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Cyclic loading test of double K-braced reinforced concrete frame subassemblies with buckling restrained braces

机译:带有屈曲约束支撑的双K支撑钢筋混凝土框架组件的循环荷载试验

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Although the unbalanced brace force at the mid-length of columns discourages the use of K-or double K bracing in concentrically braced frames, this limitation needs re-evaluation when K-or double K-bracing is implemented in buckling restrained braced frames. Unlike ordinary steel braces, buckling restrained braces (BRBs) exhibit almost identical behavior in tension and compression, and to arrange BRBs in a double K configuration may provide an efficient solution of connecting BRBs to reinforced concrete members by exempting the steel-to-concrete interface from unfavorable tensile force. Three 1/2-scaled one-story one-span subassemblies were subjected to cyclic loading to examine the above idea. Two Of the specimens were braced by BRBs in double K configuration, whilst the other was a bare frame for comparison. During the test, the BRBs performed as intended in both tension and compression. The RC frames in the braced specimens were only moderately damaged at 1% inter-story drift when the BRB cores sustained large plastic strain. The damage patterns of the braced RC frames were similar to that of the bare frame throughout the loading process up to 2% inter-story drift. No cracks were observed at the mid-length of the columns or the mid-span of the beams where the BRBs were connected. (C) 2017 Elsevier Ltd. All rights reserved.
机译:尽管在支柱的中间长度处不平衡的支撑力不鼓励在同心支撑框架中使用K或双K支撑,但是在屈曲约束支撑框架中实施K或双K支撑时,需要重新评估此限制。与普通的钢制支撑不同,屈曲约束式支撑(BRB)在拉伸和压缩方面表现出几乎相同的行为,并且将BRB布置为双K构造可通过免除钢与混凝土的界面,提供将BRB与钢筋混凝土构件连接的有效解决方案。不利的拉力。对三个1/2比例的1层单跨子组件进行循环加载以检验上述想法。其中两个标本采用双K构型的BRB支撑,而另一个标本则是一个裸露的框架。在测试过程中,BRB在拉伸和压缩方面均达到了预期的效果。当BRB芯承受较大的塑性应变时,支撑样品中的RC框架仅在1%的层间偏移时受到中等程度的破坏。在整个加载过程中,高达2%的层间位移,支撑式RC框架的损伤模式与裸框架相似。在连接BRB的柱的中部或梁的中跨处未观察到裂纹。 (C)2017 Elsevier Ltd.保留所有权利。

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