Mobile QR Code QR CODE : Journal of the Korean Society of Civil Engineers
1 
Ahn, W. C., Han, T. H., Lim, N. H. and Kang, Y. J. (2003). “Buckling behavior of corrugated steel pipe under external uniform pressure.” Journal of Korean Society of Steel Structures, Vol. 15, No. 1, pp. 33-40 (in Korean).Ahn, W. C., Han, T. H., Lim, N. H. and Kang, Y. J. (2003). “Buckling behavior of corrugated steel pipe under external uniform pressure.” Journal of Korean Society of Steel Structures, Vol. 15, No. 1, pp. 33-40 (in Korean).Google Search
2 
Han, T. H., Kim, T. Y., Han, K. H. and Kang, Y. J. (2007). “Elastic buckling characteristics of corrugated pipe made of orthotropic composite material.” Journal of the Korea institute for Structural Maintenance and Inspection, Vol. 11, No. 2, pp. 77-84 (in Korean).Han, T. H., Kim, T. Y., Han, K. H. and Kang, Y. J. (2007). “Elastic buckling characteristics of corrugated pipe made of orthotropic composite material.” Journal of the Korea institute for Structural Maintenance and Inspection, Vol. 11, No. 2, pp. 77-84 (in Korean).Google Search
3 
Han, T. H., Lim, N. H., Park, N. H. and Kang, Y. J. (2002). “Elastic shear buckling characteristics of circularly corrugated plates.” Journal of Korean Society of Steel Structures, Vol. 14, No. 4, pp. 529-538 (in Korean).Han, T. H., Lim, N. H., Park, N. H. and Kang, Y. J. (2002). “Elastic shear buckling characteristics of circularly corrugated plates.” Journal of Korean Society of Steel Structures, Vol. 14, No. 4, pp. 529-538 (in Korean).Google Search
4 
Ji, H. S. (2011). “Buckling behaviors of plate girder with corrugated steel web.” Journal of Korean Society of Steel Structures, Vol. 23, No. 2, pp. 221-228 (in Korean).Ji, H. S. (2011). “Buckling behaviors of plate girder with corrugated steel web.” Journal of Korean Society of Steel Structures, Vol. 23, No. 2, pp. 221-228 (in Korean).Google Search
5 
Moon, J. H., Yi, J. W., Choi, B. H. and Lee, H. E. (2007). “Evaluation of lateral-torsional buckling strength of I-girder with corrugated web under uniform bending.” Journal of Korean Society of Steel Structures, Vol. 19, No. 5, pp. 463-472 (in Korean).Moon, J. H., Yi, J. W., Choi, B. H. and Lee, H. E. (2007). “Evaluation of lateral-torsional buckling strength of I-girder with corrugated web under uniform bending.” Journal of Korean Society of Steel Structures, Vol. 19, No. 5, pp. 463-472 (in Korean).Google Search
6 
Kim, S., Jeon, J. S., Won, D. H. and Kang, Y. J. (2012). “Torsional and warping constants of I-shaped plate girders with a sine corrugated web.” Journal of Korean Society of Civil Engineers, Vol. 32, No. 6, pp. 347-354 (in Korean).Kim, S., Jeon, J. S., Won, D. H. and Kang, Y. J. (2012). “Torsional and warping constants of I-shaped plate girders with a sine corrugated web.” Journal of Korean Society of Civil Engineers, Vol. 32, No. 6, pp. 347-354 (in Korean).Google Search
7 
ABAQUS (2010). Abaqus analysis user’s manual version 6.10, Dassault Systemes Simulia Corp. ABAQUS (2010). Abaqus analysis user’s manual version 6.10, Dassault Systemes Simulia Corp.Google Search
8 
Abbas, H. H., Sause, R. and Driver, R. G. (2006). “Behavior of corrugated web I-girders under in-plane loading.” Journal of Engineering Mechanics, ASCE, Vol. 132, No. 8, pp. 806-814.10.1061/(ASCE)0733-9399(2006)132:8(806)Abbas, H. H., Sause, R. and Driver, R. G. (2006). “Behavior of corrugated web I-girders under in-plane loading.” Journal of Engineering Mechanics, ASCE, Vol. 132, No. 8, pp. 806-814.DOI
9 
Abbas, H. H., Sause, R. and Driver, R. G. (2007). “Analysis of flange transverse bending of corrugated web I-girders under in-plane loads.” Journal of Structural Engineering, ASCE, Vol. 133, No. 3, pp. 347-355.10.1061/(ASCE)0733-9445(2007)133:3(347)Abbas, H. H., Sause, R. and Driver, R. G. (2007). “Analysis of flange transverse bending of corrugated web I-girders under in-plane loads.” Journal of Structural Engineering, ASCE, Vol. 133, No. 3, pp. 347-355.DOI
