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Enhancing seismic performance of ductile moment frames with delayed wire-rope bracing using middle steel plate

机译:使用中间钢板提高延迟线绳支护延迟线绳支撑的抗震性能

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摘要

Moment frames have considerable ductility against cyclic lateral loads and displacements; however, sometimes this feature causes the relative displacement to exceed the permissible limits. This issue can bring unfavorable hysteretic behavior on the frame due to the reduction in the stiffness and resistance against lateral loads. Most of common bracing systems usually control lateral displacements through increasing stiffness while result in decreasing the capacity for energy absorption. This has direct effect on hysteresis curves of moment frames. Therefore, a system that is capable of both having the capacity of energy absorption as well as controlling the displacements without a considerable increase in the stiffness is quite important. This paper investigates retrofitting of a single-storey steel moment frame using a delayed wire-rope bracing system equipped with the ductile middle steel plate. The steel plate is considered at the middle intersection of wire ropes, where it causes cables to be continuously in tension. This integrated system has the advantage of reducing considerable stiffness of the frame compared to cross bracing systems as a result of which it could also preserve the frame's energy absorption capacity. In this paper, FEM models of a delayed wire-rope bracing system equipped by steel plates with different geometries have been studied, validated, and compared with other researchers' laboratory test results.
机译:力矩框架对循环横向载荷和位移具有相当大的延展性;但是,有时此功能会导致相对位移超过允许的限制。由于刚度和抗侧载荷的抵抗力降低,该问题可以为框架带来不利的滞后行为。大多数常见的支撑系统通常通过增加刚度来控制横向位移,同时导致能量吸收能力降低。这对力矩框架的滞后曲线直接影响。因此,一种能够具有能量吸收能力的系统以及控制位移的容量,而无需相当大的刚度增加是非常重要的。本文研究了使用配备有延迟钢丝钢板的延迟线绳支撑系统改造了单层钢力矩框架。钢板在线绳索中间考虑,在那里它导致电缆连续张力。该集成系统的优点是与交叉支撑系统相比减少框架相当大的刚度,因此它还可以保留框架的能量吸收能力。在本文中,研究,验证,并与其他研究人员的实验室测试结果进行了研究,验证了钢板的延迟线绳支撑系统的FEM模型。

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