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Experimental Investigation of Existing Hollowcore Seating Connection Seismic Behaviour Pre and Post Retrofit Intervention,

机译:改装前后干预措施对现有空心空心阀座连接抗震性能的试验研究

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摘要

In the recent past a number of issues regarding the seismic performance of typical existing hollowcore floor systems have been raised. The most concerning of these is the vulnerability to loss of vertical support of the floor system at the end floor to seating beam connection. This vulnerability arises due to incompatibilities between the floor system and intrinsic deformations of the neighbouring seismic frames.In a previous contribution by the authors (Jensen et al 2006), a conceptual retrofit strategy for existing hollowcore seating connections was proposed. This paper provides an experimental validation of that strategy through quasi-static cyclic testing of alternative seating connection configurations, adopting varying seating lengths.In general, unfavourable performance was exhibited by the existing seating connections, resulting in loss of vertical support of the hollowcore unit. In contrast, when additional seating and selective weakening retrofit approaches were implemented, a higher level of seismic performance leading to collapse prevention was achieved. In conclusion, issues and uncertainties associated with the evaluation of the likely failure mechanism, as well as the definition of an appropriate retrofit intervention are discussed.
机译:在最近的过去,已经提出了许多与典型的现有中空地板系统的抗震性能有关的问题。其中最令人担忧的是,在末端地板上的地板系统失去垂直支撑到座椅横梁连接的脆弱性。这种脆弱性是由于地板系统与相邻地震框架的固有变形之间的不兼容而引起的。在作者的先前贡献(Jensen等人,2006年)中,提出了一种对现有空心空心座椅连接进行概念改造的策略。本文通过对不同的阀座长度进行准静态循环测试,对可选的阀座连接结构进行了静态试验,从而对该策略进行了实验验证。一般而言,现有的阀座连接表现出不利的性能,导致空心单元的垂直支撑损失。相反,当实施附加的座位和选择性的弱化改造方法时,可以达到更高的抗震性能,从而可以防止塌陷。总之,讨论了与可能的失效机制评估相关的问题和不确定性,以及适当的改进干预措施的定义。

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