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Fatigue Crack Growth Properties of Friction Stir Welded Dissimilar Aluminum Alloys
Won-Jun Lee, Hyo-Jae Lee, Hyung-Jin Kim, Won-Jo Park
J. Ocean Eng. Technol. 2013;27(1):37-42.   Published online February 28, 2013
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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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Characteristics of Fatigue Crack Growth for Camshaft Material Applied to High Frequence Induction Treatment
Lee Hyun-Jun,Park Sung-Ho,Park Won-Jo
J. Ocean Eng. Technol. 2009;23(3):46-52.
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Fatigue Crack Growth Behavior of the Thin-to-Thick Type Stiffened Panels with Bonded Patch
Rhee Hwan-Woo,Kim Seung-Hyun
J. Ocean Eng. Technol. 2008;22(3):89-95.
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Effect of Shot-peening on Fatigue Crack Growth
SHIM DONG-SUK;LEE SEUNG-HO;LEE MYUNG-HO;
J. Ocean Eng. Technol. 2004;18(6):91-95.
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Effect of Stress Ratio on Fatigue Fracture of a Shot Peening Marine Structural Steel
PARK KYOUNG-DONG,JIN YOUNG-BEOM,PARK HYOUNG-DONG
J. Ocean Eng. Technol. 2004;18(5):43-49.
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Analysis of fatigue Crack Growth Behavior in the Integrally Stiffened Panels Subjected to Single Overload
이환우,서정호
J. Ocean Eng. Technol. 2004;18(1):28-34.
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A Study on the Fatigue Crack Propagation Characteristics for SUP9 Steel at Low Temperature
박경동,박상오
J. Ocean Eng. Technol. 2002;16(5):80-87.
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