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水平加载墙体及木结构模块化建筑试验的刚度

Stiffness of Experimentally Tested Horizontally Loaded Walls and Timber-Framed Modular Building.

作者信息

Miedziałowski Czesław, Czech Krzysztof Robert, Nazarczuk Marta, Kosior-Kazberuk Marta, Żakowicz Anna

机构信息

Department of Building Structures and Structural Mechanics, Faculty of Civil Engineering and Environmental Sciences, Bialystok University of Technology, Wiejska 45E, 15-351 Bialystok, Poland.

Unihouse SA, Rejonowa 5, 17-100 Bielsk Podlaski, Poland.

出版信息

Materials (Basel). 2023 Sep 15;16(18):6229. doi: 10.3390/ma16186229.

Abstract

This paper presents an overview of representative up-to-date research and the authors' own experimental results from tests of wall elements and a horizontally loaded timber-framed modular building. The research has been conducted in connection with the development of timber-based structures in recent years. In the present research, wall elements and modules of timber-frame construction with life-size dimensions were used. So far, these types of structures have mainly been tested in laboratories-especially with regard to anchoring and cyclic loading. An experimental testing was carried out on a natural scale in two stages based on the standard procedure described in EN 594. In the first stage, wall panels were tested. In the second stage, tests were carried out on a complete four-storey building. Dowel fasteners were used to fix the sheathing to the load-bearing wall structures. Additionally, the sheathing was glued to the timber frame of the walls. The same type of wall element was used for the construction of the tested building. Horizontal loads were applied at the height of the top of the walls in both stages. The building loads were applied in a direction perpendicular to the longitudinal axis of the modules. Based on test data, the stiffnesses of the wall panels and the whole building were derived, as well as the type of interaction between the modules and the influence of the walls on the spatial work of the building. On the basis of the conducted studies, both the stiffness of the walls in different configurations and the stiffness of the complete building were determined, as well as the nature of the interaction of neighbouring modules and the influence of wall connections on the 3D working of the building. The results show that the stiffness of the building in the horizontal plane in the direction of the applied load is almost twice as high as the sum of the stiffnesses of the building walls in the same direction.

摘要

本文概述了具有代表性的最新研究以及作者对墙体构件和水平加载木框架模块化建筑测试的实验结果。该研究是结合近年来木结构的发展而进行的。在本研究中,使用了实际尺寸的木框架结构墙体构件和模块。到目前为止,这类结构主要在实验室进行测试,尤其是在锚固和循环加载方面。根据EN 594中描述的标准程序,分两个阶段在实际规模上进行了实验测试。第一阶段测试墙板,第二阶段对一座完整的四层建筑进行测试。采用暗销紧固件将覆板固定到承重墙结构上,此外,覆板还粘贴到墙体的木框架上。测试建筑的建造使用了相同类型的墙体构件。两个阶段均在墙体顶部高度处施加水平荷载,建筑荷载沿垂直于模块纵轴的方向施加。根据测试数据,得出了墙板和整个建筑的刚度,以及模块之间的相互作用类型和墙体对建筑空间工作的影响。基于所进行的研究,确定了不同配置下墙体的刚度和完整建筑的刚度,以及相邻模块的相互作用性质和墙体连接对建筑三维工作的影响。结果表明,在施加荷载方向上,建筑在水平面内的刚度几乎是同一方向上建筑墙体刚度总和的两倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb6d/10532801/395e7ed6dd69/materials-16-06229-g001.jpg

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