首页> 外文期刊>International journal of architectural heritage >SHAKING TABLE TEST OF A STRENGTHENED FULL-SCALE STONE MASONRY BUILDING WITH FLEXIBLE DIAPHRAGMS
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SHAKING TABLE TEST OF A STRENGTHENED FULL-SCALE STONE MASONRY BUILDING WITH FLEXIBLE DIAPHRAGMS

机译:柔性壁板加固的大型石砌房屋的振动台试验

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An extensive experimental campaign has been conducted at EUCENTRE to understand the dynamic behavior of historic stone masonry structures and evaluate the seismic performance of selected strengthening strategies, aimed at improving wall-to-floor connections and in-plane diaphragm stiffness. Shaking table tests were performed of full-scale two-storey buildings in undressed double-leaf stone masonry with timber floor and roof. A first prototype (Building I), representing a vulnerable building without antiseismic detailing and devices, was tested showing a response characterized by in-plane distortion of the flexible diaphragms and local out-of-plane failure mechanisms. In Building 2 the wall-to-diaphragm connections were improved, providing only a moderate in-plane stiffening of the wooden diaphragms. When subjected to shake-table testing, the strengthened building showed a global type of structural response without the occurrence of out-of-plane mechanisms. In the present paper the strengthening interventions on Building 2 are described, and the results obtained during the dynamic tests are illustrated, focusing on the response of the structure, the evolution of damage mechanisms during the tests, in comparison to the seismic performance of the first unstrengthened reference prototype response. The improvement of the connections proved to be very effective, increasing significantly the seismic capacity of Building 2 with respect to Building I.
机译:在EUCENTRE开展了广泛的实验活动,以了解历史砌体结构的动力行为并评估所选加固策略的抗震性能,旨在改善墙体与地板之间的连接和平面内隔板的刚度。在具有木地板和屋顶的裸露双叶砌石砌体中,对全尺寸的两层建筑进行了振动台测试。测试了代表没有建筑抗震细节和设备的易受攻击的建筑物的第一原型(I号建筑物),该试验显示出响应的特征是柔性隔膜的平面内变形和局部平面外失效机制。在2号楼中,改进了墙与膜片之间的连接,仅对木质隔板进行了适度的面内加固。进行振动台测试时,加固后的建筑物显示出整体类型的结构响应,而没有发生面外机制。在本文中,描述了对2号楼的加固措施,并举例说明了动态测试过程中获得的结果,重点放在结构的响应,测试过程中损坏机理的演变以及与第一座建筑物的抗震性能相比。未加强的参考原型响应。事实证明,连接的改进非常有效,大大提高了2号楼相对于1号楼的抗震能力。

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