Modeling of changes in the strength parameters of the monolithic bond of layers in three-layer reinforced concrete structures under operational influences

Oleg Korol, Mikhail Berlinov, Maxim Batrakov
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Abstract

In industrial housing construction, the improvement of enclosing structures is aimed at improving their operational characteristics in order to create a durable shell of buildings that requires the least cost of repairs and creates comfortable conditions for people to live. To ensure high thermal protection characteristics of buildings, three-layer structures made of materials with various physical and mechanical characteristics of layers and ways of connecting them to each other, ensuring their joint work, have been widely used. One of such methods is the creation of a monolithic-bonded cement matrix, which during operation changes its strength and deformation characteristics and affects the stress-strain state of a multilayer reinforced concrete structure as a whole. Temperature fluctuations were carried out under simulated conditions of exposure from different sides of the tested structure when testing models of multilayer enclosing structures of monolithic cross-section, the strength parameters of the concrete of the middle layer and the contact zone of the layers were compared, as a result of which a decrease in the strength of the layers after exposure was established, not exceeding regulatory requirements.
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操作影响下三层钢筋混凝土结构层间整体粘结强度参数变化的建模
在工业住房建设中,改进封闭结构的目的是改善其操作特性,以便创造一个需要最少维修费用的持久的建筑物外壳,并为人们创造舒适的居住条件。为保证建筑物具有较高的热防护性能,由具有各层各种物理力学特性的材料组成的三层结构及其相互连接的方式,保证其协同工作,得到了广泛的应用。其中一种方法是创建一个整体粘合水泥基体,在运行过程中改变其强度和变形特性,并影响多层钢筋混凝土结构的整体应力应变状态。在整体截面多层围护结构试验模型中,在被试结构不同侧面的模拟暴露条件下进行温度波动,对比中间层混凝土和层间接触区混凝土的强度参数,得出暴露后各层强度下降,未超过法规要求。
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审稿时长
10 weeks
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