Discrete mesoscale analysis of adhesive anchors under tensile load taking into account post-installed reinforcement

被引:13
作者
Siamakani, Seyed Yaser Mousavi [1 ]
Jiradilok, Punyawut [2 ]
Nagai, Kohei [2 ]
Sahamitmongkol, Raktipong [1 ]
机构
[1] King Mongkuts Univ Technol Thonburi, Dept Civil Engn, Bangkok, Thailand
[2] Univ Tokyo, Inst Ind Sci, Tokyo, Japan
关键词
Post-installed anchor; Post-installed reinforcement; Adhesive anchor; Discrete analysis; RBSM; NUMERICAL-SIMULATION; BONDED ANCHORS; CONCRETE; STRENGTH; BEHAVIOR; CAPACITY; CRACK; FAILURE; DESIGN; BOLTS;
D O I
10.1016/j.conbuildmat.2020.120778
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The utilization of post-installed anchors is growing fast to connect both structural and non-structural members. Adhesive anchors are one type of post-installed anchors which are formed as threaded bars. They can be post-placed into concrete with the help of epoxy adhesive. On the one hand, improvement of the performance of post-installed anchors, unlike cast-in-place anchors, has not drawn attention much. On the other hand, due to the complexity of their performance, a numerical study can be a supportive method for the experimental study. This paper addresses the effect of post-installed reinforcement (PR) on the adhesive anchors under tensile loading in both experimental and numerical studies. Reinforcing steel bars as post-installed reinforcement (fully embedded in concrete) were used to ameliorate the performance of the adhesive anchors under tensile force. Rigid Body Spring Model (RBSM) was developed as a simulation that is based on discrete analysis at mesoscale. Pull-out capacity, displacement, failure mode, and concrete cone geometry were measured by the experiments and the RBSM simulation. In addition, internal stress, strain, cracking patterns were investigated by the RBSM simulation. Moreover, some comparisons were conducted through the existing standard. In general, PR assist the anchors to have higher pull-out capacities, lower displacement as well as leading smaller size of concrete cone failure. Due to PR, the internal tensile stress of concrete changed to compressive stress resisting greater pull-out force. The higher strain is obtained at near the top of the anchors and at the mid-span of PR. Furthermore, cracking patterns in concrete were mostly within the area between the anchor and PR. Post-installed reinforcement can be considered as a method to improve the performance of adhesive anchors under tensile loading. This is validated by the RBSM simulation, which agrees with the experimental results. (C) 2020 Elsevier Ltd. All rights reserved.
引用
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页数:14
相关论文
共 41 条
[11]  
Cook RA, 2001, ACI STRUCT J, V98, P76
[12]  
Cook RA, 1998, ACI STRUCT J, V95, P9
[13]   Experimental behaviour of anchor bolts under pullout and relaxation tests [J].
Delhomme, F. ;
Debicki, G. ;
Chaib, Z. .
CONSTRUCTION AND BUILDING MATERIALS, 2010, 24 (03) :266-274
[14]   Analytical investigation of the role of reinforcement in perpendicular beams of beam-column knee joints by 3D meso-scale model [J].
Eddy, Liyanto ;
Jiradilok, Punyawut ;
Matsumoto, Koji ;
Nagai, Kohei .
ENGINEERING STRUCTURES, 2020, 210
[15]   Numerical simulation of beam-column knee joints with mechanical anchorages by 3D rigid body spring model [J].
Eddy, Liyanto ;
Nagai, Kohei .
ENGINEERING STRUCTURES, 2016, 126 :547-558
[16]  
Eligehausen R., 2006, Anchorage in concrete construction, V10
[17]  
Eligehausen R, 2006, ACI STRUCT J, V103, P822
[18]   Behavior of adhesive bonded anchors under tension and shear loads [J].
Epackachi, Siamak ;
Esmaili, Omid ;
Mirghaderi, Seyed Rasoul ;
Behbahani, Ali Asghar Taheri .
JOURNAL OF CONSTRUCTIONAL STEEL RESEARCH, 2015, 114 :269-280
[19]   Proposal of bond behavior simulation model by using discretized voronoi mesh for concrete and beam element for reinforcement [J].
Farooq, Usman ;
Nakamura, Hikaru ;
Miura, Taito ;
Yamamoto, Yoshihito .
CEMENT & CONCRETE COMPOSITES, 2020, 110
[20]  
Fujikake K, 2003, ACI MATER J, V100, P246