A micromechanical damage-healing model for encapsulation-based self-healing polymer composites under tensile loading

被引:7
|
作者
Jahadi, Ramin [1 ]
Beheshti, Hamid [1 ]
Heidari-Rarani, Mohammad [1 ]
机构
[1] Univ Isfahan, Fac Engn, Dept Mech Engn, Esfahan 8174673441, Iran
关键词
Self-healing polymer composite; micromechanical modeling; microcapsules; progressive damage; cohesive element; DUAL-COMPONENT MICROCAPSULES; FIBER-REINFORCED COMPOSITES; MECHANICAL-BEHAVIOR; TRANSVERSE COMPRESSION; EPOXY; EFFICIENCY; FRACTURE; HOMOGENIZATION; OPTIMIZATION; VERIFICATION;
D O I
10.1080/15376494.2023.2193973
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this study, a novel micromechanics-based damage model is proposed for the damage evolution of a two-component microencapsulated-based self-healing polymer composite. In this way, a representative volume element (RVE) including an epoxy matrix with randomly distributed poly(methyl methacrylate) (PMMA) microcapsules is modeled in Digimat(TM) software and analyzed in Abaqus (R). A new technique is developed to investigate the progressive damage by pre-inserted cohesive elements along all element boundaries of the epoxy matrix, PMMA shell, and capsule-matrix interfaces with the bilinear traction-separation law. Moreover, the impact of interface bonding strength, interface fracture energy, and PMMA microcapsules volume fraction on the load-carrying capacity of the RVEs under uniaxial tension loading was studied. The results indicated that the tensile strength of the self-healing polymer composite increased as the interfacial strength and fracture energy increased from 10 to 60 MPa and 100 to 1000 J/m(2), respectively. Furthermore, the higher volume fraction of 5% PMMA microcapsules results in a lower load-carrying capacity of self-healing polymer composite with a strength of 4.9 N. A similar trend of Young's modulus was observed for microcapsule-loaded epoxy composite compared to the pristine epoxy matrix. The micromechanical model has proper accuracy in predicting the tension behavior of self-healing composite in comparison to experimental results. Finally, two healing strategies are considered for the damaged RVE.
引用
收藏
页码:4295 / 4308
页数:14
相关论文
共 50 条
  • [1] Mechanical response analysis of self-healing cementitious composites with microcapsules subjected to tensile loading based on a micromechanical damage-healing model
    Han, Kaihang
    Ju, J. Woody
    Zhang, Hao
    Zhu, Yinghui
    Chang, Tien-Shu
    Wang, Zhengyao
    Construction and Building Materials, 2021, 280
  • [2] Mechanical response analysis of self-healing cementitious composites with microcapsules subjected to tensile loading based on a micromechanical damage-healing model
    Han, Kaihang
    Ju, J. Woody
    Zhang, Hao
    Zhu, Yinghui
    Chang, Tien-Shu
    Wang, Zhengyao
    CONSTRUCTION AND BUILDING MATERIALS, 2021, 280
  • [3] Mechanical responses of microencapsulated self-healing cementitious composites under compressive loading based on a micromechanical damage-healing model
    Han, Kaihang
    Ju, Jiann-Wen Woody
    Zhu, Yinghui
    Zhang, Hao
    Chang, Tien-Shu
    Wang, Zhengyao
    INTERNATIONAL JOURNAL OF DAMAGE MECHANICS, 2021, 30 (10) : 1475 - 1496
  • [4] A two-dimensional micromechanical damage-healing model on microcrack-induced damage for microcapsule-enabled self-healing cementitious composites under tensile loading
    Zhu, Hehua
    Zhou, Shuai
    Yan, Zhiguo
    Ju, J. Woody
    Chen, Qing
    INTERNATIONAL JOURNAL OF DAMAGE MECHANICS, 2015, 24 (01) : 95 - 115
  • [5] A resilience assessment framework for microencapsulated self-healing cementitious composites based on a micromechanical damage-healing model
    Han, Kaihang
    Ju, Jiann-Wen Woody
    Zhang, Chengping
    Su, Dong
    Cui, Hongzhi
    Lin, Xing-Tao
    Chen, Xiangsheng
    INTERNATIONAL JOURNAL OF DAMAGE MECHANICS, 2024, 33 (01) : 39 - 56
  • [6] Damage-healing analysis of microencapsulated self-healing concrete subjected to tensile loading using a 2D micromechanical model
    Han, Kaihang
    Ju, J. Woody
    Lv, Le-Yang
    Yan, Zhiguo
    Chen, Xiangsheng
    Jin, Yin-fu
    INTERNATIONAL JOURNAL OF DAMAGE MECHANICS, 2023, 32 (04) : 579 - 599
  • [7] A two-dimensional micromechanical damage-healing model on microcrack-induced damage for microcapsule-enabled self-healing cementitious composites under compressive loading
    Zhu, Hehua
    Zhou, Shuai
    Yan, Zhiguo
    Ju, J. Woody
    Chen, Qing
    INTERNATIONAL JOURNAL OF DAMAGE MECHANICS, 2016, 25 (05) : 727 - 749
  • [8] A continuum damage-healing model of healing agents based self-healing materials
    Pan, Yihui
    Tian, Fang
    Zhong, Zheng
    INTERNATIONAL JOURNAL OF DAMAGE MECHANICS, 2018, 27 (05) : 754 - 778
  • [9] Continuum damage-healing mechanics with application to self-healing composites
    Barbero, EJ
    Greco, F
    Lonetti, P
    INTERNATIONAL JOURNAL OF DAMAGE MECHANICS, 2005, 14 (01) : 51 - 81
  • [10] A review study on encapsulation-based self-healing for cementitious materials
    Xue, Caihong
    Li, Wengui
    Li, Jianchun
    Tam, Vivian W. Y.
    Ye, Guang
    STRUCTURAL CONCRETE, 2019, 20 (01) : 198 - 212