Survivability of reinforced concrete frames of multi-storey buildings with complex stress elements

V. Kolchunov, V. Moskovtseva
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引用次数: 1

Abstract

Experimental determination of the parameters of the force resistance of reinforced concrete structures aimed at protecting them from emergency beyond design impacts is an important direction in improving the safety of buildings and structures. In this connection, the purpose of the study was an experimental assessment of the deformation parameters in the complexly stressed elements of reinforced concrete frames under special impact in the form of a sudden column removal. Experimental studies were carried out for two frames, one of which was tested when removing the middle column, the second - when removing the extreme. Experimental two-span structures of reinforced concrete frames are designed with three floors in height, reinforcement was made with spatial reinforcing cages that provide resistance to torsion with bending. The results of experimental and theoretical studies of reinforced concrete frame structures under special influences and an assessment of displacements, cracking and destruction of the considered complex-stressed structural elements under such influences are presented. It is established that the type of stress state, the formation and width of crack opening significantly affect the dissipative properties of the structural system.
具有复杂应力单元的多层建筑钢筋混凝土框架的生存能力
试验确定钢筋混凝土结构的受力参数,以保护其免受超出设计影响的紧急情况,是提高建筑和结构安全性的重要方向。在这方面,本研究的目的是对钢筋混凝土框架的复杂受力单元在突然拆除立柱的特殊冲击下的变形参数进行实验评估。对两个框架进行了试验研究,其中一个在移除中间柱时进行了测试,第二个在移除极端时进行了试验。试验设计了三层楼高的钢筋混凝土框架两跨结构,采用空间钢筋笼进行加固,提供抗扭和抗弯性能。介绍了钢筋混凝土框架结构在特殊影响下的试验和理论研究结果,以及对所考虑的复杂受力结构元件在这种影响下的位移、开裂和破坏的评估。研究表明,应力状态的类型、裂缝的形成和宽度对结构系统的耗散特性有显著影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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26
审稿时长
18 weeks
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