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首页> 外文期刊>Circuits and systems >Finite Element Analysis (FEA) for the Beam-Column Joint Subjected to Cyclic Loading Was Performed Using ANSYS
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Finite Element Analysis (FEA) for the Beam-Column Joint Subjected to Cyclic Loading Was Performed Using ANSYS

机译:利用ANSYS对承受循环荷载的梁柱节点进行了有限元分析(FEA)。

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摘要

This paper analyses the seismic performance of exterior beam-column joints strengthened with unconventional reinforcement detailing. The beam-column joint specimens were tested with reverse cyclic loading applied at the beam end. The samples were divided into two groups based on the joint reinforcement detailing. The first group (Group A) of three non-ductility specimens had joint detailing in accordance with the construction code of practice in India IS456-2000, and the second group (Group B) of three ductility specimens had joint reinforcement detailed as per IS13920-1993, with similar axial load cases as the first group. The experimental studies are proven with the analytical studies carried out by finite element models using ANSYS. The results show that the hysteresis simulation is satisfactory for both un-strengthened and ferrocement strengthened specimens. Furthermore, when ferrocement strengthening is employed, the strengthened beam-column joints exhibit better structural performance than the un-strengthened specimens of about 31.56% and 38.98 for DD-T1 and DD-T2 respectively. The analytical shear strength predictions were in line with the test results reported in the literature, thus adding confidence to the validity of the proposed models.
机译:本文分析了采用非常规加固细节加固的外部梁柱节点的抗震性能。在梁末端施加反向循环载荷的情况下,对梁柱接头样本进行了测试。根据接头的钢筋细部将样品分为两组。根据印度IS456-2000的施工规范,第一组(A组)的三个非延性试样进行了接头细化,而第二组(B组)的三个延性的试样按照IS13920-进行了详细的接头加固。 1993年,轴向载荷工况与第一组相似。通过ANSYS有限元模型进行的分析研究证明了实验研究的正确性。结果表明,滞后模拟对于未加强和钢筋加固的试样都是令人满意的。此外,当采用钢筋混凝土加固时,与未加固的试样相比,加固的梁柱节点的结构性能要好于DD-T1和DD-T2的31.56%和38.98。分析抗剪强度的预测与文献报道的测试结果一致,从而增加了所提出模型有效性的信心。

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