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Seismic behavior of eccentric reinforced concrete beam-column-slab connections.

机译:偏心钢筋混凝土梁-柱-平板连接的抗震性能。

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摘要

One of the primary goals of this research program was to develop a joint model that accounts for deterioration of shear strength and stiffness within the beam-to-column connection region. Prior experimental data did not provide enough information on the inelastic behavior of connections to establish such a model. Therefore, an experimental study was conducted, focusing on the effect of the eccentricity of spandrel beams with respect to the column, beam and column section aspect ratios, and slab participation.; Three 3/4-scale exterior reinforced concrete beam-column-slab subassemblies were tested, in which the spandrel beam centerline was eccentric to the centroidal axis of the column. Lateral load was applied in two principal directions, one plane at a time, to determine the effect of prior loading on performance of the connection. Loading in the spandrel beam direction allowed a direct correlation between these three-dimensional specimens and prior testing of planar specimens without the floor system.; The experimental results indicated that including the floor system significantly reduced the influence of eccentricity on the seismic behavior of the connection. When the specimens were compared to previous tests, it was observed that the damage in the connection was not as severe, the specimens had full hysteresis loops with high energy dissipation capacities, and the deterioration of joint shear stiffness and strength were delayed.; Joint shear distortions contributed significantly to the total story drift for all subassemblies. Therefore, the experimental data on joint distortion was used, in conjunction with previously obtained data, to develop an analytical model of the inelastic deformations of beam-column-slab connections. The joint model was calibrated by comparing the dynamic analysis results for the specimens with experimental data.; Dynamic time history analyses were performed for a sample frame building with eccentric and concentric connections. It was observed that if a deformable joint model was not included in the structural model, story drifts were underestimated significantly. Therefore, a model of the joint is necessary for accurately determining the required lateral stiffness of a reinforced concrete building subjected to earthquake ground motions.
机译:该研究计划的主要目标之一是建立一个共同的模型,解决梁到柱连接区域内的抗剪强度和刚度下降的问题。先前的实验数据没有提供足够的关于连接的非弹性行为的信息以建立这样的模型。因此,进行了一项实验研究,重点研究了跨度梁的偏心度对立柱,梁和立柱截面的长宽比以及平板参与度的影响。测试了三个3/4比例的外部钢筋混凝土梁-柱-楼板子组合件,其中,跨度梁的中心线偏心于圆柱的质心轴。在两个主要方向上施加横向载荷,一次施加一个平面,以确定先前载荷对连接性能的影响。沿翼展梁方向的载荷允许这些三维试样与之前没有地板系统的平面试样的直接相关。实验结果表明,包括地板系统在内,可以显着降低偏心率对连接处地震行为的影响。当将样品与以前的测试进行比较时,观察到连接处的损坏没有那么严重,样品具有充分的磁滞回线,具有较高的耗能能力,并且延迟了接头剪切刚度和强度的降低。联合剪切变形极大地影响了所有子装配的总楼层偏移。因此,结合先前获得的数据,使用了关于接头变形的实验数据,以建立梁-柱-平板连接的非弹性变形的分析模型。通过将样品的动态分析结果与实验数据进行比较来校准联合模型。对具有偏心和同心连接的样品框架进行了动态时程分析。据观察,如果结构模型中不包括可变形的关节模型,则故事漂移会被低估。因此,为了准确确定承受地震地震动的钢筋混凝土建筑所需的侧向刚度,必须使用关节模型。

著录项

  • 作者

    Burak, Burcu.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 212 p.
  • 总页数 212
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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