Multiscale Analysis of Sandwich Beams with Polyurethane Foam Core: A Comparative Study of Finite Element Methods and Radial Point Interpolation Method

被引:0
|
作者
Belinha, Jorge [1 ,2 ]
机构
[1] Polytech Porto, Dept Mech Engn, ISEP, Rua Dr Antonio Bernardino Almeida,n 431, P-4200072 Porto, Portugal
[2] Inst Sci & Innovat Mech & Ind Engn INEGI, Rua Dr Roberto Frias, P-4200465 Porto, Portugal
关键词
meshless methods; radial point interpolation method; homogenisation; multiscale; sandwich structures; 3-DIMENSIONAL ELASTICITY SOLUTION; GRADED CORE; MESHLESS; PANELS; COMPOSITES; SOLIDS; PLATES;
D O I
10.3390/ma17184466
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
This study presents a comprehensive multiscale analysis of sandwich beams with a polyurethane foam (PUF) core, delivering a numerical comparison between finite element methods (FEMs) and a meshless method: the radial point interpolation method (RPIM). This work aims to combine RPIM with homogenisation techniques for multiscale analysis, being divided in two phases. In the first phase, bulk PUF material was modified by incorporating circular holes to create PUFs with varying volume fractions. Then, using a homogenisation technique coupled with FEM and four versions of RPIM, the homogenised mechanical properties of distinct PUF with different volume fractions were determined. It was observed that RPIM formulations, with higher-order integration schemes, are capable of approximating the solution and field smoothness of high-order FEM formulations. However, seeking a comparable field smoothness represents prohibitive computational costs for RPIM formulations. In a second phase, the obtained homogenised mechanical properties were applied to large-scale sandwich beam problems with homogeneous and approximately functionally graded cores, showing RPIM's capability to closely approximate FEM results. The analysis of stress distributions along the thickness of the beam highlighted RPIM's tendency to yield lower stress values near domain edges, albeit with convergence towards agreement among different formulations. It was found that RPIM formulations with lower nodal connectivity are very efficient, balancing computational cost and accuracy. Overall, this study shows RPIM's viability as an alternative to FEM for addressing practical elasticity applications.
引用
收藏
页数:40
相关论文
共 50 条
  • [11] Numerical Analysis of Static Behavior in a Three-point Bending Test of Aluminum Foam Sandwich Beams using the Extended Finite Element Method
    Hahn, Youngwon
    Cheon, Seong Sik
    SAE INTERNATIONAL JOURNAL OF AEROSPACE, 2010, 2 (01): : 176 - 180
  • [12] Finite Element Free Vibration Analysis of Soft-Core Sandwich Beams
    Long, R.
    Barry, O.
    Oguamanam, D. C. D.
    AIAA JOURNAL, 2012, 50 (01) : 235 - 238
  • [13] A Comparative Study of Mesh-Free Radial Point Interpolation Method and Moving Least Squares Method-Based Error Estimation in Elastic Finite Element Analysis
    Ahmed, Mohd
    ARABIAN JOURNAL FOR SCIENCE AND ENGINEERING, 2020, 45 (05) : 3541 - 3557
  • [14] A Comparative Study of Mesh-Free Radial Point Interpolation Method and Moving Least Squares Method-Based Error Estimation in Elastic Finite Element Analysis
    Mohd. Ahmed
    Arabian Journal for Science and Engineering, 2020, 45 : 3541 - 3557
  • [15] Buckling analysis of laminated composite and sandwich beams by the finite element method
    Kahya, Volkan
    COMPOSITES PART B-ENGINEERING, 2016, 91 : 126 - 134
  • [16] Analysis of laminated beams using the natural neighbour radial point interpolation method
    Moreira, S.
    Belinha, J.
    Dinis, L. M. J. S.
    Natal Jorge, R. M.
    REVISTA INTERNACIONAL DE METODOS NUMERICOS PARA CALCULO Y DISENO EN INGENIERIA, 2014, 30 (02): : 108 - 120
  • [17] Accurate thermomechanical analysis of sandwich beams with nonhomogeneous core by quadrature element method
    Deng, Jian
    Zhou, Guangming
    Wang, Xinwei
    THIN-WALLED STRUCTURES, 2022, 179
  • [18] Dynamic analysis of sandwich conical shell with magneto/electro rheological core using a truly meshfree radial point interpolation method
    He, Hua
    Chen, Xingqiang
    Liu, Chunjing
    Jiang, Fan
    MECHANICS OF ADVANCED MATERIALS AND STRUCTURES, 2024, 31 (26) : 8004 - 8017
  • [19] Magnetotelluric two-dimensional forward by finite element-radial point interpolation method
    Li, Jun-Jie
    Yan, Jia-Bin
    Zhongguo Youse Jinshu Xuebao/Chinese Journal of Nonferrous Metals, 2015, 25 (05): : 1314 - 1324
  • [20] A comparative study of bearing radial stiffness with the analytical method and the finite element method
    Li, J.
    Tian, Y. S.
    Zhang, H. L.
    Gao, Q.
    Tan, C. Q.
    ENERGY SCIENCE AND APPLIED TECHNOLOGY (ESAT 2016), 2016, : 375 - 379