10 
Elgaaly, M., Seshadri, A. and Hamilton, R. W. (1997). “Bending strength of steel beams with corrugated webs.” Journal of Structural Engineering, ASCE, Vol. 123, No. 6, pp. 772-782.10.1061/(ASCE)0733-9445(1997)123:6(772)Elgaaly, M., Seshadri, A. and Hamilton, R. W. (1997). “Bending strength of steel beams with corrugated webs.” Journal of Structural Engineering, ASCE, Vol. 123, No. 6, pp. 772-782.DOI
11 
Kang, Y. J. (1992). Nonlinear theory of thin walled curved beams and finite element formulation, PhD Dissertation, Auburn University, Auburn, AL, USA.Kang, Y. J. (1992). Nonlinear theory of thin walled curved beams and finite element formulation, PhD Dissertation, Auburn University, Auburn, AL, USA.Google Search
12 
Kang, Y. J., Sung, I. H., Lee, S. S. and Gil, H. B. (1996). “Lateral buckling strength of horizontally curved I-girder.” Proceedings of 4th Japan-Korea Joint Seminar on Steel Bridges, Osaka, Japan, pp. 387-395.Kang, Y. J., Sung, I. H., Lee, S. S. and Gil, H. B. (1996). “Lateral buckling strength of horizontally curved I-girder.” Proceedings of 4th Japan-Korea Joint Seminar on Steel Bridges, Osaka, Japan, pp. 387-395.Google Search
13 
Kang, Y. J. and Yoo, C. H. (1994a). “Thin-walled curved beams. I: Formulation of nonlinear equations.” Journal of Engineering Mechanics Division, ASCE, Vol. 120, No. 10, pp. 2072-2101.10.1061/(ASCE)0733-9399(1994)120:10(2072)Kang, Y. J. and Yoo, C. H. (1994a). “Thin-walled curved beams. I: Formulation of nonlinear equations.” Journal of Engineering Mechanics Division, ASCE, Vol. 120, No. 10, pp. 2072-2101.DOI
14 
Kang, Y. J. and Yoo, C. H. (1994b). “Thin-walled curved beams. II: Analytical solutions for buckling of arches.” Journal of Engineering Mechanics Division, ASCE, Vol. 120, No. 10, pp. 2102-2125.10.1061/(ASCE)0733-9399(1994)120:10(2102)Kang, Y. J. and Yoo, C. H. (1994b). “Thin-walled curved beams. II: Analytical solutions for buckling of arches.” Journal of Engineering Mechanics Division, ASCE, Vol. 120, No. 10, pp. 2102-2125.DOI
15 
Lindner, J. (1990). “Lateral torsional buckling of beams with trapezoidally corrugated webs.” Stability of Steel Structures, Budapest, Hungary, pp. 305-310.Lindner, J. (1990). “Lateral torsional buckling of beams with trapezoidally corrugated webs.” Stability of Steel Structures, Budapest, Hungary, pp. 305-310.Google Search
16 
Nakai, H. and Yoo, C. H. (1988). Analysis and design of curved steel bridges, McGraw-Hill, New York, USA.Nakai, H. and Yoo, C. H. (1988). Analysis and design of curved steel bridges, McGraw-Hill, New York, USA.Google Search
17 
Pi, Y. L. and Bradford, M. A. (2000). “Inelastic analysis and behavior of steel I-beams curved in plan.” Journal of Structural Engineering Division, ASCE, Vol. 126, No. 7, pp. 772-779.10.1061/(ASCE)0733-9445(2000)126:7(772)Pi, Y. L. and Bradford, M. A. (2000). “Inelastic analysis and behavior of steel I-beams curved in plan.” Journal of Structural Engineering Division, ASCE, Vol. 126, No. 7, pp. 772-779.DOI
18 
Sayed-Ahmed, E. Y. (2004). “Lateral torsion-flexure buckling of corrugated web steel girders.” Proceedings of the ICE - Structures and Buildings, 158(1), pp. 53-69.10.1680/stbu.2005.158.1.53Sayed-Ahmed, E. Y. (2004). “Lateral torsion-flexure buckling of corrugated web steel girders.” Proceedings of the ICE - Structures and Buildings, 158(1), pp. 53-69.DOI
19 
Yoo, C. H., Kang, Y. J. and Davidson, J. S. (1996). “Buckling analysis of curved beams by finite element discretization.” Journal of Engineering Mechanics Division, ASCE, Vol. 122, No. 8, pp. 762-770.10.1061/(ASCE)0733-9399(1996)122:8(762)Yoo, C. H., Kang, Y. J. and Davidson, J. S. (1996). “Buckling analysis of curved beams by finite element discretization.” Journal of Engineering Mechanics Division, ASCE, Vol. 122, No. 8, pp. 762-770.DOI