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In-plane stiffening techniques with nail plates or CFRP strips for timber floors in historical masonry buildings

机译:具有历史意义的砖石建筑用木地板的带钉板或CFRP条的平面内加固技术

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摘要

The paper investigates two strengthening techniques for timber floors in historical masonry buildings. These alternative solutions may be used to enhance in-plane stiffness and strength of existing wooden floors. According to the first technique, nail plates are utilised to connect adjacent timber boards, while diagonal carbon fibre (CFRP) strips glued to timber boarding are considered in the second solution. Four full scale stiffened floor samples, which were designed using specific relationships to calculate in-plane stiffness and resistance, were tested under in-plane cyclic loading. Test results showed an enhanced stiffness for strengthened floors which is 40-50 times higher than that of the original wooden floor and close to the values calculated employing the proposed design expressions. To study how the use of the analysed stiffening solutions affects the seismic performance of masonry buildings, nonlinear static analyses were carried out on a typical historical masonry building with wooded floors under earthquake loading. In particular, the response of the building with original floors was compared with that of the structure with strengthened floors. The numerical results confirmed that the stiffness of the reinforced floors is adequate to guarantee satisfactory structural integrity for the whole building as damage was found to be mainly located in shear walls, while walls perpendicular to earthquake loading remained almost undamaged.
机译:本文研究了历史性砖石建筑中木地板的两种加固技术。这些替代解决方案可用于增强现有木地板的平面内刚度和强度。根据第一种技术,钉板用于连接相邻的木板,而在第二种解决方案中考虑使用胶粘到木板上的对角碳纤维(CFRP)条。在平面循环载荷下测试了四个使用特定关系设计的全尺寸加硬地板样本,以计算平面内的刚度和阻力。测试结果表明,强化地板的刚度有所提高,比原始木地板高40至50倍,接近采用建议的设计表达式计算得出的值。为了研究所分析的加劲方案的使用如何影响砖石建筑的抗震性能,对地震荷载作用下具有木地板的典型历史砖石建筑进行了非线性静力分析。特别是,将具有原始楼层的建筑物的响应与具有增强楼层的结构的响应进行了比较。数值结果证实,加固地板的刚度足以确保整个建筑物具有令人满意的结构完整性,因为发现损坏主要位于剪力墙中,而垂直于地震荷载的墙几乎没有损坏。

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