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首页> 外文期刊>Computer Modeling in Engineering & Sciences >Improving the Seismic Performance of Staircases in Building Structures with a Novel Isolator
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Improving the Seismic Performance of Staircases in Building Structures with a Novel Isolator

机译:用新型隔离器提高楼梯楼梯的地震性能

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摘要

A staircase provides the main escape way from a building in an emer-gency. Unfortunately, it may suffer severe damages or even collapse during an earthquake. For improving the seismic performance of staircases, this paper proposes an innovative staircase isolator with the features of lightweight, cost- effective and ease of construction and replacement, which is formed by suitable engineering plastic shims between rubber layers. A connection construction scheme is also proposed for the isolated staircase. Systematic performance tests have been carried out to characterize the isolator in terms of mechanic behavior and ultimate states. The test results show that mechanical properties of the proposed staircase isolator are excellent and suitable for staircase in building structure. In order to investigate the influence of staircase on building structural responses, time history analyses of a typical building structure without stair-case (WS), with fixed staircase (FS) and with isolated staircase (IS) are conducted and compared within the environment of SAP2000. Results show that staircase isolation can effectively eliminate the diagonal bracing effect of staircase slab and make structural components uniformly stressed. When the novel isolator is employed for staircase in a building structure, there is no vulnerable position in staircase and the performance of staircase in building structure can be greatly enhanced.
机译:楼梯提供从emer-gency的建筑物的主要逃生方式。不幸的是,它可能遭受严重损害甚至在地震期间崩溃。为了提高楼梯的地震性能,本文提出了一种创新的楼梯隔离器,具有轻巧,成本效益和易于建筑和更换的特点,该塑料垫在橡胶层之间的合适的工程塑料垫片形成。孤立的楼梯还提出了一种连接施工方案。已经进行了系统性能测试,以便在机械行为和最终状态方面表征隔离器。测试结果表明,所提出的楼梯隔离器的机械性能优异,适用于建筑结构中的楼梯。为了调查楼梯对结构响应的影响,在没有楼梯(WS)的情况下,典型的建筑结构的时间历史分析,固定楼梯(FS)和与隔离楼梯(是)进行比较SAP2000。结果表明,楼梯隔离可以有效地消除楼梯板坯的对角线支撑效果,并使结构部件均匀应激。当新型隔离器在建筑结构中用于楼梯时,在楼梯中没有易受攻击的位置,并且可以大大提高建筑结构中楼梯的性能。

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