Zijie Liu, Xiangyu Yan, Mofan Zhang, Yan Yang, Zhihua Chen, Li Jia, Yan Lu. Research on Key Construction Technology and Lateral Performance of Light Steel Frame-Grid Wall Structure[J]. STEEL CONSTRUCTION(Chinese & English), 2023, 38(9): 45-52. doi: 10.13206/j.gjgS22110901
Citation: Zijie Liu, Xiangyu Yan, Mofan Zhang, Yan Yang, Zhihua Chen, Li Jia, Yan Lu. Research on Key Construction Technology and Lateral Performance of Light Steel Frame-Grid Wall Structure[J]. STEEL CONSTRUCTION(Chinese & English), 2023, 38(9): 45-52. doi: 10.13206/j.gjgS22110901

Research on Key Construction Technology and Lateral Performance of Light Steel Frame-Grid Wall Structure

doi: 10.13206/j.gjgS22110901
  • Received Date: 2022-11-09
    Available Online: 2023-10-20
  • With the promotion of new urbanization, the proportion of prefabricated steel structure buildings has increased year by year. However, the existing steel structure systems applied in rural buildings face problems such as poor living quality, low level of components standardization, inconvenient transportation and installation, low construction quality, and serious pollution and waste. It is urgent to develop low-cost, simple-constructed, ecological prefabricated light steel structure systems residence and corresponding construction technologies. The light steel frame-grid wall structure not only has the advantages of excellent seismic performance, light components and easy transportation, but also can be wholly connected by bolts or self-tapping screws, which is convenient for installation. In order to study the simple construction technology and lateral performance of this structure, a single-story house with a steel frame-steel, wood and bamboo grid wall hybrid structure system wholly connected by screws was built, and its in-situ experiment was carried out. Taking a light steel frame-steel grid wall in this project as an example, this paper expounds the simple construction technology of the light steel frame-steel grid wall from the column base, foundation, installation of frame and steel gird, and fixing of wallboard, and its lateral performance was obtained through the in-situ static experiment. The research shows that the light steel frame-steel grid wall is easy to install, which can save manpower and material resources, and is suitable for application in rural areas, and the lateral performance of the light steel frame-steel grid wall with this construction technology can meet the design requirements.
  • [1]
    闫翔宇,段岩,陈志华,等.钢网格剪力墙力学性能试验研究及有限元分析[J].建筑结构学报,2021,42(增刊1):249-259.
    [2]
    中华人民共和国建设部.冷弯薄壁型钢结构技术规范:GB 50018—2002[S].北京:中国计划出版社,2002.
    [3]
    李元齐,马荣奎,宋延勇,等.冷弯薄壁型钢螺钉连接抗剪性能试验研究[J].同济大学学报(自然科学版),2013,41(1):11-19.
    [4]
    侯兆欣,吕健,王宇红,等.自攻螺钉连接在建筑上的应用[J].工业建筑,1999,29(9):52-54.
    [5]
    艾华,黄铭枫.大跨度钢屋架整体安装方案的设计分析[J].钢结构,2010,25(2):66-69.
    [6]
    罗华丽.国家体育馆工程室内硅酸钙板墙面设计与施工技术[J].建筑技术,2010,41(5):420-422.
    [7]
    雷拓,吕西林,钱江,等.既有钢筋混凝土框架原位推覆试验研究[J].建筑结构学报,2009,30(5):23-30.
    [8]
    陶忠,余登,戴明明,等.冷弯薄壁型钢结构抗侧刚度研究[J].钢结构,2018,33(10):69-75.
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