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Hysteretic Behavior of Eccentrically Loaded Reinforced Air-Entrained Concrete Columns under Combined Effects of Freeze-Thaw Cycles and Seawater Corrosion

机译:偏远循环循环和海水腐蚀组合效应下偏心装载增强空气夹带混凝土柱的滞回行为

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摘要

Besides service loads, reinforced concrete structures in cold coastal seismic regions are subjected to multiple attacks of freeze-thaw cycles and seawater corrosion as well as the earthquake struck. An experimental study was conducted to investigate the seismic response of eccentrically loaded reinforced air-entrained concrete columns under alternative actions of freeze-thaw cycles and chloride corrosion. Results show that, after 300 times of freeze-thaw cycles alternated with 100 times of seawater immersion, the hysteretic behavior of the eccentrically loaded columns manifested an apparent asymmetric pattern. Under forward cyclic load, the existence of larger eccentric load rendered the reduction of the ultimate load and the ductility of a column by up to 20.3% and 46.05%, respectively, but it had a positive effect if reverse cyclic load was applied. The presence of eccentric load could have a considerable impact on the seismic behavior of reinforced air-entrained concrete columns served in an aggressive environment.
机译:除了服务的负荷,增强经受冻融循环及海水腐蚀的多次攻击,以及地震发生在寒冷的沿海地震区的混凝土结构。实验研究以调查偏心加载增强加气混凝土柱的下冷冻 - 解冻循环和氯化物腐蚀的替代动作的地震响应。结果表明,在与海水浸泡的100倍交替冻融循环的300倍,所述偏心加载列的滞后行为表现的表观非对称图案。在正向循环负荷,较大的偏负荷的存在呈现的极限载荷的降低及列的通过分别高达20.3%和46.05%,延展性,但如果施加的反向循环负荷它有一个积极的影响。偏心负载的存在可能对在恶劣的环境提供增强的加气混凝土柱的抗震性能有很大的影响。

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