Mechanical properties and damage evolution characteristics of waste tire steel fiber-modified cemented paste backfill

被引:7
作者
Cao, Shenggen [1 ]
Che, Chiyuan [1 ]
Zhang, Yun [2 ]
Shan, Changhao [1 ]
Liu, Yang [1 ]
Zhao, Changzheng [1 ]
Du, Shuyu [1 ]
机构
[1] China Univ Min & Technol, Sch Mines, State Key Lab Fine Explorat & Intelligent Dev Coal, Xuzhou 221116, Peoples R China
[2] Xian Univ Sci & Technol, Coll Energy Engn, Xian 710054, Peoples R China
基金
中国国家自然科学基金;
关键词
Constructional backfill; Cemented paste backfill; Waste tire steel fiber; Acoustic emission; Damage characteristics; BEHAVIOR; MODEL;
D O I
10.1016/j.ijmst.2024.07.007
中图分类号
TD [矿业工程];
学科分类号
0819 ;
摘要
During the process of constructional backfill mining, the cemented paste backfill (CPB) typically exhibits a high degree of brittleness and limited resistance to failure. In this study, the mechanical and damage evolution characteristics of waste tire steel fiber (WTSF)-modified CPB were studied through uniaxial compression tests, acoustic emission (AE) tests, and scanning electron microscopy (SEM). The results showed that the uniaxial compressive strength (UCS) decreased when the WTSF content was 0.5%, 1%, and 1.5%. When the WTSF content reached 1%, the UCS of the modified CPB exhibited a minimal decrease (0.37 MPa) compared to that without WTSF. When the WTSF content was 0.5%, 1%, and 1.5%, peak strain of the WTSF-modified CPB increased by 18%, 31.33%, and 81.33%, while the elastic modulus decreased by 21.31%, 26.21%, and 45.42%, respectively. The addition of WTSF enhances the activity of AE events in the modified CPB, resulting in a slower progression of the entire failure process. After the failure, the modified CPB retained a certain level of load-bearing capacity. Generally, the failure of the CPB was dominated by tensile cracks. After the addition of WTSF, a gradual increase in the proportion of tensile cracks was observed upon loading the modified CPB sample to the pore compaction stage. The three-dimensional localization of AE events showed that the WTSF-modified CPB underwent progressive damage during the loading, and the samples still showed good integrity after failure. Additionally, the response relationship between energy evolution and damage development of WTSF-modified CPB during uniaxial compression was analyzed, and the damage constitutive model of CPB samples with different WTSF contents was constructed. This study provides a theoretical basis for the enhancement of CPB modified by adding WTSF, serving as a valuable reference for the design of CPB constructional backfill.
引用
收藏
页码:909 / 924
页数:16
相关论文
共 50 条
  • [21] Development of Cemented Paste Backfill with Superfine Tailings: Fluidity, Mechanical Properties, and Microstructure Characteristics
    Hu, Yafei
    Li, Keqing
    Zhang, Bo
    Han, Bin
    MATERIALS, 2023, 16 (05)
  • [22] Influence of superplasticizers on mechanical properties and workability of cemented paste backfill
    Mangane, Mohamed Bini Coulibaly
    Argane, Rabei
    Trauchessec, Romain
    Lecomte, Andre
    Benzaazoua, Mostafa
    MINERALS ENGINEERING, 2018, 116 : 3 - 14
  • [23] The Failure Mechanical Properties of Cemented Paste Backfill with Recycled Rubber
    Yang, Baogui
    Wang, Xiaolong
    Gu, Chengjin
    Yang, Faguang
    Liu, Hao
    Jin, Junyu
    Zhou, Yibo
    MATERIALS, 2023, 16 (09)
  • [24] The Influence of Multi-Size Basalt Fiber on Cemented Paste Backfill Mechanical Properties and Meso-Structure Characteristics
    Chen, Xi
    Jiao, Huazhe
    Liu, Juanhong
    Yang, Yixuan
    Chen, Xinming
    Yang, Liuhua
    Zhang, Wenxiang
    Yang, Tongyi
    MINERALS, 2023, 13 (09)
  • [25] An intelligent modelling framework for mechanical properties of cemented paste backfill
    Qi, Chongchong
    Chen, Qiusong
    Fourie, Andy
    Zhang, Qinli
    MINERALS ENGINEERING, 2018, 123 : 16 - 27
  • [26] Spatial evolution characteristics of the mechanical properties of gangue-cemented paste backfill with high-water-content materials: an experimental investigation
    Sun, Kai
    He, Manchao
    Li, Meng
    Wang, Yuyao
    Hu, Qiang
    Song, Weijian
    NONDESTRUCTIVE TESTING AND EVALUATION, 2024,
  • [27] Mechanical properties of organic-inorganic hybrid fiber reinforced cemented tailings backfill considering energy evolution and damage fracture characteristics
    Zou, Shizhuo
    Gao, Yongtao
    Zhou, Yu
    Sun, Hao
    Yang, Zhiran
    Yang, Chao
    Chai, Jinfei
    Qian, Lingyun
    JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2025, 35 : 4614 - 4633
  • [28] Mechanical Characteristics and Stress Evolution of Cemented Paste Backfill: Effect of Curing Time, Solid Content, and Binder Content
    Hou, Chen
    Yang, Liujun
    Li, Lei
    Yan, Baoxu
    FRONTIERS IN MATERIALS, 2022, 8
  • [29] Damage Constitutive Model for Cemented Paste Backfill after Mixing Waste Rock
    Zhang, Fawen
    Liu, Wenxia
    Shen, Lianfeng
    2012 WORLD AUTOMATION CONGRESS (WAC), 2012,
  • [30] Analysis on mechanical properties and mesoscopic acoustic emission characteristics of prefabricated fracture cemented paste backfill under different loading rates
    Song, Xuepeng
    Yuan, Quan
    Wang, Shi
    Dong, Zilin
    Hao, Yuxin
    ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2023, 30 (09) : 24687 - 24707