Analyzing the Energy and Damage Constitutive of Cemented Backfill with Different Water Content under Dynamic Load

被引:2
|
作者
Hu, Yu [1 ]
Li, Zhuo [1 ]
Su, Yawen [2 ]
Wu, Yongbo [1 ]
Li, Xiaoshuai [1 ]
Gao, Wenxue [1 ]
Zhang, Xiaojun [1 ]
机构
[1] Beijing Univ Technol, Fac Architecture Civil & Transportat Engn, Beijing 100124, Peoples R China
[2] Seventh Met Construct Co Ltd, Guiyang 550014, Peoples R China
关键词
cemented filling body; moisture content; energy evolution; damage characteristics; constitutive model; MECHANICAL PROPERTIES; COMPRESSIVE STRENGTH; FAILURE PROCESS; BEHAVIOR; ROCK; DISSIPATION; SANDSTONE; RED;
D O I
10.3390/ma16165677
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The dynamic characteristics of the filling body are the key parameters for designing the filling ratio and evaluating the stability of an underground stope. The different environment (water-bearing state) of the filling body in the underground stope exerts a complex impact on the mechanical behavior of the filling body. Therefore, six groups of cemented filling body specimens with different states were formed and subjected to dynamic uniaxial impact tests. The effects of water content on the mechanical properties, fractal dimension, and deformation damage characteristics of the cemented backfill under dynamic load were analyzed in depth, and a dynamic damage constitutive model that considers water damage and the compaction stage was established. The results indicate the following: (1) Due to the change of the specimen from the dry state to the water saturation state, the dynamic compressive strength of the cemented filling body decreases from 5.03 Mpa to 1.79 Mpa; however, the ductility of the specimen generally increases, and the filling body specimens with different water contents mainly exhibit tensile failure. (2) There is a significant nonlinear relationship between the water content and the fractal dimension D-b of the cemented backfill specimen, and the growth rate of the fractal dimension D-b tends to slow down with the increase in the water content. (3) From the energy evolution perspective, the water content of the specimen exerts a significant effect on the elastic deformation and failure stage of the stress-strain curve, and the slope of the dissipated energy-strain curve decreases with the increase in water content. (4) Based on the Weibull distribution and damage theory, a statistical damage constitutive model of cemented backfill was established, and it was compared with the experimental curve to verify the rationality of the model. Therefore, the relationship between stress and damage and the strain curves is discussed, and it is inferred that the damage evolution curve of cemented backfill is a typical S-shaped curve that exhibits a stable development-rapid increase-tending to be gentle. This study can provide a theoretical reference for further understanding the dynamic behavior and stability of backfill under different water conditions.
引用
收藏
页数:19
相关论文
共 50 条
  • [31] Damage constitutive model of stratified cemented backfill based on coupling macroscopic and mesoscopic deformations
    Tang, Yanan
    Song, Weidong
    Fu, Jianxin
    E3S Web of Conferences, 2020, 194
  • [32] Damage constitutive model of different age concretes under impact load
    李夕兵
    王世鸣
    翁磊
    黄麟淇
    周韬
    周健
    Journal of Central South University, 2015, 22 (02) : 693 - 700
  • [33] Damage constitutive model of different age concretes under impact load
    Xi-bing Li
    Shi-ming Wang
    Lei Weng
    Lin-qi Huang
    Tao Zhou
    Jian Zhou
    Journal of Central South University, 2015, 22 : 693 - 700
  • [34] Damage constitutive model of different age concretes under impact load
    Li Xi-bing
    Wang Shi-ming
    Weng Lei
    Huang Lin-qi
    Zhou Tao
    Zhou Jian
    JOURNAL OF CENTRAL SOUTH UNIVERSITY, 2015, 22 (02) : 693 - 700
  • [35] Early warning analysis of damage mutation in tailings cemented backfill under different initial defect conditions
    Zhao K.
    Ao W.
    Wu J.
    Yang J.
    Yan Y.
    Zhou Y.
    Yanshilixue Yu Gongcheng Xuebao/Chinese Journal of Rock Mechanics and Engineering, 2023, 42 (10): : 2400 - 2411
  • [36] Mesoscopic damage evolution and acoustic emission characteristics of cemented paste backfill under different loading rates
    Yuxin Hao
    Xuepeng Song
    Yucheng Huang
    Bao Zhang
    Zilin Dong
    Hao Wang
    Environmental Science and Pollution Research, 2022, 29 : 90686 - 90702
  • [37] Mesoscopic damage evolution and acoustic emission characteristics of cemented paste backfill under different loading rates
    Hao, Yuxin
    Song, Xuepeng
    Huang, Yucheng
    Zhang, Bao
    Dong, Zilin
    Wang, Hao
    ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2022, 29 (60) : 90686 - 90702
  • [38] Study on characteristic stress and energy damage evolution mechanism of cemented tailings backfill under uniaxial compression
    Hou, Yongqiang
    Yin, Shenghua
    Chen, Xin
    Zhang, Minzhe
    Yang, Shixing
    CONSTRUCTION AND BUILDING MATERIALS, 2021, 301
  • [39] Dynamic damage constitutive model of cemented sand and gravel material
    Zhang, Xiancai
    Li, Po
    Huang, Hu
    MECHANICS OF ADVANCED MATERIALS AND STRUCTURES, 2022, 29 (23) : 3324 - 3333
  • [40] Damage constitutive model and strength criterion of cemented paste backfill based on layered effect considerations
    Fu, Jianxin
    Wang, Jie
    Song, Weidong
    JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2020, 9 (03): : 6073 - 6084