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    Study on the Effect of Loading Method on Mechanical Behavior of Rockbolt Based on DEM Modeling

    Source: International Journal of Geomechanics:;2022:;Volume ( 022 ):;issue: 007::page 04022106
    Author:
    Tao Han
    ,
    Changyu Jin
    ,
    Xiaole Hou
    ,
    Xiaobo Liu
    ,
    Yu Lu
    ,
    Dong Liu
    DOI: 10.1061/(ASCE)GM.1943-5622.0002426
    Publisher: ASCE
    Abstract: Fully grouted rockbolt is a form of reinforcement commonly used in underground projects. Its mechanical behavior is of vital importance to enhancing the stability of surrounding rock masses. To investigate the effect of different loading methods on the mechanical behaviors of rockbolt, the distinct element code PFC2D was adopted to simulate the pullout test on rockbolt and a compression test on the bolted rock mass, with Hongtoushan Copper Mine as the engineering background. The stress distribution along rockbolt and the maximum pullout capacity were analyzed. The results indicated that the loading method has significant effects on the mechanical behaviors of rockbolt. In the pullout test, the peak stress in the rockbolt always occurs near the free face. As the rock mass is a passive load-bearing component, the cracks and weak intercalations in the rock mass have little effect on the mechanical behaviors of the rockbolt. Meanwhile, as the external load acts directly on the outer end of rockbolt, the effect of the bearing plate cannot be reflected. However, in the compression test on the bolted rock mass, the peak stress in the rockbolt gradually transfers to greater depth. The existence of cracks and weak intercalations have an impact on the mechanical behaviors of the rockbolt. In addition, with increasing size of the bearing plate, the maximum pullout capacity of the rockbolt gradually increases. Comparison of the simulation results showed that the maximum pullout capacity obtained by the pullout test on a rockbolt is higher than that obtained by the compression test on a bolted rock mass. Therefore, appropriate reduction of the maximum pullout capacity obtained by the pullout test is suggested for rockbolt design, and the reduction factor should be in the range of 0.7–0.8.
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      Study on the Effect of Loading Method on Mechanical Behavior of Rockbolt Based on DEM Modeling

    URI
    http://yetl.yabesh.ir/yetl1/handle/yetl/4286290
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    • International Journal of Geomechanics

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    contributor authorTao Han
    contributor authorChangyu Jin
    contributor authorXiaole Hou
    contributor authorXiaobo Liu
    contributor authorYu Lu
    contributor authorDong Liu
    date accessioned2022-08-18T12:15:19Z
    date available2022-08-18T12:15:19Z
    date issued2022/05/10
    identifier other%28ASCE%29GM.1943-5622.0002426.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4286290
    description abstractFully grouted rockbolt is a form of reinforcement commonly used in underground projects. Its mechanical behavior is of vital importance to enhancing the stability of surrounding rock masses. To investigate the effect of different loading methods on the mechanical behaviors of rockbolt, the distinct element code PFC2D was adopted to simulate the pullout test on rockbolt and a compression test on the bolted rock mass, with Hongtoushan Copper Mine as the engineering background. The stress distribution along rockbolt and the maximum pullout capacity were analyzed. The results indicated that the loading method has significant effects on the mechanical behaviors of rockbolt. In the pullout test, the peak stress in the rockbolt always occurs near the free face. As the rock mass is a passive load-bearing component, the cracks and weak intercalations in the rock mass have little effect on the mechanical behaviors of the rockbolt. Meanwhile, as the external load acts directly on the outer end of rockbolt, the effect of the bearing plate cannot be reflected. However, in the compression test on the bolted rock mass, the peak stress in the rockbolt gradually transfers to greater depth. The existence of cracks and weak intercalations have an impact on the mechanical behaviors of the rockbolt. In addition, with increasing size of the bearing plate, the maximum pullout capacity of the rockbolt gradually increases. Comparison of the simulation results showed that the maximum pullout capacity obtained by the pullout test on a rockbolt is higher than that obtained by the compression test on a bolted rock mass. Therefore, appropriate reduction of the maximum pullout capacity obtained by the pullout test is suggested for rockbolt design, and the reduction factor should be in the range of 0.7–0.8.
    publisherASCE
    titleStudy on the Effect of Loading Method on Mechanical Behavior of Rockbolt Based on DEM Modeling
    typeJournal Article
    journal volume22
    journal issue7
    journal titleInternational Journal of Geomechanics
    identifier doi10.1061/(ASCE)GM.1943-5622.0002426
    journal fristpage04022106
    journal lastpage04022106-13
    page13
    treeInternational Journal of Geomechanics:;2022:;Volume ( 022 ):;issue: 007
    contenttypeFulltext
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