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Experimental and Simulation Study on Seismic Behavior of Beam-Column Joints with Cast Steel Stiffener

机译:铸钢加劲肋梁柱节点的抗震性能试验与模拟研究

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A series of six full-scale cruciform H-shaped beam to square tube column joint with cast steel stiffener specimens was tested under cyclic loading to study the seismic behavior of the new joints. A parametric numerical analysis based on the test results was also conducted. The hysteretic curves of specimens not filled with concrete were full, and the ones of specimens filled with concrete were pinched. The maximum moment resistance of the joints filled with concrete in the column increased from 10 to 30% compared with that of the joints not filled with concrete. The energy dissipation coefficient of the joints not filled with concrete in the column varied from 2.681 to 3.585, whereas it changed from 1.892 to 1.711 for the joints filled with concrete when the width of the square tube column ranged from 300 to 500 mm. The results demonstrate that the joints with cast steel stiffeners have excellent moment capacity, deformation performance, and energy dissipation coefficients. The new joints could potentially be applied in a seismic region. (c) 2016 American Society of Civil Engineers.
机译:在循环载荷下测试了一系列六个全尺寸十字形H形横梁至方管柱接头以及铸钢加劲肋样品,以研究新接头的抗震性能。还基于测试结果进行了参数数值分析。未填充混凝土的标本的磁滞曲线已满,并捏紧了填充混凝土的标本。与未填充混凝土的节点相比,柱中填充混凝土的节点的最大抗弯强度从10%增至30%。当方管柱的宽度在300至500 mm范围内时,未填充混凝土的节点的能量耗散系数从2.681到3.585,而填充混凝土的节点的能量耗散系数从1.892到1.711。结果表明,采用铸钢加劲肋的接头具有出色的弯矩承载力,变形性能和能量耗散系数。新的接头可能会应用于地震区域。 (c)2016年美国土木工程师学会。

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