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Seismic behavior of reinforced concrete squat walls with high strength reinforcements: An experimental study

机译:高强度增强件钢筋混凝土蹲墙的地震行为:实验研究

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摘要

A total of 15 squat reinforced concrete (RC) shear walls (12 of them were reinforced with high strength reinforcement of HRB600 [Grade 600MPa] and the remaining 3 with normal grade reinforcement of HRB400 [Grade 400MPa]) have been tested under the cyclic loading. The influencing parameters considered in the test specimens include the grade of reinforcement, axial load ratio, types of cross section, and reinforcement ratio. The seismic performances of the squat RC shear walls have been studied using the test results based on the failure mode, hysteretic behaviors, peak shear strength, deformation capacity, secant stiffness degradation, and inelastic energy dissipation capacity. The test results reveal that the failure modes of the walls with HRB600 steel bars are similar to those walls with HRB400 reinforcement. The walls with high strength reinforcement tend to achieve a larger ultimate deformation but slightly lower load carrying capacity. Both the initial stiffness and energy dissipation of the specimen hysteretic curves decrease as the reinforcement ratio increases and the parameters of cross section and reinforcement ratios have more significant effect on the seismic behavior of shear walls than that by the axial load ratio. Comparing with the walls reinforced with lower reinforcement ratio, the ones with higher reinforcement ratio exhibit larger and better peak load and deformation capacities. Shear walls with symmetrical cross section have better seismic performance than those having the asymmetric ones. When the specimens are subjected to the peak load, the stress in 90% horizontal reinforcement could reach 425 and 385MPa for the 95% horizontal reinforcement.
机译:在循环载荷下,共有15个蹲伏的混凝土(RC)剪力墙(其中12个具有高强度增强HRB600 [级600MPa]的剩余级别,并且剩余的3级具有正常的HRB400 [级400MPA]) 。在试验标本中考虑的影响参数包括增强级,轴向载率,横截面类型和加强率。已经使用基于故障模式,滞后行为,峰值剪切强度,变形容量,线刚度降解和非弹性能量耗散能力来研究蹲型RC剪切墙的地震性能。测试结果表明,带有HRB600钢筋的墙壁的故障模式与具有HRB400加固的墙壁类似。具有高强度增强件的墙壁倾向于实现更大的极限变形,但略低载荷承载能力。随着增强率的增加,样品滞后曲线的初始刚度和能量耗散减小,并且横截面和加强比的参数对剪切壁的地震行为产生了更大的影响而不是通过轴向载荷比。与较低的加强率加强的墙壁相比,具有较高的加强比的墙体表现出较大且更好的峰值负荷和变形能力。具有对称横截面的剪力墙具有比具有不对称的抗震性能更好。当样品进行峰值载荷时,90%水平加强件中的应力可以达到425和385MPa,用于95%的水平加强件。

著录项

  • 来源
    《Structural concrete》 |2019年第3期|911-931|共21页
  • 作者单位

    Chongqing Univ Minist Educ Key Lab New Technol Construct Cities Mt Area Chongqing Peoples R China|China Met Construct Engn Grp Co Ltd Informat & Technol R&D Ctr Chongqing Peoples R China;

    Chongqing Univ Minist Educ Key Lab New Technol Construct Cities Mt Area Chongqing Peoples R China;

    Chongqing Univ Minist Educ Key Lab New Technol Construct Cities Mt Area Chongqing Peoples R China;

    Chongqing Univ Minist Educ Key Lab New Technol Construct Cities Mt Area Chongqing Peoples R China;

    Ontario Power Generat Dept Engn Mech Pickering ON Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    high strength reinforcement; hysteretic behaviors; reinforcement stress; seismic performance; squat RC shear wall;

    机译:高强度加固;滞回行为;加固应力;地震性能;蹲型RC剪力墙;

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