects of 3.5% NaCl Aqueous Solution Temperature on the Corrosion Fatigue Fracture of Dual phase steel
오세욱,도영문,박수영,김재철,김광영
J. Ocean Eng. Technol. 1992;6(1):140-147.
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Evaluaton of Fatigue Crack Propagation Rate Using Parameter of Fatigue Strain Intensity Factor
박영철,오세욱,허정원,권혁동,김영광
J. Ocean Eng. Technol. 1991;5(2):76-84.
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A Study on the Effect of the Buliding Up by Welding on the Fatigue Fracture Behaviors for the Forged Steel
김영식,김종호,한명수,손병영
J. Ocean Eng. Technol. 1991;5(1):97-105.
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Study on the Improvement of Strength for 12% Chromium Steel Rotor
Jang Yun-Seok,O Se-Uk
J. Ocean Eng. Technol. 1989;3(2):125-137.
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Influence of pH in 3.5% NaCl aqueous solution on corrosion fatigue-fracture of dual phase steel
오세욱,안호민,도영문
J. Ocean Eng. Technol. 1987;1(2):123-129.
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