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Experimental and analytical assessment of columns with short lap splices subjected to cyclic loads.

机译:具有短搭接接头的圆柱承受循环载荷的实验和分析评估。

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摘要

Splices in reinforced concrete columns in older buildings, or within the nonparticipating frames in some newer buildings, were typically designed as compression lap splices. Compression lap lengths are typically short (20 to 24db), and only light transverse reinforcement is provided over the lap length. Observations of column damage following earthquakes have revealed that these splices perform poorly; however, relatively sparse information exists to assess the expected performance for typical conditions. To address these needs full-scale columns were tested under a variety of conditions. The test specimens consisted of cantilever columns with a point load applied at the top. The 450 mm square column sections were tested under reversed cyclic lateral load with constant axial load. The primary variables include the level of axial load, the ratio of moment to shear, and the load history. Information on the test program, experimental observations, experimental and analytical results and conclusions are presented herein.; All columns showed nonductile response with limited energy dissipation capacity. Bond deterioration followed by lateral strength degradation was observed around 1.5% lateral drift. Specimens with intermediate and high axial load lost their axial load carrying capacity at 7 and 5% lateral drift respectively.; Uniaxial local bond stress versus slip material models were used to calculate the moment versus slip rotation response. The model was subjected to constant axial load and increasing displacement. The calculated peak lateral load for the model agreed closely with the peak loads obtained in the tests. However, the monotonic moment versus slip rotation response underestimated the lateral drift (or rotation) at which lateral strength degradation initiates.
机译:通常将旧建筑中钢筋混凝土柱中的接头或某些新建筑中非参与框架中的接头设计为压缩搭接接头。压缩搭接长度通常很短(20至24db),并且在搭接长度上仅提供了轻的横向增强。地震后对柱破坏的观察表明,这些接头的性能较差。但是,存在相对稀疏的信息来评估典型条件下的预期性能。为了满足这些需求,在各种条件下对全尺寸色谱柱进行了测试。测试样品由悬臂柱组成,顶部施加点载荷。 450毫米方柱的截面在恒定轴向载荷的反向循环侧向载荷下进行了测试。主要变量包括轴向载荷水平,弯矩与剪切比以及载荷历史。本文介绍了有关测试程序,实验观察,实验和分析结果以及结论的信息。所有色谱柱均显示出非延性响应,且耗能能力有限。在1.5%左右的侧向漂移处观察到粘结强度下降,然后横向强度下降。中等和高轴向载荷的试样分别在7和5%的侧向位移时丧失了轴向载荷的能力。使用单轴局部粘结应力与滑移材料模型来计算弯矩与滑移旋转响应。该模型承受恒定的轴向载荷并增加位移。模型的计算峰值横向载荷与测试中获得的峰值载荷非常吻合。但是,单调力矩与滑移旋转响应低估了侧向强度开始发生的侧向漂移(或旋转)。

著录项

  • 作者

    Melek, Murat.;

  • 作者单位

    University of California, Los Angeles.;

  • 授予单位 University of California, Los Angeles.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 266 p.
  • 总页数 266
  • 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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