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Investigation of Sand Lightweight Concrete Beam-Column Joints Subjected to Quasi-Static Loading.

机译:准静态荷载作用下轻质混凝土梁柱节点的研究。

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摘要

The use of sand-lightweight concrete made with expanded shale aggregate is prevalent throughout the United States and other developed countries. Sand-lightweight concrete is approximately twenty percent lighter than its normalweight counterpart. Lateral earthquake forces applied to a building structure are directly proportional to its mass, so the potential for better seismic performance is clear. Unfortunately, concrete made with lightweight aggregate behaves differently in key aspects when compared to normalweight concrete that can negate its design force reducing advantage. Specifically, lightweight concrete is more brittle in nature than normalweight concrete and as such is less ductile. Ductility is key in seismic design because the structure must be able to absorb the energy produced by the earthquake.;This study focused on determining the particular behavior of reinforced sand-lightweight concrete beam-column joints of moment frame buildings under a quasi-static cyclical loading that simulated a seismic event. Six half-scale experimental test specimens and sixty-five non-linear finite element models were used to evaluate the performance of the joints. The experimental portion of this study found that if designed and detailed in accordance with ACI 318-11 standards and if joint shear stress is kept within a reasonable limit, sand-lightweight beam column joints can perform as well as similarly built normalweight concrete specimens. This finding was true even for concrete compressive strengths up to 8000 pounds per square inch. The parametric finite element modeling portion of this study showed the effect on joint performance by varying the following four key parameters: the compressive strength of concrete, the amount of joint shear reinforcement, the longitudinal beam steel reinforcement ratio, and the axial load applied to the column.
机译:在整个美国和其他发达国家中,普遍使用由膨胀的页岩骨料制成的轻质沙子混凝土。轻质沙质混凝土比普通轻质混凝土轻约百分之二十。施加在建筑物结构上的横向地震力与质量成正比,因此可以清楚地看到提高地震性能的潜力。不幸的是,与普通重量混凝土相比,用轻质骨料制成的混凝土在关键方面的表现有所不同,而普通重量混凝土可以抵消其降低设计力的优势。具体而言,轻质混凝土在本质上比普通重量混凝土更脆,因此延展性较小。延性是抗震设计的关键,因为结构必须能够吸收地震产生的能量。这项研究的重点是确定准静态周期性荷载作用下框架结构的轻型钢筋混凝土梁柱节点的特殊性能。模拟地震事件的载荷。六个半规模的试验样本和六十五个非线性有限元模型用于评估接头的性能。这项研究的实验部分发现,如果按照ACI 318-11标准进行设计和详细设计,并且将接缝剪应力保持在合理的范围内,那么轻型梁柱连接件的性能可以与普通重量的混凝土标本相同。即使对于抗压强度高达每平方英寸8000磅的混凝土,这一发现也是正确的。本研究的参数化有限元建模部分通过更改以下四个关键参数来显示对接缝性能的影响:混凝土的抗压强度,接缝抗剪钢筋的数量,纵梁钢筋的配比以及施加于钢筋混凝土的轴向载荷柱。

著录项

  • 作者

    Decker, Curtis L.;

  • 作者单位

    University of Illinois at Chicago.;

  • 授予单位 University of Illinois at Chicago.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 388 p.
  • 总页数 388
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遥感技术;
  • 关键词

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