A method for calculating flexural multi-layer reinforced concrete structures

Dinh Tho Vu, Tuan Anh Pham
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Abstract

In construction practice, reinforced concrete structures are designed to meet the requirements of not only the load-bearing capacity but also the abilities of sound insulation, heat insulation, fire resistance, etc. A promising and effective solution to meet these requirements is using multi-layer reinforced concrete structures with an internal layer by low thermal conductivity concrete, and external layers by traditional concrete, high-strength concrete, or kezamzit concrete. The different physical-mechanical properties of the material layers affect the structure's performance under load. In this study, the authors have introduced a theoretical method to calculate and analyze the stress-strain states of flexural reinforced concrete structures with cross-sectional sections consisting of layers from different concrete materials under the effect of load. The study's results have shown that in the manufacturing process of multi-layer reinforced concrete structures by different concretes, a contact zone is formed between layers because of aggregate components from different types of concrete. Calculated results by using the proposed model have shown that the values of the moment and deflection of the beam when cracks begin to appear and when the beam is damaged, are closer to the experimental results than by using the previous models. The research results are useful references for the calculation of multi-layer reinforced concrete structures with a middle layer from lightweight concrete.
多层钢筋混凝土结构受弯计算方法
在施工实践中,钢筋混凝土结构的设计不仅要满足承载能力的要求,而且要满足隔声、隔热、耐火等能力的要求。为了满足这些要求,一种有希望且有效的解决方案是使用多层钢筋混凝土结构,内层采用低导热混凝土,外层采用传统混凝土、高强度混凝土或克扎姆兹特混凝土。材料层的不同物理力学性能影响着结构在荷载作用下的性能。在本研究中,作者介绍了一种理论方法来计算和分析由不同混凝土材料层组成的截面钢筋混凝土受弯结构在荷载作用下的应力应变状态。研究结果表明,在不同类型混凝土的多层钢筋混凝土结构制造过程中,由于不同类型混凝土的骨料成分,层与层之间形成了接触区。计算结果表明,采用该模型计算的梁在开始出现裂缝和破坏时的弯矩和挠度值比采用先前模型计算的结果更接近实验结果。研究结果对以轻量混凝土为中间层的多层钢筋混凝土结构的计算具有一定的参考价值。
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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