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In-Plane Cyclic Testing of Concrete-Filled Sandwich Steel Panel Walls with and without Boundary Elements

机译:带边界元素和不带边界元素的夹心式夹层钢板墙的平面内循环测试

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摘要

Concrete-filled sandwich steel panel (CFSSP) walls are composed of two steel skin plates interconnected by tie bars, with the space between the skin plates filled with concrete. These walls are attractive for use in seismic regions, but limited knowledge exists on their in-plane cycling inelastic flexural behavior. This paper reports results from an experimental study investigating this behavior by testing four cantilever CFSSP walls with and without circular boundary elements, having length-to-width ratios of 2.46 and 2.76, respectively. All of the tested walls were able to exceed their theoretical plastic moment capacity, calculated assuming a full plastic stress distribution of the cross section. The tested specimens exhibited stable ductile behavior up to 3% drift (and beyond in some conditions). Local buckling of the steel skin led to minor degradation in flexural strength. Fracture of the skin plates eventually developed as the ultimate failure mode. The effect of using different tie bars spacing to steel plate thickness ratios, and different techniques for welding the tie bars to the skin plates, are also addressed. (C) 2017 American Society of Civil Engineers.
机译:填充混凝土的夹心钢板墙(CFSSP)由两根通过拉杆相互连接的钢板蒙皮组成,这些蒙皮之间的空间充满了混凝土。这些壁对于在地震区域中使用是有吸引力的,但是关于它们的平面内循环非弹性挠曲行为的知识有限。本文报告了一项实验研究的结果,该实验通过测试四个带有和不带有圆形边界元素的悬臂式CFSSP墙,长宽比分别为2.46和2.76。所有测试的墙都能够超过其理论塑性弯矩承载力,假定横截面具有完整的塑性应力分布,则计算得出。被测样品在高达3%的漂移下表现出稳定的延展性(在某些条件下甚至更高)。钢皮的局部屈曲导致弯曲强度的轻微降低。蒙皮板的断裂最终发展为最终的破坏模式。还解决了使用不同的拉杆间距与钢板厚度比的影响,以及将拉杆焊接到蒙皮板上的不同技术的影响。 (C)2017年美国土木工程师学会。

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