根据 7 点地震荷载修复 iis-04-2 系列外墙板的支撑部件

Yosyp Y. Luchko, I. Karkhut, Markiian V. Mazepa
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引用次数: 0

摘要

本文介绍了对 IIS-03-02 系列外墙板与立柱、横梁与立柱连接强度的研究结果,该产品曾用于乌日霍罗德市国立乌日戈罗德大学生物系教学楼的建设。1991年7月19日,根据 "Zakarpatzalizoboton "VO公司的命令,以国家科学院G.V. Karpenka命名的物理机械研究所的员工进行了调查和研究数据,并提出了建议。作品介绍了该建筑的基本信息、设计和施工情况。确定了导致需要研究和制定加强面板和柱子、横梁和柱子的连接以及加强其短支撑和面板支撑壁龛的建议的主要原因。此外,还提供了在钢筋混凝土结构的施工、制造和运输过程中发现的设计错误、缺点和缺陷的数据。特别是,面板和墙壁的自重被大大高估了 25%;在一些面板中,预埋件被嵌入混凝土中,与设计位置有偏差;在一些面板中,与平整度的偏差高达 20-30 毫米;立柱控制台上的面板支撑套筒与面板平面的安装角度不同;有些地方立柱轴线之间的尺寸波动比标准高出 50-70 毫米;面板支撑部分靠在立柱短控制台上的地方的面板加固质量差,等等。对支柱控制台和面板支撑部分的钢筋支撑表进行了校核计算。在实地勘察和相关计算的基础上,提出了加固外墙板和支柱以及横梁和支柱连接处的适当建议。特别是,消除已发现的不足和缺陷,确保 IIS-04-02 系列短悬臂的承载能力,以承受 7 个建筑点的地震荷载。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RESTORATION OF SUPPORT PARTS OF EXTERNAL WALL PANELS SERIES IIS-04-2 TAKING INTO ACCOUNT SEISMIC LOADS OF 7 POINTS
This paper presents the results of the study of the strength of the junctions of external wall panels and columns and crossbars and columns of the IIS-03-02 series, which was used in the construction of the building of the Faculty of Biology of the Uzhgorod State University in the city of Uzhhorod. The survey and research data, as well as the development of recommendations, which were carried out by the employees of the Physico-Mechanical Institute named after G.V. Karpenka of the National Academy of Sciences on the order of «Zakarpatzalizoboton» VO from July 19, 1991. The work describes basic information about the building, its design and construction. The main reasons that led to the need for research and development of recommendations for strengthening the junctions of panels and columns and crossbars and columns and strengthening their short consoles and support niches of panels are established. Also, the data on identified design errors, shortcomings and defects in the construction and manufacture and transportation of reinforced concrete structures are given. In particular, the own weight of panels and walls is significantly overestimated by up to 25%; in some panels, embedded parts are embedded in concrete and have deviations from the design position; also in some panels there is a deviation of up to 20-30 mm from flatness; sockets for supporting panels on the console of the columns are installed at different angles to the plane of the panel; size fluctuations between the axes of the columns in some places are higher than the norm up to 50-70 mm; poor-quality reinforcement of the panels in the places where the supporting parts of the panels rest on the short console of the column, etc. The verification calculation of the support table of the reinforcement of the column consoles and the supporting parts of the panels was performed. On the basis of field survey and relevant calculations, appropriate recommendations were developed for strengthening the joints of external wall panels and columns and crossbars and columns. In particular, the elimination of identified shortcomings and defects, ensuring the bearing capacity of short cantilevers of the IIS-04-02 series for seismic loads for the construction area of 7 points.
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