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Shake table tests and analytical studies of reinforced and post -tensioned concrete flat plate frames.

机译:钢筋混凝土和后张混凝土平板框架的振动台试验和分析研究。

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摘要

Use of flat plate floor systems consisting of a conventional or post-tensioned reinforced concrete slab-column system incorporating shear reinforcement within the slab-column connection region has become increasingly popular for non-participating systems in high seismic zones. However, relatively sparse experimental data are available to assess the dynamic responses and performance of such systems, particularly for post-tensioned systems. To address these gaps, shake table tests of two, approximately one-third scale, two-bay by two story flat plate frames with shear (stud-rails) reinforcement were conducted. One of the specimens consisted of a conventional reinforced concrete flat plate (RC specimen), whereas the other specimen consisted of nominally reinforced flat plate with post-tensioning reinforcement (PT specimen). The specimens were subjected to gravity loads and increasing intensity of uniaxial base acceleration histories. The shear reinforcement in the tested specimens limiting punching damage compared with tests (by others) on specimens without shear reinforcement. The post-tensioned slab-column frames performed well, verifying that this commonly used system is effective. Although slab-column punching failures occurred during the tests, lateral drift ratios of approximately 3% and 4% were achieved during testing for the RC and PT frames, respectively, with relatively little loss of lateral load capacity. The inter-story drift ratios at which punching failures occurred were evaluated. The present results on gravity stress ratios and lateral drift ratios at punching were compared to prior studies to assess the influence of test parameters on the punching shear capacity of the connections. The drift ratios at punching failures for the specimens tested were substantially less than reported for quasi-static tests of isolated connections, possibly due to loss of interface shear capacity at the slab-column connection. (Abstract shortened by UMI.).
机译:在高地震区的非参与系统中,越来越多地使用由常规或后张预应力钢筋混凝土板-柱系统组成的平板地板系统,并在板-柱连接区域内结合抗剪加固。但是,相对稀疏的实验数据可用于评估此类系统的动态响应和性能,尤其是对于后张紧的系统。为了解决这些差距,进行了两个约三分之一的比例,两格乘以两层带剪切力(螺柱导轨)的平板框架的振动台试验。其中一个标本由常规的钢筋混凝土平板(RC标本)组成,而另一个标本由标称带有后张拉筋的钢筋平板(PT标本)组成。样品承受重力载荷并增加单轴基础加速度历史的强度。与没有其他剪切增强的样品相比,被测样品的剪切增强与其他测试相比,可以限制冲孔损伤。后张拉的平板-柱框架表现良好,证明该常用系统是有效的。尽管在测试过程中发生板柱穿孔失败,但在RC和PT框架的测试过程中,分别获得了约3%和4%的侧向漂移率,而侧向承载能力的损失却相对较小。评估发生穿孔失败时的层间漂移率。将当前在冲压时的重力应力比和横向漂移比的结果与现有研究进行比较,以评估测试参数对连接件的冲压剪切能力的影响。测试的样品在冲孔失败时的漂移率大大低于隔离连接的准静态测试的报告,这可能是由于板-柱连接处的界面剪切能力的损失。 (摘要由UMI缩短。)。

著录项

  • 作者

    Kang, Thomas Hyun-Koo.;

  • 作者单位

    University of California, Los Angeles.;

  • 授予单位 University of California, Los Angeles.;
  • 学科 Civil engineering.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 309 p.
  • 总页数 309
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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