Study on evaluation of elastic modulus of crumb rubber concrete in meso-scale

被引:0
|
作者
Cai, Xianglei [1 ]
Zhang, Lihua [1 ]
Pan, Weidong [2 ]
Wang, Weilong [3 ]
Guan, Qingfa [4 ]
Zhai, Shengtian [5 ]
Liu, Laibao [1 ]
Zhang, Yunsheng [5 ]
机构
[1] State Key Laboratory of Environmental Friendly Energy Materials, School of Materials Science and Engineering, Southwest University of Science and Technology, Sichuan,621010, China
[2] Sichuan Guoda Cement Co., Ltd., Sichuan,621010, China
[3] School of Transportation, Civil Engineering and Architecture, Foshan University of Science and Technology, Guangdong,528200, China
[4] School of Civil Engineering and Architecture, Southwest University of Science and Technology, Sichuan,621010, China
[5] School of Materials Science and Engineering, Southeast University, Jiangsu, Nanjing,211189, China
基金
中国国家自然科学基金;
关键词
Cementitious materials - Crumb rubber - Crumb rubber concrete - Improved mori-tanakum model - Interface transition zone - Interface transition zones - Meso scale - Mori Tanaka model - Rubber concrete - Rubber crumb;
D O I
暂无
中图分类号
学科分类号
摘要
Crumb rubber concrete (CRC) has attracted significant attention as a typical reclamation and recycling of solid wastes, and endows concrete with excellent impact resistance. However, the elastic modulus of CRC can be affected by the uncertain properties of rubber crumbs. In this study, an improved Mori-Tanaka model (IMT) was proposed to estimate the elastic modulus of CRC in meso-scale. The model establishes the quantitative relationship between the elastic modulus and volume fraction of all constituent materials (ordinary aggregate, rubber crumbs, and cementitious materials) involved in CRC and its interface transition zone (ITZ). The results indicate that the error of IMT predicted elastic modulus of CRC is about 3.9%, which is reduced by about 8.9% compared with the Mori-Tanaka model (MT model). Further, the importance of different factors influencing the elastic modulus of CRC is assessed by the IMT model. The specific attributes of rubber crumbs (particle size and volume fraction), ITZ, and cementitious materials (the elastic modulus) have been shown to affect the elastic modulus of CRC significantly. Thus, the IMT model can be beneficial for the design of CRC with specific elastic modulus by considering the effect of different constituents. © 2022 Elsevier Ltd
引用
收藏
相关论文
共 50 条
  • [31] Meso-scale XCT-based modeling of ordinary concrete
    Mazzucco, G.
    Pomaro, B.
    Xotta, G.
    Garbin, E.
    Majorana, C. E.
    De Marchi, N.
    Concheri, G.
    CONSTRUCTION AND BUILDING MATERIALS, 2021, 286
  • [32] A meso-scale approach for the modeling of concrete behavior at high temperatures
    De Sa, C.
    Benboudjema, E.
    Duong, K.
    Sicard, J.
    Computational Modelling of Concrete Structures, 2006, : 557 - 563
  • [33] Three-dimensional meso-scale modeling of asphalt concrete
    Mazzucco, G.
    Pomaro, B.
    Salomoni, V. A.
    Majorana, C. E.
    COMPUTERS & STRUCTURES, 2024, 305
  • [34] Meso-Scale Simulation of Concrete Based on Fracture and Interaction Behavior
    Xiong, Xueyu
    Xiao, Qisheng
    APPLIED SCIENCES-BASEL, 2019, 9 (15):
  • [35] Experimentally validated meso-scale fracture modelling of foamed concrete
    Jiang, Nengdong
    Ge, Zhi
    Guan, Yanhua
    Zuo, Zhiwu
    Zhang, Hongzhi
    Ling, Yifeng
    Savija, Branko
    THEORETICAL AND APPLIED FRACTURE MECHANICS, 2022, 122
  • [36] End effect of concrete by meso-scale discrete element modeling
    Kang, Zheng
    Tang, Xinwei
    Qin, Chuan
    Zhou, Xiaowen
    Harbin Gongye Daxue Xuebao/Journal of Harbin Institute of Technology, 2013, 45 (12): : 94 - 98
  • [37] Effects of Meso-scale Modeling on Concrete Fracture Parameters Calculation
    Permanoon, Ali
    Akhaveissy, Amir Houshang
    PERIODICA POLYTECHNICA-CIVIL ENGINEERING, 2019, 63 (03): : 782 - 794
  • [38] A meso-scale numerical method for the simulation of chloride diffusivity in concrete
    Du, Xiuli
    Jin, Liu
    Ma, Guowei
    FINITE ELEMENTS IN ANALYSIS AND DESIGN, 2014, 85 : 87 - 100
  • [39] Steel Fibre Reinforced Concrete Meso-Scale Numerical Analysis
    Li, Zhengwei
    Wu, Meizhong
    Wu, Jiawei
    Cui, Yujun
    Xue, Xingwei
    ADVANCES IN CIVIL ENGINEERING, 2020, 2020
  • [40] Meso-scale model for simulations of concrete subjected to cryogenic temperatures
    Masad, Noor
    Zollinger, Dan
    Kim, Sun-Myung
    Grasley, Zachary
    MATERIALS AND STRUCTURES, 2016, 49 (06) : 2141 - 2159