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Length of critical region for confinement steel in limited ductility high-strength reinforced concrete columns

机译:有限延性高强度钢筋混凝土柱中约束钢关键区域的长度

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The length of the critical region is one of the essential parameters in designing earthquake resistant structures where adequate transverse steel needs to be provided to confine the concrete core and subsequently to avert brittle failure under large inelastic deformation/curvature. In countries having high seismic risk such as China, Japan, New Zealand, USA etc.; guidelines have been provided in their reinforced concrete (RC) design codes for the design of fully ductile RC columns/piers. Nevertheless, in countries having low to moderate seismic risks, RC columns/piers can be designed for limited ductility, the design guidelines for which are very scarce. From the experimental tests carried out by the authors on limited ductility high-strength RC columns, it was found that this type of column/pier can be confined effectively with less confinement steel over a shorter extent of critical region compared with the existing code provisions for ductile columns/piers. In this paper, the length of the critical region in which the properly enhanced amount of confinement steel should be installed is investigated by two methods, which are denoted as direct methods in this paper. The evaluated critical region lengths have also been compared with those obtained by other researchers and the New Zealand Code.
机译:关键区域的长度是设计抗震结构的基本参数之一,在抗震结构中,需要提供足够的横向钢以限制混凝土芯,并随后避免大的非弹性变形/曲率下的脆性破坏。在中国,日本,新西兰,美国等地震风险较高的国家/地区;钢筋混凝土(RC)设计规范中提供了有关完全可延展RC柱/墩设计的准则。然而,在地震风险较低或中等的国家,可以将RC柱/墩设计成具有有限的延展性,而其设计准则却十分匮乏。根据作者在有限延展性高强度RC柱上进行的实验测试,发现与现有的规范规定相比,这种类型的柱/墩可以在较短的关键区域内用较少的约束钢有效地约束。韧性柱/墩。本文通过两种方法研究了应适当增加数量的约束钢安装的关键区域的长度,在本文中将其称为直接方法。评估的临界区长度也已与其他研究人员和《新西兰法典》获得的临界区长度进行了比较。

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