1.广州大学土木工程学院,广东 广州 510006
2.四川省建筑科学研究院有限公司,四川 成都 610081
周云(1965—),男,教授,博导,博士。主要从事结构减隔震方面的研究。E-mail:zhydxs@163.com
收稿:2020-08-24,
修回:2020-11-30,
纸质出版:2021-08-15
移动端阅览
周云,陈章彦,郭阳照等.新型减震填充墙(板)抗震性能、机理及应用研究进展[J].防灾减灾工程学报,2021,41(04):753-767.
ZHOU Yun,CHEN Zhangyan,GUO Yangzhao,et al.Advances on the Seismic Performance,Mechanism and Application of Innovative Damped Infilled Wall/Wallboard[J].Journal of Disaster Prevention and Mitigation Engineering,2021,41(04):753-767.
周云,陈章彦,郭阳照等.新型减震填充墙(板)抗震性能、机理及应用研究进展[J].防灾减灾工程学报,2021,41(04):753-767. DOI: 10.13409/j.cnki.jdpme.2021.04.005.
ZHOU Yun,CHEN Zhangyan,GUO Yangzhao,et al.Advances on the Seismic Performance,Mechanism and Application of Innovative Damped Infilled Wall/Wallboard[J].Journal of Disaster Prevention and Mitigation Engineering,2021,41(04):753-767. DOI: 10.13409/j.cnki.jdpme.2021.04.005.
为改善普通填充墙(板)结构的抗震性能,基于黏弹性阻尼器的原理和构造,提出一种构造简单、减震机理明确、具有自主知识产权的新型减震填充墙(板)。本文介绍减震填充墙(板)的构造及工作原理;给出适合构筑减震层的材料及其滞回性能;对减震填充墙(板)单元、带减震填充墙(板)平面框架进行性能试验,揭示减震填充墙(板)通过相邻砌体(墙板)单元间的相对运动迫使减震层发生剪切滞回变形、耗散地震输入能量的减震机理,建立减震填充墙(板)平面内“双斜撑”力学模型;通过带减震填充墙(板)三维框架的动力时程分析,验证地震下减震填充墙(板)可通过削减墙体自身对主体结构的刚度效应,显著降低对主体结构动力特性及抗震性能的影响,保护墙体不破坏的有效性;对减震填充墙(板)的平面外性能进行试验及分析,揭示减震填充墙(板)“拱承载机制”的平面外工作机理及“四铰拱”的破坏模式;介绍减震填充墙(板)在楼梯间、(震损)加固建筑等应用场景中的原理及构造;给出减震填充墙(板)今后研究的问题及方向。
In order to improve the seismic performance of conventional infilled masonry wall, an innovative configuration named damped infilled wall/wallboard (DIW) was proposed by introducing the principle of viscoelastic damper. DIW has a simple construction, explicit working mechanism and independent intellectual property right. In this paper, the configuration and working mechanism of DIW was introduced. The material suitable for damping layer construction and its corresponding hysteretic performance were given. Seismic performance tests were carried out on DIW unit as well as plane frame structures with DIW. The in-plane working mechanism that the shear hysteretic deformation which is casued by relative movement between adjacent subpanel of DIW dissipates the input seismic energy was revealed. The double bracing macro-modelling method was proposed. The proposed model was used in the time-history analysis of a 3D frame structure with DIW. Results show that DIW is able to significantly reduce the influence on the dynamic characteristic and seismic performance of the main structures, and to protect the wall from suffering damages through decreasing the stiffness effect of wall/wallboard on structure. Out-of-plane performance of DIW was also studied by tests. The results reveal that the out-of-plane mechanism is the arching mechanism and the failure mode is four-hinge arching.The problems and directions that need to be further studied were given.
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