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用纤维增强水泥砂浆加固的单层木框架砌体结构的抗震性能

Seismic Performance of a Single-Story Timber-Framed Masonry Structure Strengthened with Fiber-Reinforced Cement Mortar.

作者信息

Tan Wei, Zhou Tiegang, Zhu Lixin, Zhao Xiang, Yu Wen, Zhang Liangyi, Liang Zengfei

机构信息

School of Civil Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.

China Academy of Building Research, Beijing 100013, China.

出版信息

Materials (Basel). 2024 Jul 24;17(15):3644. doi: 10.3390/ma17153644.

Abstract

Timber-framed masonry structures are widely used around the world, and their seismic performance is generally poor. Most of them have not been seismically strengthened. In areas with high seismic fortification intensity, there are great potential safety hazards. And it is urgent to carry out effective seismic reinforcement. However, due to the complicated construction process of the existing reinforcement technology, the poor durability of the reinforcement materials, and the significant disturbance to the life of the original residents, an efficient single-story timber-framed masonry structure reinforcement technology suitable for comprehensive promotion and application has not been explored. In this paper, a fiber-reinforced cement mortar (FRCM) material was proposed. A 1/2 scale model of a single-story timber-framed masonry structure was taken as the research object. The method of strengthening a single-story timber-framed masonry structure with FRCM layer was adopted. And the shaking table test of the model before and after reinforcement was carried out in turn. The dynamic characteristics, failure modes, acceleration response and displacement response of the FRCM layer-strengthened structure were analyzed through comparisons of the two cases. The experimental results showed that the FRCM layer significantly improved the seismic performance of the seismic-damaged single-story timber-framed masonry structures. The X- and Y-direction natural frequencies of the model structure were increased by 31.30% and 30.22%, respectively, after the structure was strengthened with FRCM. During a rare eight-degree earthquake, the inter-story displacement angles in the X- and Y-direction of the unreinforced model reached 1/98 and 1/577, respectively, and the structure was destroyed, while the inter-story displacement angle of the FRCM-reinforced model was only 1/2 of that the unreinforced model. During a rare nine-degree earthquake, the X-direction inter-story displacement angle of the model strengthened with FRCM reached 1/78 and the Y-direction inter-story displacement angle reached 1/178. At this time, the reinforced model structure was destroyed, but there was no collapse of the structural components, which met the seismic design objectives of "operational under the design minor seismic intensity, repairable damage under the design seismic precautionary intensity, and collapse prevention under the design rare seismic intensity", which proved that the FRCM layer was an effective and feasible way to strengthen the existing single-story wood-masonry rural building.

摘要

木框架砌体结构在世界各地广泛应用,但其抗震性能普遍较差。其中大部分未进行抗震加固。在地震设防烈度高的地区,存在很大的安全隐患。开展有效的抗震加固迫在眉睫。然而,由于现有加固技术施工过程复杂、加固材料耐久性差以及对原住户生活干扰大,尚未探索出一种适合全面推广应用的高效单层木框架砌体结构加固技术。本文提出了一种纤维增强水泥砂浆(FRCM)材料。以单层木框架砌体结构1/2比例模型为研究对象。采用FRCM层加固单层木框架砌体结构的方法。并依次对加固前后的模型进行了振动台试验。通过两种情况的对比,分析了FRCM层加固结构的动力特性、破坏模式、加速度响应和位移响应。试验结果表明,FRCM层显著提高了地震受损单层木框架砌体结构的抗震性能。用FRCM加固结构后,模型结构的X向和Y向固有频率分别提高了31.30%和30.22%。在罕遇八度地震作用下,未加固模型的X向和Y向层间位移角分别达到1/98和1/577,结构破坏,而FRCM加固模型的层间位移角仅为未加固模型的1/2。在罕遇九度地震作用下,FRCM加固模型的X向层间位移角达到1/78,Y向层间位移角达到1/178。此时,加固后的模型结构破坏,但结构构件未倒塌,满足“小震不坏、中震可修、大震不倒”的抗震设计目标,证明FRCM层是加固现有单层木石农村建筑的一种有效可行的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f900/11313514/0412c1038b72/materials-17-03644-g001.jpg

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