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Analysis of Stress in Steel and Concrete in Cfst Push-Out Test Samples

机译:Cfst推出试验样品中钢筋和混凝土的应力分析

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The paper presents the analysis of stress in steel and concrete in CFST composite elements subjected to push-out tests. Two analytical models of stress distribution are presented. The bond at the interface between steel and concrete in the initial phase of the push-out test is provided by the adhesion. Until the force reach a certain value, the slip between both materials does not occur or it is negligibly small, what ensures full composite action of the specimen. In the first analytical model the full bond between both materials was assumed. This model allows to estimate value of the force for which the local loss of adhesion in given cross section begins. In the second model it was assumed that the bond stress distribution is constant along the shear transfer length of the specimen. Based on that the formulas for triangle distribution of stress in steel and concrete for the maximum push-out force were derived and compared with the experimental results. Both models can be used to better understand the mechanisms of interaction between steel and concrete in composite steel-concrete columns.
机译:本文介绍了经受拉出试验的CFST复合元件中钢和混凝土的应力分析。提出了两种应力分布分析模型。在推出试验的初始阶段,钢和混凝土之间的界面处的粘结是通过附着力实现的。在力达到一定值之前,两种材料之间不会发生打滑或滑移很小,这可以确保样品充分发挥复合作用。在第一个分析模型中,假定了两种材料之间的完全结合。该模型允许估计在给定横截面中开始局部失去附着力的力的值。在第二个模型中,假设沿着试样的剪切传递长度,粘结应力分布是恒定的。在此基础上,推导了最大推压力下钢和混凝土中应力的三角分布公式,并与实验结果进行了比较。两种模型都可以用来更好地理解复合钢-混凝土柱中钢与混凝土之间的相互作用机理。

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