References
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- Ham, J.H. & Kim, U.N., 1997. The development of advanced buckling strength estimation system. Journal of the Society of Naval Architects of Korea, 34(3), pp.53-60.
- Ham, J.H., 2001. Strength evaluation of a doubler plate of ship structure subjected to the biaxial in-plane compression. Journal of the Society of Naval Architects of Korea, 38(1), pp.72-85.
- Ham, J.H., 2014. Development of slender doubler plate hybrid design system for ship structure subjected to longitudinal In-plane compression. Journal of Ocean Engineering and Technology, 28(1), pp.20-27. https://doi.org/10.5574/KSOE.2014.28.1.020
- Ham, J.H., 2016. Development of ship plate member design system reinforced by doubler plate subjected to biaxial In-plane compressive load. Journal of Ocean Engineering and Technology, 30(4), pp.294-302. https://doi.org/10.5574/KSOE.2016.30.4.294
- Ham, J.H., 2017. Development of doubler design system for ship plate members subjected to the in-plane shear and biaxial compressive loads. Journal of the Society of Naval Architects of Korea, 54(3), pp.242-249. https://doi.org/10.3744/SNAK.2017.54.3.242
- Korea Register of Shipping (KR), 1999. Internal Regulation of KR Inspection, Regulation of Inspection 30211, 3-2-12(Rev. 32. 37)-3-2-19.
- Lasdon, L.S. & Waren, A.D., 1978. Generalized reduced gradient software for linearly and nonlinearly constrained problems. in : Greenberg, H.J. (Ed.) Design and Implementation of Optimization Software, Sijthoff and Noordhoff: Holland.
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- Paik, J.K., Ham, J.H. & Ko, J.Y., 1992b. A new plate buckling design formula(2nd Report) - On the plasticity correction. Journal of the Society of Naval Architects of Japan, 172, pp.417-425.