Fracture evolution in steel fiber reinforced concrete(SFRC)of tunnel under static and dynamic loading based on DEM-FDM coupling model
Yu Chen1
Dongfeng Yu1
Yixian Wang2
Yanlin Zhao3
Hang Lin4
Jingjing Meng5
Haoliang Wu1
1.School of Civil Engineering,Sun Yat-Sen University &Southern Marine Science and Engineering Guangdong Laboratory(Zhuhai),Zhuhai 519000,China2.School of Civil Engineering,Hefei University of Technology,Hefei 230009,China3.School of Energy and Safety Engineering,Hunan University of Science and Technology,Xiangtan 411201,China4.School of Resources and Safety Engineering,Central South University,Changsha 410083,China5.Department of Civil,Environmental and Natural Resources Engineering,Luleå University of Technology,Luleå T 3313,Luleå,Sweden
摘要:The frequent or occasional impact loads pose serious threats to the service safety of conventional concrete structures in tunnel.In this paper,a novel three-dimensional mesoscopic model of steel fiber reinforced concrete(SFRC)is constructed by discrete element method.The model encompasses the concrete matrix,aggregate,interfacial transition zone and steel fibers,taking into account the random shape of the coarse aggregate and the stochastic distribution of steel fibers.It captures microscopic-level interactions among the coarse aggregate,steel fibers,and matrix.Subsequently,a comprehensive procedure is formulated to calibrate the microscopic parameters required by the model,and the reliability of the model is verified by comparing with the experimental results.Furthermore,a coupled finite difference method-discrete element method approach is used to construct the model of the split Hopkinson pressure bar.Compression tests are simulated on SFRC specimens with varying steel fiber contents under static and dynamic loading conditions.Finally,based on the advantages of DEM analysis at the mesoscopic level,this study analyzed mechanisms of enhancement and crack arrest in SFRC.It shed a light on the perspectives of interface failure process,microcrack propagation,contact force field evolution and energy analysis,offering valuable insights for related mining engineering applications.
机标关键词:loadingevolutioncouplingtunneldynamicfibermodelsfrc
论文发表日期:2025-02-28
在线出版日期:2025-10-15(本平台首次上网日期,不代表文献的发表时间)
页数:28( 186-213 )
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国际煤炭科学技术学报(英文版)

国际煤炭科学技术学报(英文版)

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ISSN:2095-8293
年,卷(期):2025,12(1)
所属栏目:Research Articles