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首页> 外文期刊>Journal of Constructional Steel Research >Seismic retrofitting of framed structures with stainless steel
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Seismic retrofitting of framed structures with stainless steel

机译:不锈钢框架结构的抗震改造

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The appropriate use of special metals such as stainless steels (SSs) for structural applications in building systems provides possibilities for a more efficient balance between whole-life costs and in-service performance. The present paper assesses the feasibility of the application of SSs for seismic retrofitting of framed structures, either braced (CBFs) or moment resisting (MRFs) frames. In so doing, inelastic analyses have been carried out on a set of multi-storey CBFs and MRFs. The results of both inelastic static (pushovers) and dynamic (response history) analyses demonstrate that systems retrofitted with SSs exhibit enhanced plastic deformations and excellent energy absorbing capacity. The augmented strain hardening of SS is beneficial in preventing local buckling in steel members in both MRFs and CBFs. The analytical results also demonstrate that, when SS is spread within columns, the system over-strength increases by 30 percent with respect to the carbon-steel benchmark structure. The design over-strength, plastic redistribution and energy dissipation capacity increase by the same amount.
机译:在建筑系统中将特殊金属(例如不锈钢(SSs))适当地用于结构应用可为在使用寿命成本和使用性能之间取得更有效的平衡提供可能性。本文评估了将SS应用于框架结构的抗震加固的可行性,这些结构既可以是支撑(CBF)框架,也可以是抗弯框架(MRF)。这样做时,已经对一组多层CBF和MRF进行了非弹性分析。非弹性静态(推动力)和动态(响应历史)分析的结果均表明,采用SS进行改造的系统表现出增强的塑性变形和出色的能量吸收能力。 SS的强化应变硬化有助于防止MRF和CBF中钢构件的局部屈曲。分析结果还表明,当SS分散在柱内时,相对于碳钢基准结构,系统超强度增加了30%。设计的超强度,塑料的重新分布和能量消耗能力增加了相同的数量。

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