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The influence of axial load and prestress on the shear strength of web-shear critical reinforced concrete elements.

机译:轴向载荷和预应力对腹板剪临界钢筋混凝土构件抗剪强度的影响。

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摘要

Experimental research was conducted to investigate the influence of axial load and prestress on the shear strength of web-shear critical reinforced concrete elements. The ability of two design codes, the ACI code and the CSA code, to accurately predict the shear strength of web-shear critical reinforced concrete elements was investigated through two sets of experiments performed for this thesis, the panel tests and the beam tests. The experimental results indicated that the CSA code provided better predictions for the shear strength of web-shear critical reinforced concrete members subjected to combined axial force and shear force than the ACI code.;The experimental results from the panel tests and the beam tests followed a similar trend of variations. Both the inclined cracking strength and the ultimate shear strength were increased by compression and were reduced by tension. The specimens subjected to very high compression failed explosively without developing many cracks. The inclined cracking strength could be predicted with good accuracy if the influence of the co-existing compression on the cracking strength of the concrete and the non-uniform distribution of the stresses over the depth of the cross-section were considered. The strength predictions using the ACI code for these tests were neither accurate nor consistent. The ACI code was unconservative for members subjected to compression and was excessively conservative for members subjected to tension. In contrast, the strength predictions using the CSA code for these tests were generally conservative and consistent. The CSA code accurately predicted the response of specimens subjected to compression and was somewhat conservative in predicting the shear strength of specimens subjected to tension.;A total of six panels, reinforced almost identically, were tested under different combinations of uni-axial stress and shear stress. In addition to the panel tests, a total of eleven I-shaped beams, with the same web thickness, were tested under different combinations of axial force and shear force. The parameters for these beams were the amount of longitudinal reinforcement, the amount of transverse reinforcement, and the thickness of the flanges. The beams were simply supported, but the loading geometry was specially designed to simulate the loading conditions in continuous beams near points of inflection.
机译:进行了实验研究,以研究轴向荷载和预应力对腹板剪临界钢筋混凝土构件抗剪强度的影响。本文通过两组试验,面板试验和梁试验,研究了两种设计规范(ACI规范和CSA规范)准确预测腹板剪切关键钢筋混凝土构件的抗剪强度的能力。实验结果表明,与ACI规范相比,CSA规范对承受轴向力和剪力的腹板剪力钢筋混凝土构件的抗剪强度提供了更好的预测;面板试验和梁试验的试验结果遵循相似的变化趋势。倾斜抗裂强度和极限剪切强度均通过压缩而增加,而通过拉伸而降低。受到极高压缩的试样爆炸失败而没有产生很多裂纹。如果考虑到共存压缩对混凝土抗裂强度的影响以及横截面深度上应力的不均匀分布,则可以准确预测倾斜的抗裂强度。使用ACI代码进行这些测试的强度预测既不准确也不一致。 ACI代码对于受压构件是不保守的,而对受拉构件则过于保守。相反,对于这些测试,使用CSA代码进行的强度预测通常是保守且一致的。 CSA代码准确地预测了受压样品的响应,并且在预测受拉样品的剪切强度时有些保守。;总共六块几乎相同加固的面板在单轴应力和剪切的不同组合下进行了测试强调。除面板测试外,在轴向力和剪切力的不同组合下,总共测试了11条具有相同腹板厚度的I形梁。这些梁的参数是纵向钢筋的数量,横向钢筋的数量以及法兰的厚度。梁仅受到简单支撑,但是荷载几何结构经过特殊设计,可以模拟拐点附近连续梁中的荷载情况。

著录项

  • 作者

    Xie, Liping.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 374 p.
  • 总页数 374
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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