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Cyclic behaviour of laterally skewed special moment frame connections having composite concrete slabs

机译:复合混凝土板的横向偏斜特殊力矩框架连接的循环行为

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This study presents a numerical investigation into the cyclic performance of skewed special moment frame (SMF) connections that include composite concrete slabs. The study uses advanced finite element simulations to investigate the behaviour of shallow (W14x), medium (W24x) and deep (W33x) steel column sections with three levels of beam skew (10, 20 and 30 degrees) for both bare-steel and composite (steel-concrete) construction. To account for complex torsional boundary conditions that may affect the skewed connection response, prequalification-type analyses were conducted considering the middle storey of a three-storey, two-way moment frame configuration. In the analyses, all skewed configurations achieved at least 0.04 rad of connection rotation during the cyclic loading protocol prior to a 20% reduction in moment capacity. When a composite concrete slab was added, column twisting and column flange yielding increased at large skew angles (30 degrees) during positive moment cycles.
机译:本研究介绍了包括复合混凝土板的偏斜特殊力矩框架(SMF)连接的循环性能的数值调查。 该研究采用先进的有限元模拟来研究浅(W14X),中(W24X)和深(W33x)钢柱部分的行为,用于裸钢和复合材料的三个梁偏斜(10,20和30度) (钢混凝土)施工。 为了考虑可能影响偏斜连接响应的复杂扭转边界条件,考虑到三层,双向时刻框架配置的中间层进行了预填种型分析。 在分析中,在循环加载方案期间,在循环加载方案之前,在力矩容量降低20%之前,所有偏斜配置在循环加载方案期间实现了至少0.04Rad的连接旋转。 当添加复合混凝土板时,在正片循环期间,柱扭曲和柱法兰屈服于大的偏斜角度(30度)。

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