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首页> 外文期刊>Steel & Composite Structures: An International Journal >Influence of steel-concrete interaction in dissipative zones of frames: II - Numerical study
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Influence of steel-concrete interaction in dissipative zones of frames: II - Numerical study

机译:钢-混凝土相互作用对框架耗散区的影响:II-数值研究

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摘要

In the case of seismic-resistant composite dual moment resisting and eccentrically braced frames, the current design practice is to avoid the disposition of shear connectors in the expected plastic zones, and consequently to consider a symmetric moment or shear plastic hinges, which occur only in the steel beam or link. Even without connectors, the real behavior of the hinge may be different from the symmetric assumption since the reinforced concrete slab is connected to the steel element close to the hinge locations, and also due to contact friction between the concrete slab and the steel element. At a larger level, the structural response in the case of important seismic motions depends directly on the elasto-plastic behavior of elements and hinges. The numerical investigation presented in this study summarizes the results of elasto-plastic analyses of several steel frames, considering the interaction of the steel beam with the concrete slab. Several parameters, such as the inter-story drift, plastic rotation requirements and behavior factors q were monitored. In order to obtain accurate results, adequate models of plastic hinges are proposed for both the composite short link and composite reduced beam sections.
机译:对于抗震的复合双抗弯和偏心支撑框架,当前的设计实践是避免将剪切连接器布置在预期的塑料区域中,因此考虑对称的弯矩或剪切塑料铰链,这种情况仅在钢梁或链节。即使没有连接器,铰链的实际行为也可能与对称假设有所不同,因为钢筋混凝土楼板在靠近铰链位置处连接到钢构件,并且还由于混凝土板和钢构件之间的接触摩擦。在更大的程度上,重要地震运动情况下的结构响应直接取决于元件和铰链的弹塑性行为。考虑到钢梁与混凝土板的相互作用,本研究中进行的数值研究总结了几种钢框架的弹塑性分析结果。监测了一些参数,例如层间漂移,塑性旋转要求和行为因子q。为了获得准确的结果,针对复合短链节和复合材料减小梁截面提出了合适的塑料铰链模型。

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