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Numerical Experimentation for the Upgrade of Older-Design Eccentrically Braced Frame

机译:旧设计偏远围架升级的数值实验

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摘要

This paper presents a retrofitting method for older-design eccentrically braced frame. Numerical experimentation was carried out for the old designed eccentrically braced frame and the modified versions of that the frame. Compared with a well-designed eccentrically braced frame designed using current seismic provisions, the behavior of the old designed eccentrically braced frame was not desirable. The contribution of the link in plastic dissipation was minimal even after following the criteria of shear link. Plastic dissipation by the frame, the braces, and the beam outside link was undesirably significant. The hysteresis loop was unstable, and significant strength degradation was observed. The structural behavior was improved by introducing the retrofitting measures in such a way that the structural interventions and the disruption to the occupants would be minimal. After modification, the maximum plastic dissipation was contributed by the link portion, as desired. The hysteretic behavior and the plastic dissipation were improved significantly, and the strength degradation was minimized.
机译:本文介绍了旧设计偏心支撑框架的改造方法。对旧设计的偏心支撑框架进行数值实验和该框架的修改版本。与设计使用电流震动规定设计的精心设计的偏心支撑框架相比,旧设计的偏心支撑框架的行为是不可取的。即使在剪切链路标准之后,塑性耗散链路的贡献也很小。框架,括号和梁外部链路的塑料耗散是不合需要的。滞后回路不稳定,观察到显着的强度降解。通过引入改造的措施来改善结构行为,使得结构干预和对乘员的破坏是最小的。修改后,根据需要,最大塑料耗散由连杆部分贡献。滞后行为和塑料耗散显着改善,最小化强度降解。

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