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Compression behavior, strength, and ductility of confined concrete after inelastic tensile cyclic loading.

机译:无弹性拉伸循环荷载后承压混凝土的压缩行为,强度和延展性。

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摘要

In this investigation, confined concrete specimens were tested to study the effects of inelastic tensile cyclic loading of the longitudinal mild steel reinforcement embedded in a confined concrete core on the behavior, strength, and ductility of the confined concrete. Repeated inelastic tensile deformations of the longitudinal mild steel reinforcement bars inside the confined concrete core cause large cracks in the confined concrete. Whether these inelastic steel deformations and cracks in the concrete affect the compression behavior, strength, and ductility of the confined concrete is studied. The test specimens represent the critical confined concrete crushing height of the boundary zone confined concrete in a well-detailed reinforced concrete lateral-load-resisting wall. In this investigation, two identical 10 in. x 15 in. cross-section confined concrete test specimens were tested under two different ranges of quasi-static inelastic tensile cyclic loading. The first specimen was tested under increasing tensile cyclic loading up to 4 times the tensile yielding strain limit of the longitudinal mild steel reinforcement bars of the confined concrete core. Then, the specimen was failed under compression loading. The second specimen was tested under increasing tensile cyclic loading up to 16 times the tensile yielding strain limit of the longitudinal mild steel reinforcement bars of the confined concrete core. Then, the specimen was failed under compression loading. The test results for the two test specimens were compared to observe the effects of different levels of inelastic tensile cyclic loading of the longitudinal mild steel reinforcement bars inside the confined concrete. The test results were also compared with the theoretical results from previously developed confined concrete models under monotonic compression loading. These comparisons focused on the effects of tensile loading on the compression behavior, strength, and ductility of confined concrete under compression loading. The confined concrete compression behavior, strength, and ductility were similar for the two test specimens with the two different inelastic tensile cyclic loading ranges. The difference in peak compression strength was 4.5%. The axial force versus axial deformation curves for the two test specimens were similar. It was noted that after inelastic tensile deformation of the longitudinal mild steel reinforcement inside the confined concrete core, a compression load greater than the prior tensile load was required to close the cracks. In the inelastic tensile deformation load steps, the reversing compression strain in the reinforcement was small compared to the tensile strain. The compression stiffness and ductility of the confined concrete were not affected by inelastic tensile cyclic loading of the longitudinal mild steel reinforcement of the confined concrete core. There was a noticeable reduction in the compression strength of confined concrete. The peak compression strength of the confined concrete was smaller than the results of any of the theoretical confined concrete models that were considered.
机译:在这项研究中,对承压混凝土试样进行了测试,以研究嵌在承压混凝土芯中的纵向低碳钢增强材料的非弹性拉伸循环荷载对承压混凝土的性能,强度和延性的影响。承压混凝土芯内部纵向低碳钢筋的反复非弹性拉伸变形会导致承压混凝土产生大裂缝。研究了这些非弹性钢的变形和裂缝是否影响承压混凝土的压缩性能,强度和延性。测试样本代表了详细的钢筋混凝土抗侧墙中边界区域承压混凝土的临界承压混凝土破碎高度。在这项研究中,在两个不同范围的准静态非弹性拉伸循环载荷下测试了两个相同的10英寸x 15英寸横截面的受限混凝土试样。在不断增加的拉伸循环载荷下测试第一个样品,该载荷最大为承压混凝土芯的纵向低碳钢钢筋的拉伸屈服应变极限的4倍。然后,样品在压缩载荷下失效。在不断增加的拉伸循环载荷下测试第二个样品,该载荷高达承压混凝土芯的纵向低碳钢钢筋的拉伸屈服应变极限的16倍。然后,样品在压缩载荷下失效。比较了两个试样的测试结果,以观察承压混凝土内部纵向低碳钢筋的不同水平的非弹性拉伸循环载荷的影响。还将测试结果与先前开发的在单调压缩载荷下的承压混凝土模型的理论结果进行了比较。这些比较集中于拉伸载荷对压缩载荷下承压混凝土的压缩行为,强度和延性的影响。两种非弹性拉伸循环荷载范围不同的两个试样的承压混凝土压缩行为,强度和延性相似。峰值压缩强度之差为4.5%。两个试样的轴向力与轴向变形曲线相似。注意到在承压混凝土芯内部的纵向低碳钢增强材料进行非弹性拉伸变形后,需要大于先前拉伸载荷的压缩载荷来封闭裂缝。在非弹性拉伸变形载荷步骤中,与拉伸应变相比,钢筋中的反向压缩应变小。承压混凝土的压缩刚度和延展性不受承压混凝土芯的纵向低碳钢增强材料的无弹性拉伸循环载荷的影响。承压混凝土的抗压强度明显降低。承压混凝土的峰值抗压强度小于所考虑的任何理论承压混凝土模型的结果。

著录项

  • 作者

    Noor, Mujahid.;

  • 作者单位

    Lehigh University.;

  • 授予单位 Lehigh University.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2014
  • 页码 316 p.
  • 总页数 316
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:53

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