Implementation of multiscale mechanisms in finite element analysis of active composite structures

被引:3
作者
Micheal, Amany [1 ]
Bahei-El-Din, Yehia A. [1 ]
机构
[1] British Univ Egypt, Ctr Adv Mat, Cairo Suez Rd, El Shorouk City 11837, Egypt
关键词
composite structures; finite elements; multiscale; piezo; pyro-electricity; damage; TRANSFORMATION FIELD ANALYSIS; DAMAGE PROGRESSION; PLATES; MODEL; GLASS;
D O I
10.1177/00219983221082492
中图分类号
TB33 [复合材料];
学科分类号
摘要
Interrogation of composite structures for inherent damage is investigated implementing three-tier analysis scheme. The analysis starts at the structure level where a general-purpose Finite Element code ABAQUS is employed to obtain the stress field in the second level of analysis that is the composite laminate. A special material routine is prepared to propagate the local fields to the individual plies and hence to the third level of analysis which is the microstructure modelling of the composite. Through the third level of analysis, interface damage between fiber and matrix is checked implementing a certain failure criteria. The interaction between the different length scales; that are, structure, macro, and micro scales, is implemented using the non-mechanical strains caused by damage. Embedment of electrically active fibers in the laminate serves as a tool to interrogate the structure for inherent damage through the electric displacement generated due to the electro-mechanical coupling. To verify the developed multi-scale model, a comparison with the experimental results of a tube problem under combined internal pressure and axial load is presented. The results show good agreement in both the undamaged and damaged state. As an application, a plate with a hole under biaxial load is solved. The output includes not only the structure global behavior during damage but also detailed information about the location of damage within the structure, the plies that exhibit damage, type of damage and the fiber/matrix debonded length. Comparison between the electric displacement of the active fibers in the undamaged and damaged states is presented as well.
引用
收藏
页码:2129 / 2144
页数:16
相关论文
共 50 条
  • [31] Finite element modelling of composite structures under crushing load
    Chiu, Louis N. S.
    Falzon, Brian G.
    Boman, Romain
    Chen, Bernard
    Yan, Wenyi
    COMPOSITE STRUCTURES, 2015, 131 : 215 - 228
  • [32] Finite element modeling of composite piezoelectric structures with MSC/NASTRAN
    Freed, BD
    Babuska, V
    SMART STRUCTURES AND INTEGRATED SYSTEMS - SMART STRUCTURES AND MATERIALS 1997, 1997, 3041 : 676 - 688
  • [33] Finite element based design tool for smart composite structures
    Koko, TS
    Orisamolu, IR
    Smith, MJ
    Akpan, UO
    MATHEMATICS AND CONTROL IN SMART STRUCTURES - SMART STRUCTURES AND MATERIALS 1997, 1997, 3039 : 125 - 134
  • [34] A detailed finite element analysis of composite bolted joint dynamics with multiscale modeling of contacts between rough surfaces
    Zhou, Yuchen
    Xiao, Yi
    He, Yi
    Zhang, Zhen
    COMPOSITE STRUCTURES, 2020, 236
  • [35] Finite element mapping for incompatible FE meshes of composite structures
    Mayer, Natalie
    Van Den Broucke, Bjoern
    Prowe, Jens
    Havar, Tamas
    Hinterhoelzl, Roland
    ADVANCES IN ENGINEERING SOFTWARE, 2016, 99 : 81 - 88
  • [36] A finite element method for active vibration control of uncertain structures
    Morales, A. L.
    Rongong, J. A.
    Sims, N. D.
    MECHANICAL SYSTEMS AND SIGNAL PROCESSING, 2012, 32 : 79 - 93
  • [37] Finite element model updating of metallic and composite structures-A state of the art review
    Sharma, Abhishek
    Bagha, Ashok Kumar
    Shukla, Dinesh Kumar
    Bahl, Shashi
    AIMS MATERIALS SCIENCE, 2021, 8 (03) : 390 - 415
  • [38] Accurate structural identification for layered composite structures, through a wave and finite element scheme
    Chronopoulos, D.
    Droz, C.
    Apalowo, R.
    Ichchou, M.
    Yan, W. J.
    COMPOSITE STRUCTURES, 2017, 182 : 566 - 578
  • [39] Finite element analysis of postbuckling and delamination of composite laminates using virtual crack closure technique
    Liu, P. F.
    Hou, S. J.
    Chu, J. K.
    Hu, X. Y.
    Zhou, C. L.
    Liu, Y. L.
    Zheng, J. Y.
    Zhao, A.
    Yan, L.
    COMPOSITE STRUCTURES, 2011, 93 (06) : 1549 - 1560
  • [40] Experimental study and finite element analysis on interfacial mechanical behaviors of steel-UHPC composite structures in acidic environments
    Lin, Youzhu
    Zhu, Shuai
    Mao, Xinya
    Sun, Ming
    Yan, Jiachuan
    CONSTRUCTION AND BUILDING MATERIALS, 2025, 470