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Experimental Observations of Masonry Infilled Reinforced Concrete Frames with Openings

机译:带孔砌体填充钢筋混凝土框架的试验观察

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The paper summarizes the main experimental findings of a test program at the University of Colorado, Boulder on 2/3-scale unreinforced masonry walls bounded by nonductile reinforced concrete frames. The test program was carried out within the frame of a NEESR-SG project headed by Benson Shing at UC San Diego. The cyclic pushover tests on single panels involved two-wythe masonry walls of solid clay bricks with and without window and door openings. The infilled frames were preloaded in the vertical direction by two jacks at 35 kips (156 kN) each to emulate the confinement of a multistory building. Cyclic lateral shear loads of increasing amplitude were applied by the high-performance 220 kip (979 KN) MTS actuator of the Colorado NEES equipment facility.rnThe counterintuitive observations of the test program were the small effects of window and door openings on the overall stiffness and strength properties of the masonry infilled reinforced concrete frames. In fact, the initial elastic stiffness properties exhibited no significant stiffness degradation compared withthe full masonry wall when window and door openings were included in the masonry wall. Moreover, the maximum shear resistance and the residual shear capacity after loss of adhesion did not exhibit significant deterioration when window or door openings were included. In addition, the eccentricity of the window and door openings had little influence on the cyclic performance of the pushover tests when compared with the performance of the masonry wall without opening. In conclusion, the infill masonry walls exhibited surprising resilience up to drift levels of 2% in spite of the brittle nature of unreinforced masonry and nonductile bounding reinforced frames. This apparent ductility of the brittle composite components may be attributed to the overall confinement of the reinforced concrete bounding frame and the vertical preloading.
机译:这篇论文总结了科罗拉多大学博尔德分校的测试程序的主要实验结果,该测试程序以2/3比例的无筋砌体墙为边界,这些墙以非延性钢筋混凝土框架为界。该测试程序是在圣地亚哥加州大学本森·申领导的NEESR-SG项目框架内进行的。在单块面板上的循环推覆测试涉及两层实心砖的砌体墙,有无窗户和门孔。填充的框架通过两个千斤顶在垂直方向上预加载,每个千斤顶分别为35 kips(156 kN),以模拟多层建筑物的局限性。科罗拉多州NEES设备设施的高性能220 kip(979 KN)MTS执行器施加了振幅不断增大的周期性横向剪力。该测试程序的反直观观察结果是,门窗开口对整体刚度和砌体填充钢筋混凝土框架的强度特性。实际上,当在砌体墙中包括门窗开口时,与整个砌体墙相比,初始弹性刚度特性没有表现出明显的刚度降低。此外,当包括窗户或门的开口时,最大的抗剪切强度和失去粘合性后的残余剪切能力没有显着降低。另外,与没有开孔的砌体墙的性能相比,门窗开孔的偏心率对推覆试验的循环性能影响很小。总而言之,尽管未加固的砌体和非延性边界加固框架的脆性,但填充砌体墙仍显示出令人惊讶的回弹力,直至2%的漂移水平。脆性复合材料组件的这种明显的延展性可以归因于钢筋混凝土边界框架的整体限制和垂直预紧力。

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