PSI - Issue 57

Cheng Huang et al. / Procedia Structural Integrity 57 (2024) 42–52 Cheng Huang et al./ Structural Integrity Procedia 00 (2023) 000 – 000

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Chen, T., Huang, C., 2019a. Fatigue tests on edge cracked four-point bend steel specimens repaired by CFRP. Composite Structures 219, 31–41. Chen, T., Huang, C., Hu, L., Song, X. 2019b. Experimental study on mixed-mode fatigue behavior of center cracked steel plates repaired with CFRP materials. Thin-Walled Structures 135, 486–493. Chen, T., Yao, C., Hu, L., Huang, C., Li, X. 2019c. Numerical analysis of central mixed-mode cracking in steel plates repaired with CFRP materials. Thin-Walled Structures 143, 106196. Dirisu, P., Supriyo, G., Martina, F., Xu, X., Williams, S., 2020. Wire plus arc additive manufactured functional steel surfaces enhanced by rolling. Int J Fatigue 130, 105237. Gardne r , L., 2022. Metal additive manufacturing in structural engineering – review, advances, opportunities and outlook. Structures 47, 2178–93. Geomagic Wrap 2017-3D Systems (Version 2017.0.2:64) [Software] Incorporated and its Licensors, 2017. Hobbacher, A., 2016. Recommendations for fatigue design of welded joints and components (IIW Collection). Institute of Cham: Springer International Publishing. Huang, C., Chen, T., Feng, S., 2019. Finite element analysis of fatigue crack growth in CFRP-repaired four-point bend specimens. Engineering Structures 183, 398–407. Huang, C., Kyvelou, P., Zhang, R., Britton, T.B., Gardner, L., 2022a. Mechanical testing and microstructural analysis of wire arc additively manufactured steels. Materials & Design 216, 110544. Huang, C., Meng, X., Gardner, L., 2022b. Cross-sectional behaviour of wire arc additively manufactured tubular beams. Engineering Structures 272, 114922. Huang, C., Meng, X., Buchanan, C., Gardner, L. 2022c. Flexural buckling of wire arc additively manufactured tubular columns. Journal of Structural Engineering 148, 04022139. Huang, C., Chen, T., Xia, Z., Jiang, L., 2022d. Numerical study of surface fatigue crack growth in steel plates repaired with CFRP. Engineering Structures 268, 114743. Huang C., Kyvelou P., Gardner L., 2023a. Stress-strain curves for wire arc additively manufactured steels. Engineering Structures 279, 115628. Huang, C., Zheng, Y., Chen, T., Ghafoori, E., Gardner, L., 2023b. Fatigue crack growth behaviour of wire arc additively manufactured steels. International Journal of Fatigue 173, 107705. Huang, C., Li, L., Pichler, N., Ghafoori, E., Susmel, L., Gardner, L., 2023c. Fatigue testing and analysis of steel plates manufactured by wire-arc directed energy deposition. Additive Manufacturing 73, 103696. Kyvelou, P., Huang, C., Gardner, L., Buchanan, C., 2021. Structural testing and design of wire arc additively manufactured square hollow sections. Journal of Structural Engineering 147(12), 04021218. Rhino 3D (Version 7) [Software] Robert McNeel & Associates, 2020. Sonsino CM. 2007. Course of SN-curves especially in the high-cycle fatigue regime with regard to component design and safety. International Journal of Fatigue 29, 2246–58. Susmel, L., Tovo, R., 2004. On the use of nominal stresses to predict the fatigue strength of welded joints under biaxial cyclic loading. Fatigue & Fracture of Engineering Materials & Structures 27,1005–24. Zong, L., Fang, W., Huang, C., Wang, Z., Gardner, L., 2023. Low cycle fatigue behaviour of wire arc additively manufactured ER70S-6 steel. International Journal of Fatigue 176, 107910.

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