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Articles

Analysis of shear buckling for sinusoidal corrugated web beam

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Pages 6863-6880 | Received 02 Nov 2021, Accepted 02 May 2022, Published online: 20 May 2022

References

  • Abejide, K., J. M. Kaura, A. Lawan, and O. S. Abejide. 2019. Reliability analysis of rolled steel beams in offshore platforms. Reliability Engineering and Resilience 2:33–45. doi:10.22115/RER.2020.184809.1011.
  • Aggarwal, K., S. Wu, and J. Papangelis. 2018. Finite element analysis of local shear buckling in corrugated web beams. Engineering Structures 162 (2017):37–50. doi:10.1016/j.engstruct.2018.01.016.
  • Barakat, S., A. A. Mansouri, and S. Altoubat. 2015. Shear strength of steel beams with trapezoidal corrugated webs using regression analysis. Steel and Composite Structures 18 (3):757–73. doi:10.12989/scs.2015.18.3.757.
  • Corrugated, S. W. Girder, and M. W. Design. 2017. Characteristics of cross-section of sinusoidal corrugated web girder
  • Dastjerdi, S., and M. Abbasi. 2019. A vibration analysis of a cracked micro-cantilever in an atomic force microscope by using transfer matrix method. Ultramicroscopy 196:33–9. doi:10.1016/j.ultramic.2018.09.014.
  • Elamary, A. S., and I. B. M. Taha. 2021. Determining the shear capacity of steel beams with corrugated webs by using optimised regression learner techniques. Materials 14 (9):2364. doi:10.3390/ma14092364.
  • Guo, T., and R. Sause. 2014. Analysis of local elastic shear buckling of trapezoidal corrugated steel webs. Journal of Constructional Steel Research 102:59–71. doi:10.1016/j.jcsr.2014.06.006.
  • Hassanein, M. F., and O. F. Kharoob. 2013. Behavior of bridge girders with corrugated webs: (I) Real boundary condition at the juncture of the web and flanges. Engineering Structures 57:554–64. doi:10.1016/j.engstruct.2013.03.004.
  • Hosseini, S. A., M. Zeinoddini, and A. S. Darian. 2014. Modelling of I-shaped beam-to-tubular column connection subjected to post-fire conditions. International Journal of Steel Structures 14 (3):513–28. doi:10.1007/s13296-014-3008-7.
  • Jang, J.-W., Z. Han, and D. Oh. 2019. Light-weight optimum design of laminate structures of a GFRP fishing vessel. Journal of Ocean Engineering and Technology 33 (6):495–503. doi:10.26748/KSOE.2019.105.
  • Jiao, P., W. Borchani, S. Soleimani, and B. McGraw. 2017. Lateral-torsional buckling analysis of wood composite I-beams with sinusoidal corrugated web. Thin-Walled Structures 119 (May):72–82. doi:10.1016/j.tws.2017.05.025.
  • Joe, H., and S.-C. Yu. 2018. Study on mobile wave energy harvesting system utilizing wave glider mechanism. Journal of Ocean Engineering and Technology 32 (5):393–401. doi:10.26748/KSOE.2018.6.32.5.393.
  • Ki, M. S., B. J. Park, K. Lee, B. Park, K. Fernandez, and I. S. Nho. 2021. An Experimental study on the H-beam under fire load in open space. Journal of Ocean Engineering and Technology 35 (1):59–74. doi:10.26748/KSOE.2020.056.
  • Kim, H.-S., H.-S. Kim, B. Park, and K. Lee. 2020. 3D Topology optimization of fixed offshore structure and experimental validation. Journal of Ocean Engineering and Technology 34 (4):263–71. doi:10.26748/KSOE.2019.052.
  • Leblouba, M., M. T. Junaid, S. Barakat, S. Altoubat, and M. Maalej. 2017. Shear buckling and stress distribution in trapezoidal web corrugated steel beams. Thin-Walled Structures 113 (December 2016):13–26. doi:10.1016/j.tws.2017.01.002.
  • Leblouba, M., and S. W. Tabsh. 2020. Reliability-based shear design of corrugated web steel beams for AISC 360 specification and CSA-S16 standard. Engineering Structures 215 (February):110617. doi:10.1016/j.engstruct.2020.110617.
  • Lee, S. H., G. W. Park, and J. H. Yoo. 2020. Analytical study of shear buckling behavior of trapezoidal and sinusoidal corrugated web girders. International Journal of Steel Structures 20 (2):525–37. doi:10.1007/s13296-019-00302-7.
