Finite Element Analysis of Pushout Test for Stirrup Shear Connector

Hussein Lazim, N. Jasim
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Abstract

This numerical study was conducted to simulate and analyze the pushout test for the new shear connector in a new steel-concrete composite system. In this system, the shear stirrups of the reinforced concrete beam are used as shear connectors when passed through holes drilled in the web of inverted steel T-section. The numerical analysis was performed by creating a three-dimensional finite element model using the finite element program ANSYS 21 student version to simulate the behavior of the new innovative shear connectors. The pushout specimens analyzed in this study have been tested experimentally by the same researchers earlier. A total of fifty-six push-out specimens were modeled and analyzed to investigate the effect of many parameters on the shear strength and slip capacity of the shear connector. The parameters studied in this investigation were the specimen dimensions (length and width), the diameter of stirrups (shear connector), the number of connectors per specimen, concrete strength, size of T-section, and shape of the specimen. The finite element analysis using ANSYS gave a good prediction of the effect of studied parameters on connector strength, the failure modes, the form and intensity of deformations in the model, and the load-slip response. The maximum difference in connector strength which was observed between the numerical and experimental results was 15 %.
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箍筋剪力连接件推拔试验的有限元分析
对新型钢-混凝土组合体系中新型剪力连接件的推拔试验进行了数值模拟和分析。在该系统中,钢筋混凝土梁的剪力箍在穿过倒t型钢腹板的孔时作为剪力连接件。采用ANSYS 21学生版有限元软件建立三维有限元模型,模拟新型剪力连接件的受力特性。本研究中分析的推出样本已经由相同的研究人员早些时候进行了实验测试。对56个推拔试件进行了建模分析,探讨了多个参数对剪力连接件抗剪强度和滑移能力的影响。本次调查研究的参数包括试件尺寸(长度和宽度)、箍筋(剪切接头)直径、每个试件的接头数量、混凝土强度、t形截面尺寸和试件形状。利用ANSYS进行有限元分析,较好地预测了所研究参数对连接器强度、破坏模式、模型变形形式和强度以及载荷-滑移响应的影响。数值结果与实验结果的最大差异为15%。
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