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Parametric Analysis on Seismic Performance of Hybrid Precast Concrete Beam-Column Joint

机译:混合式预制混凝土梁柱接头地震性能的参数分析

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摘要

In this paper, a nonlinear finite element (FE) analysis of high-performance hybrid system (HPHS) beam-column connections is presented. The detailed experimental results of the ten half-scale hybrid connections with limited seismic detailing have been discussed in a different paper. However, due to the inherent complexity of HPHS beam-column joints and the unique features of the tested specimens, the experimental study was not comprehensive enough. The new connection (HPHS) detail suggested in this study is characterized by ductile connection, steel connectors, and engineered cementitious composite (ECC) which is a kind of high-performance fiber reinforced cement composite with multiple fine cracks (HPFRCCs). Therefore, in this paper, FE analysis results are compared with experimental results from the cycle tests of the two specimens (RC and PC) to assess model accuracy, and detailed model descriptions are presented, including the determination of stiffness and strength. The critical parameters influencing the joint’s behavior are the axial load on column, beam connection steel plate length, inner bolt stress contribution, and plastic hinge area.
机译:本文介绍了高性能混合系统(HPHS)光束柱连接的非线性有限元(FE)分析。在不同的纸上讨论了具有有限地震细节的10个半规模混合连接的详细实验结果。然而,由于HPHS梁柱关节的固有复杂性和测试标本的独特特征,实验研究足够全面。本研究建议的新连接(HPHS)细节的特点是韧性连接,钢连接器和工程化的胶凝复合材料(ECC),其是一种具有多种细裂纹(HPFRCC)的高性能纤维增强水泥复合材料。因此,在本文中,将Fe分析结果与来自两个试样(RC和PC)的循环试验的实验结果进行比较,以评估模型精度,并提出了详细的模型描述,包括确定刚度和强度的测定。影响关节行为的关键参数是柱,梁连接钢板长度,内螺栓应力贡献和塑料铰链区域的轴向载荷。

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