• Chinese Journal of Ship Research
  • Vol. 19, Issue 6, 257 (2024)
Anyu LIU1,2, Bin LIU1, Jiajing LEI3, Kai QIN1, and Weiguo WU1
Author Affiliations
  • 1Green & Smart River-Sea-Going Ship, Cruise and Yacht Research Center, Wuhan University of Technology, Wuhan 430063, China
  • 2School of Naval Architecture, Ocean and Energy Power Engineering, Wuhan University of Technology, Wuhan 430063, China
  • 3China Ship Development and Design Center, Wuhan 430064, China
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    DOI: 10.19693/j.issn.1673-3185.03459 Cite this Article
    Anyu LIU, Bin LIU, Jiajing LEI, Kai QIN, Weiguo WU. Multi-scale analysis of marine carbon/glass hybrid composite top-hat stiffened panel structure for integrated design[J]. Chinese Journal of Ship Research, 2024, 19(6): 257 Copy Citation Text show less
    References

    [2] Y M MO, D Y GE, J F ZHOU. Experiment and analysis of hat-stringer-stiffened composite curved panels under axial compression. Composite Structures, 123, 150-160(2015).

    [4] P ROZYLO, H DEBSKI, P WYSMULSKI et al. Numerical and experimental failure analysis of thin-walled composite columns with a top-hat cross section under axial compression. Composite Structures, 204, 207-216(2018).

    [6] R S SIRAJUDEEN, P ALAGUSUNDARAMOORTHY. GFRP stiffened plate with square cutout under axial and out-of-plane load. Polymers, 13, 1185(2021).

    [8] J LU, E ARNAUD, A J SOBEY. Effective breadth for top-hat stiffened composite structures. Ocean Engineering, 196, 106841(2020).

    [11] D D CHEN, X Y SUN, S N XIAO et al. Investigation on flexural properties of intra-layer hybrid composite laminates reinforced with carbon and glass fibers. Fibers and Polymers, 24, 1119-1130(2023).

    [12] B LIU, W WANG, L SUTHERLAND. Experimental and numerical response and failure of laterally impacted carbon/glass fibre-reinforced hybrid composite laminates. International Journal of Impact Engineering, 179, 104654(2023).

    [16] Lloyd''s Register. Guidance notes f the classification of special service craft calculation procedures f composite construction[S]. London: Lloyd''s Register Group Limited, 2014.

    [17] Y PAN, L IORGA, A A PELEGRI. Numerical generation of a random chopped fiber composite RVE and its elastic properties. Composites Science and Technology, 68, 2792-2798(2008).

    [19] A A DELIWALA, K DUBEY, C S YERRAMALLI. Predicting the erosion rate of uni-directional glass fiber reinforced polymer composites using machine-learning algorithms. Journal of Tribology, 144, 091707(2022).

    [20] S L OMAIREY, P D DUNNING, S SRIRAMULA. Development of an ABAQUS plugin tool for periodic RVE homogenisation. Engineering with Computers, 35, 567-577(2019).

    [22] S K HA, K K JIN, Y C HUANG. Micro-mechanics of failure (MMF) for continuous fiber reinforced composites. Journal of Composite Materials, 42, 1873-1895(2008).

    [23] Y ZHOU, Z X LU, Z Y YANG. Progressive damage analysis and strength prediction of 2D plain weave composites. Composites Part B Engineering, 47, 220-229(2013).

    [26] Lloyd''s Register. Rules regulations f the classification of special service craft[S]. London: Lloyd''s Register Group Limited , 2020.

    [27] V T DOAN, B LIU, Y GARBATOV et al. Strength assessment of aluminium and steel stiffened panels with openings on longitudinal girders. Ocean Engineering, 200, 107047(2020).

    Anyu LIU, Bin LIU, Jiajing LEI, Kai QIN, Weiguo WU. Multi-scale analysis of marine carbon/glass hybrid composite top-hat stiffened panel structure for integrated design[J]. Chinese Journal of Ship Research, 2024, 19(6): 257
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