Improved coupling of finite element method with material point method based on a particle-to-surface contact algorithm

被引:49
|
作者
Chen, Z. P. [1 ]
Qiu, X. M. [1 ]
Zhang, X. [1 ]
Lian, Y. P. [2 ]
机构
[1] Tsinghua Univ, Sch Aerosp Engn, Beijing 100084, Peoples R China
[2] Northwestern Univ, Dept Mech Engn, Evanston, IL 60208 USA
基金
中国国家自然科学基金;
关键词
Material point method; Coupled finite element material point method; Adaptive finite element material point method; Impact; Penetration; HYPERVELOCITY IMPACT; ALUMINUM FOAM; SIMULATION; MODEL; MPM; FRAGMENTATION; SPH; DEFORMATION;
D O I
10.1016/j.cma.2015.04.005
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
For extreme deformation problems, material point method (MPM) takes competitive advantages compared with finite element method (FEM) which often encounters mesh distortion. However, for small deformation problems, FEM is still more efficient and accurate than MPM in most cases. Hence, a coupled finite element material point (CFEMP) method and an adaptive finite element material point method (AFEMP) have been proposed by our group to take advantages of both methods. Because the coupling between MPM particles and FEM elements was implemented based on the MPM grid-based contact method, both CFEMP and AFEMP demand a high degree of consistence of meshing between FEM domain and MPM domain. This may lead to over meshing in FEM domain, thus significantly decreases the time step size and increases computational cost as well as data storage. In order to allow arbitrary inconsistent meshing, the CFEMP and AFEMP methods are further improved in this article. The coupling between the MPM particles and FEM elements is implemented based on a particle-to-surface contact algorithm rather than the MPM grid-based contact method, so that the consistent meshing is no more needed. Thus, the meshing of FEM body can be much coarser than the MPM grid. Numerical studies illustrate that the robustness, efficiency and accuracy of the improved CFEMP (ICFEMP) method and the improved AFEMP (IAFEMP) method are much higher than MPM, CFEMP and AFEMP. (C) 2015 Elsevier B.V. All rights reserved.
引用
收藏
页码:1 / 19
页数:19
相关论文
共 50 条
  • [21] An improved contact algorithm for the material point method and application to stress propagation in granular material
    Bardenhagen, SG
    Guilkey, JE
    Roessig, KM
    Brackbill, JU
    Witzel, WM
    Foster, JC
    CMES-COMPUTER MODELING IN ENGINEERING & SCIENCES, 2001, 2 (04): : 509 - 522
  • [22] Beam elements with frictional contact in the material point method
    Kang, Jingu
    Homel, Michael A.
    Herbold, Eric B.
    INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING, 2022, 123 (04) : 1013 - 1035
  • [23] An improved continuum-based finite-discrete element method with intra-element fracturing algorithm
    Wang, Min
    Gao, Ke
    Feng, Y. T.
    COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING, 2021, 384
  • [24] Generalized contact and improved frictional heating in the material point method
    J. A. Nairn
    S. G. Bardenhagen
    G. D. Smith
    Computational Particle Mechanics, 2018, 5 : 285 - 296
  • [25] Improved decohesion modeling with the material point method for simulating crack evolution
    Yang, Pengfei
    Gan, Yong
    Zhang, Xiong
    Chen, Zhen
    Qi, Wanjun
    Liu, Ping
    INTERNATIONAL JOURNAL OF FRACTURE, 2014, 186 (1-2) : 177 - 184
  • [26] A smooth contact algorithm for the combined finite discrete element method
    Lei, Zhou
    Rougier, Esteban
    Euser, Bryan
    Munjiza, Antonio
    COMPUTATIONAL PARTICLE MECHANICS, 2020, 7 (05) : 807 - 821
  • [27] A new contact algorithm in the material point method for geotechnical simulations
    Ma, J.
    Wang, D.
    Randolph, M. F.
    INTERNATIONAL JOURNAL FOR NUMERICAL AND ANALYTICAL METHODS IN GEOMECHANICS, 2014, 38 (11) : 1197 - 1210
  • [28] An Effective Improved Algorithm for Finite Particle Method
    Yang, Yang
    Xu, Fei
    Zhang, Meng
    Wang, Lu
    INTERNATIONAL JOURNAL OF COMPUTATIONAL METHODS, 2016, 13 (04)
  • [29] Fluid-Solid Coupling Surface Detail Optimization Algorithm Based on Material Point Method
    Xu L.
    Wang J.
    Yuan H.
    Tao J.
    Tang Y.
    Zhao J.
    Jisuanji Fuzhu Sheji Yu Tuxingxue Xuebao/Journal of Computer-Aided Design and Computer Graphics, 2024, 36 (02): : 303 - 312
  • [30] A partitioned material point method and discrete element method coupling scheme
    Veronika Singer
    Klaus B. Sautter
    Antonia Larese
    Roland Wüchner
    Kai-Uwe Bletzinger
    Advanced Modeling and Simulation in Engineering Sciences, 9