  • Li, G. Q., J. Jiang, and Q. Zhu. 2015. Local buckling of compression flanges of H-beams with corrugated webs. Journal of Constructional Steel Research 112:69–79. doi:10.1016/j.jcsr.2015.04.014.
  • Li, Y., W. Zhang, Q. Zhou, X. Qi, and G. E. O. Widera. 2000. Buckling strength analysis of the web of a WCW H-beam: Part 2. Development and research on H-beams with wholly corrugated webs (WCW). Journal of Materials Processing Technology 101 (1-3):115–8. doi:10.1016/S0924-0136(00)00463-5.
  • Malikan, M. 2018. Buckling analysis of a micro composite plate with nano coating based on the modified couple stress theory. Journal of Applied and Computational Mechanics 4 (1):1–15. doi:10.22055/jacm.2017.21820.1117.
  • Malikan, M. 2019. On the buckling response of axially pressurized nanotubes based on a novel nonlocal beam theory. Journal of Applied and Computational Mechanics 5 (1):103–12. doi:10.22055/JACM.2018.25507.1274.
  • Malikan, M., R. Dimitri, and F. Tornabene. 2018. Effect of Sinusoidal Corrugated Geometries on the Vibrational Response of Viscoelastic Nanoplates. Applied Sciences 8 (9):1432. doi:10.3390/app8091432.
  • Malikan, M., V. B. Nguyen, R. Dimitri, and F. Tornabene. 2019. Dynamic modeling of non-cylindrical curved viscoelastic single-walled carbon nanotubes based on the second gradient theory. Materials Research Express 6 (7):075041. doi:10.1088/2053-1591/ab15ff.
  • Papangelis, J., N. Trahair, and G. Hancock. 2017. Direct strength method for shear capacity of beams with corrugated webs. Journal of Constructional Steel Research 137 (June):152–60. doi:10.1016/j.jcsr.2017.06.007.
  • Pasternak, H., and D. Hannebauer. 2004. Träger mit profilierten Stegen. Stahlbau-Kalender 2004 (October):449–92.
  • Savin, A. V., E. A. Korznikova, and S. V. Dmitriev. 2019a. Dynamics of surface graphene ripplocations on a flat graphite substrate. Physical Review B 99 (23):1–13. doi:10.1103/PhysRevB.99.235411.
  • Savin, A. V., E. A. Korznikova, and S. V. Dmitriev. 2019b. Improving bending rigidity of graphene nanoribbons by twisting. Mechanics of Materials 137:103123. doi:10.1016/j.mechmat.2019.103123.
  • Seth, D., B. Manna, P. Kumar, J. T. Shahu, T. Fazeres-Ferradosa, F. Taveira-Pinto, P. Rosa-Santos, and H. Carvalho. 2021. Uplift and lateral buckling failure mechanisms of offshore pipes buried in normally consolidated clay. Engineering Failure Analysis 121:105161. doi:10.1016/j.engfailanal.2020.105161.
  • Shon, S., S. Jin, and S. Lee. 2017. Minimum weight design of sinusoidal corrugated web beam using real-coded genetic algorithms. Mathematical Problems in Engineering 2017:1–13. doi:10.1155/2017/9184292.
  • Shon, S. D., and S. J. Lee. 2011. Optimum structural design of sinusoidal corrugated web beam using Real-valued Genetic Algorithm. Journal of Korean Society of Steel Construction 23 (5):581–93.
  • Shon, S-d., M. Yoo, S. Lee, and J. Kang. 2014. An investigation of the shear buckling characteristics of sinusoidal corrugated steel plates. Journal of the Korea Institute for Structural Maintenance and Inspection 18 (3):10–9. doi:10.11112/jksmi.2014.18.3.010.
  • Śledziewski, K., and M. Górecki. 2020. Finite element analysis of the stability of a sinusoidal web in steel and composite steel-concrete girders. Materials 13 (5):1041. doi:10.3390/ma13051041.
  • Standard, E. 2003. FINAL DRAFT prEN 1993-1-1. Design
  • Stn, E. 1993. 1–1: Eurocode 3: Design of steel structures. 1–53. http://scholar.google.com/scholar?hl=en&btnG=Search&q=intitle: Eurocode+3:+design+of+steel+structures#6
  • Wu, L. L., L. P. An, and Y. Bai. 2020. In-plane stability of steel circular closed supports with I-section of sinusoidal corrugated webs: Experimental and numerical study. Tunnelling and Underground Space Technology 106 (September):103566. doi:10.1016/j.tust.2020.103566.

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