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Numerical investigation seismic performance of rigid skewed beam-to-column connection with reduced beam section

机译:减小梁截面的刚性斜梁-柱连接的抗震性能数值研究

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Reduced beam section (RBS) moment resisting connections are among the most economical and practical rigid steel connections developed in the aftermath of the 1994 Northridge and the 1995 Kobe earthquakes. Although the performance of RBS connection has been widely studied, this connection has not been subject to in the skewed conditions. In this study, the seismic performance of dogbone connection was investigated at different angles. The Commercial ABAQUS software was used to simulate the samples. The numerical results are first compared with experimental results to verify the accuracy. Nonlinear static analysis with von Mises yield criterion materials and the finite elements method were used to analyze the behavior of the samples The selected Hardening Strain of materials at cyclic loading and monotonic loading were kinematics and isotropic respectively The results show that in addition to reverse twisting of columns, change in beam angle relative to the central axis of the column has little impact on hysteresis response of samples. Any increase in the angle, leads to increased non-elastic resistance. As for Weak panel zone, with increase of the angle between the beam and the column, the initial submission will take place at a later time and at a larger rotation angle in the panel zone and this represents reduced amount of perpendicular force exerted on the column flange. In balanced and strong panel zones, with increase in the angle between the beam and the central axis of the column, the reduced beam section (RBS), reaches the failure limit faster and at a lower rotation angle. In connection of skewed beam, balanced panel zone, due to its good performance in disposition of plasticity process away from connection points and high energy absorption, is the best choice for panel zone. The ratio of maximum moment developed on the column was found to be within 0.84 to 1 plastic anchor point, which shows prevention of brittle fracture in connections.
机译:减小横梁截面(RBS)的抗弯矩连接是1994年Northridge和1995年神户地震后开发的最经济,最实用的刚性钢连接之一。尽管已对RBS连接的性能进行了广泛的研究,但此连接在倾斜条件下并未受到影响。在这项研究中,以不同角度研究了狗骨形连接的抗震性能。商业ABAQUS软件用于模拟样品。首先将数值结果与实验结果进行比较,以验证准确性。用von Mises屈服准则材料的非线性静态分析和有限元法分析样品的行为。材料在循环载荷和单调载荷下的选定硬化应变分别是运动学和各向同性。柱相对于柱中心轴的光束角变化对样品的滞后响应影响很小。角度的任何增加都会导致增加的非弹性阻力。对于较弱的面板区域,随着梁和柱之间的角度增加,初始提交将在以后的时间进行,并且面板区域中的旋转角度会更大,这表示减小了施加在柱上的垂直力法兰。在平衡且坚固的面板区域中,随着梁与柱中心轴之间的角度增加,减小的梁截面(RBS)会以较低的旋转角度更快达到破坏极限。在偏斜梁的连接中,平衡的面板区域由于在远离连接点的可塑性处理方面表现出良好的性能,并且能量吸收高,因此是面板区域的最佳选择。发现在柱上产生的最大弯矩的比率在0.84到1的塑料锚固点之内,这表明可以防止连接中的脆性断裂。

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