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An application of precast hybrid moment-resisting frames for seismic improvement

机译:预制混合抗力矩框架在抗震加固中的应用

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摘要

This paper presents an application of precast, hybrid, moment-resisting frames for improving the seismic safety of a standard five-storey residential building with a gravity-loaded, cast in situ reinforced concrete beam-column frame system. The non-linear mechanism of this new system is mainly governed by the opening and closing of discrete gaps at the interfaces of precast members. The improvement involved several research and development components, including quasi-static reversed cyclic loading tests, capacity design of hybrid frames, seismic performance evaluation of the entire building system using non-linear dynamic analysis, and cost comparisons of the original and proposed hybrid systems. Excellent seismic performance was demonstrated using each hybrid joint type; their force-deformation responses exhibited ductile stable hysteretic loops for up to 6% drift levels without severe damage. The hybrid frame building can withstand strong ground shaking (peak ground acceleration of 0.50g) without collapsing at minimal increased total cost (16.6%) compared with the cost of the original building.
机译:本文介绍了一种预制的,混合的,抗弯框架,用于提高具有重力荷载的现浇钢筋混凝土梁柱框架系统的标准五层住宅建筑的地震安全性。这个新系统的非线性机制主要由预制构件界面处离散间隙的打开和关闭决定。改进涉及多个研究和开发组件,包括准静态反向循环载荷测试,混合框架的容量设计,使用非线性动态分析对整个建筑系统的抗震性能评估,以及对原始和建议的混合系统进行成本比较。每种混合接头类型均表现出出色的抗震性能;它们的力-变形响应表现出延展性稳定的磁滞回线,漂移高达6%,而没有严重损坏。与原始建筑物的成本相比,该混合框架建筑物可以承受强烈的地面震动(峰值地面加速度为0.50g)而不会塌陷,而总成本却只有最小的增加(16.6%)。

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