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SUN Ling-yu, CHEN Wei-wei, FENG Jiang-bo. Failure mode prediction of sandwich plate under bending loads[J]. JOURNAL OF BEIJING INSTITUTE OF TECHNOLOGY, 2011, 20(2): 272-279.
Citation: SUN Ling-yu, CHEN Wei-wei, FENG Jiang-bo. Failure mode prediction of sandwich plate under bending loads[J].JOURNAL OF BEIJING INSTITUTE OF TECHNOLOGY, 2011, 20(2): 272-279.

Failure mode prediction of sandwich plate under bending loads

  • Received Date:2010-05-23
  • To understand the relationship between the collapse mechanisms and geometry parameters of sandwich plate with two aluminum alloy faces and one polyurethane foam core, samples subjected to three-point bending loads were studied through simulation, test and analytic methods. Based on published papers, the dimensionless values of limit loads for different failure modes were modified according to real test condition. The load-deformation relation from the analytical formulae was compared with that from experimental and numerical results. A mechanism map was provided to reveal the dependence of the dominant collapse mechanism upon the geometry parameters of the face and the core. The results show that the prediction accuracy was high only if the face thickness was much smaller than the core thickness.
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  • [1]
    Mohan K, Hon Y T, Idapalapati S, et al. Failure of sandwich beams consisting of alumina face sheet and aluminum foam core in bending[J]. Materials Science and Engineering A, 2005, 409(1-2):292-301.
    [2]
    Tagarielli V L, Fleck N A. A comparison of the structural response of clamped and simply supported sandwich beams with aluminum faces and a metal foam core [J]. Journal of Applied Mechanics, Transactions of the ASME, 2005, 72(3):408-417.
    [3]
    Steeves C A, Fleck N A. Collapse mechanisms of sandwich beams with composite faces and a foam core, loaded in three-point bending. Part I: analytical models and minimum weight design [J]. International Journal of Mechanical Sciences. 2004, 46(4): 561-583.
    [4]
    Steeves C A, Fleck N A. Collapse mechanisms of sandwich beams with composite faces and a foam core, loaded in three-point bending. Part II: experimental investigation and numerical modelling [J]. International Journal of Mechanical Sciences, 2004, 46(4): 585-608.
    [5]
    Ramtekkar G S, Desai Y M, Shah A H. Application of a three-dimensional mixed finite element model to the flexure of sandwich plate[J]. Computers and Structures, 2003, 81(22-23): 2183-2198.
    [6]
    Chen C, Harte A M, Fleck N A. The plastic collapse of sandwich beams with a metallic foam core[J]. International Journal of Mechanical Science, 2001, 43(6): 1483-1506.
    [7]
    Crupi V, Montanimi R. Aluminium foam sandwiches collapse modes under static and dynamic three-point bending[J]. International Journal of Impact Engineering, 2007, 34(3): 509-521.
    [8]
    Bart-Smith H, Hutchinson J W, Evans A G. Measurement and analysis of the structural performance of cellular metal sandwich construction[J]. International Journal of Mechanical Science, 2001, 43(8): 1945-1963.
    [9]
    McCormack T M, Miller R, Kesler O, et al. Failure of sandwich beams with metallic foam cores[J]. International Journal of Solids and Structures, 2001, 38(28-29):4901-4920.
    [10]
    Standardization Administration of the Peoples Republic of China. GB/T 1456-2005 Test method for flexural properties of sandwich constructions[S]. Beijing: Standards Press of China, 2005. (in Chinese)
    [11]
    Matweb. The online materials information resource . . http://www.matweb.com/search/QuickText.aspx.
    [12]
    Mackerle J. Finite element analyses of sandwich structures: a bibliography (1980-2001) [J].Engineering Computations, 2002, 19(1/2): 206-245.
    [13]
    Chang F S, Song Y, Lu S X, et al. Unified constitutive equation of foam materials[J]. Journal of Engineering Materials and Technology, 1998,120(3): 212-217.
    [14]
    Deshpande V S, Fleck N A. Isotropic constitutive models for metallic foams [J]. Journal of the Mechanics and Physics of Solids, 2000, 48(6/7):1253-1283.
    [15]
    Bahei-El-Din Y A, Dvorak G J. Enhancement of blast resistance of sandwich plates[J]. Composites: Part B, 2008, 39(1):120-127.
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