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Experimental Study on the force transfer mechanism at the R/C connection surface with post-tension force to develop the soft-landing base-isolation system

机译:张力后距离张力柱电抗力的力转移机制的实验研究开发软着陆底座隔离系统

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The authors are developing a new retrofitting system for relatively low seismic performance existing buildings, especially for soft-first-story buildings. The new column, which has the base-isolation system at its middle height, is attached to the existing column by the compression force with the PC bars. The existing column will fail in shear during an earthquake, and then the building becomes to be base-isolated. One of the big advantages of this system is that the retrofitting cost can be low compared to the conventional base-isolation retrofitting technique, since the existing columns do not have to be cut prior to an earthquake, which costs a lot. However, the vertical and lateral loads need to be transferred from the existing column to the newly attached column through the connection surface by the friction. In order to design the post-tension force required to the PC bars (the compression force required to the connection surface), the force carrying mechanism at the connection surface under the vertical and lateral loads needs to be studied. Therefore, a series of experimental tests were conducted to propose and verify a connection design criteria.
机译:作者正在为相对低的地震性能现有建筑开发一种新的改造系统,特别是对于软第一层建筑。具有中间高度的基本隔离系统的新柱通过带有PC杆的压缩力附着在现有色谱柱上。现有柱在地震期间将在剪切中失效,然后建筑物变为偏置底座。与传统的基准隔离改装技术相比,该系统的一个重要优点是,与传统的基准隔离改装技术相比,改装成本可能是低的,因为在地震之前不必切割现有的列,这花了很多。然而,垂直和横向载荷需要通过摩擦通过连接表面从现有柱转移到新附着的柱。为了设计PC杆所需的张力力(连接表面所需的压缩力),需要研究垂直和横向载荷下的连接表面处的力承载机构。因此,进行了一系列实验测试以提出并验证连接设计标准。

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