Strength and stability of composite concrete and pipe-concrete structures under static load

IF 0.1 Q4 MULTIDISCIPLINARY SCIENCES
V. Erofeev, P. A. Khazov, A. K. Sitnikova
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引用次数: 0

Abstract

The existing regulatory framework and imperfect calculation methods hinder the widespread use of pipe-concrete structures, which have great potential for industrial and civil facilities requiring small cross-sections of load-bearing elements. In order to solve this problem, a series of experiments is conducted to study the behavior of various combinations of steel and concrete materials under static load. Stress-strain state of composite and pipeconcrete structures is investigated. The analysis is given to the bearing capacity of test specimens. The critical load of specimen fracture is calculated, the bearing capacity loss and fracture are determined, deformation diagrams are suggested herein. The comparative analysis of bearing capacity of test specimens is conducted.The analysis of experimental investigations shows the non-linear increase of bearing capacity during the joint operation of steel shell and reinforced concrete core of the pipe-concrete element, and advantages of pipe-concrete structures over conventional structures.
静荷载作用下复合混凝土和管-混凝土结构的强度与稳定性
现有的管理框架和不完善的计算方法阻碍了管道混凝土结构的广泛使用,这种结构在需要小截面承重元件的工业和民用设施中具有很大的潜力。为了解决这一问题,进行了一系列试验,研究了钢与混凝土材料在静荷载作用下的各种组合的性能。研究了复合材料和管道混凝土结构的应力-应变状态。对试件的承载力进行了分析。计算了试件断裂的临界载荷,确定了试件的承载力损失和断裂,给出了试件的变形图。对试件的承载力进行了对比分析。试验研究分析表明,管-混凝土单元钢壳与钢筋混凝土芯共同作用时,承载力呈非线性增长,管-混凝土结构优于传统结构。
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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来源期刊
Tomsk State University Journal
Tomsk State University Journal MULTIDISCIPLINARY SCIENCES-
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