Mesomechanical damage of fiber mortar under temperature difference

被引:1
|
作者
Zhang, Yan [1 ]
Li, Zhihao [1 ]
Li, Ning [2 ]
Li, Sheng [1 ]
Liu, Jiahao [1 ]
Ye, Wanjun [1 ]
Zheng, Xuanrong [1 ]
机构
[1] Xian Univ Sci & Technol, Sch Civil Engn & Architecture, Xian 710054, Peoples R China
[2] Xian Univ Technol, Inst Rock & Soil Mech, Xian, Peoples R China
基金
中国国家自然科学基金;
关键词
Equivalent inclusion; fiber mortar; mesomechanics; cracking strength; damage evolution; MICROMECHANICAL ANALYSIS; MECHANICAL-PROPERTIES; EARLY-AGE; CONCRETE; MODEL; STRENGTH; BEHAVIOR;
D O I
10.1080/19648189.2022.2063949
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The present study aims to establish a mesomechanical damage model for the description of anisotropic damage by mesocracking under temperature difference condition. With the basic solution of Eshelby theory and the Clapeyron equation, a mechanics framework is developed for cement materials, which are considered to be heterogeneous materials consisting of a cement stone matrix and imbedded penny-shaped microcracks. From the mesomechanical analysis, the critical conditions corresponding to the failure of fiber mortar under different initial crack density conditions are obtained. Furthermore, the Clapeyron equation is used to describe the relationship between the stress and the initiation or expansion of the fiber mortar crack and the damage evolution rule is expressed by the energy equation of the stiffness coefficient. The proposed model can accurately quantify the factors such as fiber distribution, microcrack density, temperature differences and the relationship between directional microcracks and crack strength in mortar. The results verified by laboratory tests and numerical simulations show that as the temperature difference increases from 0 degrees C to 75 degrees C, the cracking strength of the fiber mortar decreases and the number of cracks increases in the form of a power exponential function, which proves the micromechanical damage the validity of the model.
引用
收藏
页码:763 / 780
页数:18
相关论文
共 50 条
  • [1] Damage characteristics of basalt fiber reinforced mortar under compression evaluated by acoustic emission
    Wang, Yan
    Zhang, Tingting
    Zhou, Li
    Yan, Chao
    Wang, Na
    Gu, Jie
    Chen, Lijun
    MATERIALS TESTING, 2019, 61 (04) : 381 - 388
  • [2] Constitutive Relation of Polypropylene-Fiber-Reinforced Mortar Under Uniaxial Compression at High Temperature
    Chen, Hao
    Li, Dongwei
    BUILDINGS, 2025, 15 (03)
  • [3] Temperature-dependent damage of magnesium alloy with ratchetting-fatigue interaction effects: Experiments and mesomechanical theory
    Wang, Ziyi
    Lei, Yu
    Hu, Binghui
    Yu, Chao
    Wu, Shengchuan
    Feng, Xiqiao
    Kang, Guozheng
    INTERNATIONAL JOURNAL OF PLASTICITY, 2024, 177
  • [4] Damage Processes of Steel Fiber Reinforced Mortar in Different Fiber Content Revealed by Acoustic Emission Behavior
    Wang, Y.
    Chen, S. J.
    Xu, Z. Z.
    Liu, S. J.
    Hu, H. X.
    RUSSIAN JOURNAL OF NONDESTRUCTIVE TESTING, 2018, 54 (01) : 55 - 64
  • [5] Simulation of damage-permeability coupling for mortar under dynamic loads
    Chen, Wen
    La Borderie, Christian
    Maurel, Olivier
    Pijaudier-Cabot, Gilles
    Rey-Bethbeder, Franck
    INTERNATIONAL JOURNAL FOR NUMERICAL AND ANALYTICAL METHODS IN GEOMECHANICS, 2014, 38 (05) : 457 - 474
  • [6] Quantification of fatigue damage at dry-wet cycles of polymer fiber cement mortar
    Zhang, Yan
    Li, Ning
    Lv, Gao
    Chen, Zhuanwen
    MATERIALS LETTERS, 2019, 257
  • [7] Damage Evolution and Lifetime Prediction of Cement Asphalt Mortar Under High-Speed Train Frequency and Temperature Gradient Load
    Zhou, Mingjie
    Zhong, Shenghua
    Liu, Yiping
    Liu, Zejia
    Yang, Bao
    Jiang, Zhenyu
    Zhou, Licheng
    Tang, Liqun
    MATERIALS, 2025, 18 (05)
  • [8] Mesomechanical modeling of quasihomogeneous damage
    Kafka, V
    DAMAGE ASSESSMENT OF STRUCTURES, 2001, 204-2 : 433 - 442
  • [9] Mechanical Properties of Cement Asphalt Mortar under Low Temperature Condition
    Wang, Jin-feng
    Wang, Wen-hao
    Wu, Xi
    Zhou, Yu-bing
    JOURNAL OF TESTING AND EVALUATION, 2019, 47 (03) : 1995 - 2009
  • [10] EXPERIMENTAL STUDY ON HIGH TEMPERATURE MECHANICAL PROPERTIES OF ALUMINATE CEMENT MORTAR MIXED WITH FIBER
    Xu, Ping
    Han, Dong
    Yu, Jian-Xin
    Cui, Yu-Hao
    Zhang, Min-Xia
    THERMAL SCIENCE, 2021, 25 (06): : 4441 - 4448