Simulating concrete cracking and failure under impact loading using a novel constitutive integration paradigm in non-ordinary state-based Peridynamics

被引:0
|
作者
Yu, Xiaohu [1 ,2 ]
Chen, Airong [1 ]
Chang, Haocheng [1 ]
机构
[1] Tongji Univ, Coll Civil Engn, Dept Bridge Engn, Shanghai 200092, Peoples R China
[2] Hong Kong Univ Sci & Technol, Dept Civil & Environm Engn, Hong Kong, Peoples R China
基金
中国博士后科学基金;
关键词
Peridynamics; Cracking; Failure; Impact loading; Concrete; CDPM2; Constitutive law; REINFORCED-CONCRETE; DYNAMIC FRACTURE; BRIDGE COLUMNS; MODEL; PARTICLES; FRAGMENTATION; VALIDATION;
D O I
10.1016/j.engfracmech.2024.110703
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Concrete cracking and failure under external loads are common in infrastructure, particularly under impact conditions where the variability of loads and the complexity of the cracking process present significant challenges. While the bond-based Peridynamic (BBPD) and Ordinary state- based Peridynamic (OSBPD) models are widely used in concrete damage analysis due to the low computational cost, their simple constitutive laws limit their effectiveness in simulating concrete's response to impact loading. To overcome this limitation, we propose a novel approach that integrates classical constitutive models into the Peridynamics (PD) framework. Specifically, we reformulate the Concrete Damage Plasticity Model 2 (CDPM2) within a non-ordinary state- based PD (NOSBPD) framework, resulting in the CDPM2-PD model. This model incorporates factors such as strain rate effects and strain hardening and introduces a bond damage criterion for both tensile and compressive damage. Through three numerical examples, the CDPM2-PD model demonstrates its ability to accurately capture the cracking and failure process of concrete under impact, showing strong agreement with experimental observations in areas such as failure mode transitions and crack patterns. These results validate the model's effectiveness and offer a versatile method for integrating classical constitutive models into the NOSBPD framework for complex material analysis.
引用
收藏
页数:23
相关论文
共 50 条
  • [1] Revisit of non-ordinary state-based peridynamics
    Gu, Xin
    Madenci, Erdogan
    Zhang, Qing
    ENGINEERING FRACTURE MECHANICS, 2018, 190 : 31 - 52
  • [2] Modelling of viscoelastic materials using non-ordinary state-based peridynamics
    Galadima, Yakubu Kasimu
    Oterkus, Selda
    Oterkus, Erkan
    Amin, Islam
    El-Aassar, Abdel-Hameed
    Shawky, Hosam
    ENGINEERING WITH COMPUTERS, 2024, 40 (01) : 527 - 540
  • [3] A low cycle fatigue cracking simulation method of non-ordinary state-based peridynamics
    Li, Hongxiang
    Hao, Zhiming
    Li, Pan
    Li, Xiaolong
    Zhang, Dingguo
    INTERNATIONAL JOURNAL OF FATIGUE, 2022, 156
  • [4] Modelling of viscoelastic materials using non-ordinary state-based peridynamics
    Yakubu Kasimu Galadima
    Selda Oterkus
    Erkan Oterkus
    Islam Amin
    Abdel-Hameed El-Aassar
    Hosam Shawky
    Engineering with Computers, 2024, 40 : 527 - 540
  • [5] Numerical analysis on failure of sheet metals with non-ordinary state-based peridynamics
    Wang, Han
    Wu, Liwei
    Guo, Junbin
    Yu, Chuanqiang
    Li, Yayun
    Wang, Junti
    Liu, Zhihao
    ENGINEERING FRACTURE MECHANICS, 2023, 292
  • [6] A novel kinematic-constraint-inspired non-ordinary state-based peridynamics
    Tian, Da-Lang
    Zhou, Xiao-Ping
    APPLIED MATHEMATICAL MODELLING, 2022, 109 : 709 - 740
  • [7] A non-ordinary state-based peridynamics framework for anisotropic materials
    Hattori, Gabriel
    Trevelyan, Jon
    Coombs, William M.
    COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING, 2018, 339 : 416 - 442
  • [8] A computational homogenization framework for non-ordinary state-based peridynamics
    Galadima, Yakubu Kasimu
    Xia, Wenxuan
    Oterkus, Erkan
    Oterkus, Selda
    ENGINEERING WITH COMPUTERS, 2023, 39 (01) : 461 - 487
  • [9] A computational homogenization framework for non-ordinary state-based peridynamics
    Yakubu Kasimu Galadima
    Wenxuan Xia
    Erkan Oterkus
    Selda Oterkus
    Engineering with Computers, 2023, 39 : 461 - 487
  • [10] A non-ordinary state-based peridynamics formulation for thermoplastic fracture
    Amani, J.
    Oterkus, E.
    Areias, P.
    Zi, G.
    Nguyen-Thoi, T.
    Rabczuk, T.
    INTERNATIONAL JOURNAL OF IMPACT ENGINEERING, 2016, 87 : 83 - 94