结构工程
栏(排版)
有限元法
壳体(结构)
理论(学习稳定性)
刚度
弯曲
接头(建筑物)
芯(光纤)
材料科学
点(几何)
屈曲
工程类
钢筋混凝土
钢筋混凝土柱
工作(物理)
结构稳定性
复合结构
复合材料
材料性能
作者
Kozhanov, Dmitry,Khazov, Pavel,Shkoda, Irina,Likhacheva, Svetlana
摘要
Reinforced concrete structures are a system consisting of monolithic reinforced concrete, a steel part and connecting elements. In this article, the stress-strain state of the structures of a high-rise building is considered. The domestic experience of research and application of steel-reinforced concrete load-bearing structures is described. The analysis of the strength and stability of the most loaded column of a high-rise building is presented. The columns of the object under study are made using tubular concrete, which is a steel shell pipe working in conjunction with concrete and design fittings. Detailed finite element modeling of each tubular concrete column is labor-intensive and not optimal from the point of view of computing resources. The use of a core model is possible in the case of determining the mechanical characteristics of a tubular concrete column as a core structure. To determine the longitudinal and bending stiffness of columns, it is proposed to use a spatial solid-state model that allows for the joint operation of all these elements. According to the calculation results, the most loaded element is determined, that is, a steel shell pipe. It is shown that the loss of stability of the column as a separate element is impossible with such a configuration of the cross section.
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