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Seismic upgrading of old masonry buildings by seismic isolation and CFRP laminates: a shaking-table study of reduced scale models

机译:地震隔离和CFRP层压板对旧砌体房屋进行地震升级:缩小模型的振动台研究

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The efficiency of improving the seismic resistance of old masonry buildings by means of seismic isolation and confining the structure with CFRP laminate strips has been investigated. Five models of a simple two-story brick masonry building with wooden floors without wall ties have been tested on the shaking table. The control model has been built directly on the foundation slab. The second model has been separated from it by a damp-proof course in the form of a PVC sheet placed in the bed-joint between the second and the third course, whereas the third model has been isolated by rubber isolators placed between the foundation slab and structural walls. Models four and five have been confined with CFRP laminate strips, simulating the wall ties placed horizontally and vertically at floor levels and corners of the building, respectively. One of the CFRP strengthened models has been placed on seismic isolators. Tests have shown that a simple PVC sheet damp-proof course cannot be considered as seismic isolator unless adequately designed. Tests have also shown that the isolators alone did not prevent the separation of the walls. However, both models confined with CFRP strips exhibited significantly improved seismic behavior. The models did not collapse even when subjected to significantly stronger shaking table motion than that resisted by the control model without wall ties.
机译:研究了通过隔震和用CFRP层压板条限制结构来提高老砌体建筑的抗震性的效率。在振动台上测试了五种简单的两层砖砌砖混结构房屋的模型,这些砖混砖砌房屋的木地板没有墙绑。控制模型直接建立在基础板上。第二个模型已通过防潮层与PVC隔离,该层以PVC片形式放置在第二和第三层之间的床缝中,而第三个模型已通过放置在基础板之间的橡胶隔离器隔离和结构墙。模型4和模型5仅限于CFRP层压板条,分别模拟了水平和垂直放置在建筑物楼层和拐角处的墙绑带。 CFRP加固模型之一已放置在地震隔离器上。测试表明,除非经过适当设计,否则不能将简单的PVC板防潮层视为隔震器。测试还表明,隔离器本身并不能防止壁的分离。但是,这两种模型均受CFRP条约束,其抗震性能得到了显着改善。即使受到比没有壁扎的控制模型所抵抗的振动台运动明显更强的振动台运动,模型也不会崩溃。

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