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首页> 外文期刊>Steel & Composite Structures: An International Journal >Cyclic behavior of steel beam-concrete wall connections with embedded steel columns (II): Theoretical study
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Cyclic behavior of steel beam-concrete wall connections with embedded steel columns (II): Theoretical study

机译:嵌入式钢柱钢梁混凝土墙连接的循环行为(II):理论研究

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This paper theoretically studies the cyclic behavior of hybrid connections between steel coupling beams and concrete shear walls with embedded steel columns. Finite element models of connections with long and short embedded steel columns are built in ABAQUS and validated against the test results in the companion paper. Parametric studies are carried out using the validated FE model to determine the key influencing factors on the load-bearing capacity of connections. A close-form solution of the load-bearing capacity of connections is proposed by considering the contributions from the compressive strength of concrete at the interface between the embedded beam and concrete, shear yielding of column web in the tensile region, and shear capacity of column web and concrete in joint zone. The results show that the bond slip between embedded steel members and concrete should be considered which can be simulated by defining contact boundary conditions. It is found that the load-bearing capacity of connections strongly depends on the section height, flange width and web thickness of the embedded column. The accuracy of the proposed calculation method is validated against test results and also verified against FE results (with differences within 10%). It is recommended that embedded steel columns should be placed along the entire height of shear walls to facilitate construction and enhance the ductility. The thickness and section height of embedded columns should be increased to enhance the load-bearing capacity of connections. The stirrups in the joint zone should be strengthened and embedded columns with very small section height should be avoided.
机译:本文理论上地研究了钢结构梁和混凝土剪力墙与嵌入式钢柱之间的混合连接的循环行为。有限元模型与长嵌入式钢柱的连接内置于ABAQUS中,并验证了伴随纸张的测试结果。参数研究使用验证的FE模型进行,以确定对连接承载能力的关键影响因素。提出了连接承载能力的紧密溶液,提出了通过在嵌入式梁和混凝土的界面之间的界面处的宽压,柱网中的螺旋区域的剪切产生的界面,以及柱的剪切能力联合区的网和混凝土。结果表明,应考虑嵌入钢构件和混凝土之间的键合滑动,其可以通过定义接触边界条件来模拟。发现连接的承载能力强烈取决于嵌入式柱的截面高度,法兰宽度和幅材厚度。验证了所提出的计算方法的准确性针对测试结果验证,并验证了FE结果(10%以内的差异)。建议沿着剪力墙的整个高度放置嵌入式钢柱,以便于施工并增强延展性。应增加嵌入式柱的厚度和段高度,以增强连接的承载能力。应加强接头区域的马镫,应避免嵌入式高度的嵌入色谱柱。

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