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Inelastic design of high-axially loaded concrete columns in moderate seismicity regions

机译:中等地震区高轴压混凝土柱的非弹性设计

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In regions of high seismic risk, high-strength concrete (HSC) columns of tall buildings are designed to be fully ductile during earthquake attack by providing substantial amount of confining steel within the critical region. However, in areas of low to moderate seismic risk, the same provision of confining steel is too conservative because of the reduced seismic demand. More critically, it causes problematic steel congestion in the beam-column joints and column critical region. This will eventually affect the quality of concrete placing owing to blockage. To relieve the problem, the confining steel in the critical region of HSC columns located in low to moderate seismicity regions can be suitably reduced, while maintaining a limited ductility level. Despite the advantage, there are still no guidelines developed for designing limited ductility HSC columns. In this paper, a formula for designing limited ductility HSC columns is presented. The validity of the formula was verified by testing half-scale HSC columns subjected to combined high-axial load and flexure, in which the confining steel was provided as per the proposed formula. From the test results, it is evident that the curvature ductility factors obtained for all these columns were about 10, which is the generally accepted level of limited ductility.
机译:在地震危险性高的地区,高层建筑的高强度混凝土(HSC)柱被设计为通过在关键区域内提供大量的约束钢筋来在地震袭击期间具有充分的延性。但是,在地震风险较低或中等的地区,由于地震需求的减少,使用相同的约束钢太保守了。更关键的是,它在梁柱接头和柱子临界区域引起了钢的拥挤问题。由于堵塞,这最终将影响混凝土浇筑的质量。为了缓解该问题,可以适当减少位于低至中等地震活动度区域的HSC柱关键区域中的约束钢,同时保持有限的延展性。尽管具有优势,但仍未开发出设计可延展性HSC色谱柱的准则。本文提出了一种设计有限延性HSC柱的公式。通过测试半比例HSC柱承受组合高轴向载荷和挠曲的影响,验证了该公式的有效性,其中根据建议的公式提供了约束钢。从测试结果可以明显看出,所有这些柱子获得的曲率延性因子约为10,这是有限延性的公认水平。

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