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Finite element method numerical simulation and ductile capacity analysis of bond-slip between epoxy coated plain steel bars and concrete

机译:环氧涂层普通钢与混凝土粘结滑移的有限元数值模拟与延性分析

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This research is devoted to a finite element method (FEM) numerical simulation of the bond-slip between epoxy coated plain steel bars and concrete and the ductile capacity of the mechanical process of extracting the steel bars. In this case the cured epoxy coating is assumed to be mid-layer, located between the steel bar and the concrete. This layer leads to a change of the ductile capacity of the bond and to some differences in the nonlinear bond-slip relation in comparison with the bond-slip relation in the case of non-insulated steel bars. The aim of the research is the generation of an adequate numerical model for extracting the bond-slip relation. For that purpose, a more realistic concrete material model is assumed in the proposed computational model, by means of development of dispersion micro cracks. The pull-out force is compared with the force recorded in an experiment.The ductile capacity of the bond is also analyzed and discussed in detail. The analysis is performed by the FEM.
机译:这项研究致力于有限元方法(FEM)数值模拟环氧涂层的普通钢筋与混凝土之间的粘结滑移以及提取钢筋的机械过程的延展性。在这种情况下,假定固化的环氧涂层为中间层,位于钢筋和混凝土之间。与非绝缘钢筋的情况相比,该层会导致粘结材料的延展性发生变化,并且非线性粘结滑动关系会有所不同。该研究的目的是生成适当的数值模型以提取键滑关系。为此,在拟议的计算模型中采用了弥散性微裂纹的发展方法,从而提出了一种更为现实的混凝土材料模型。将拉出力与实验中记录的力进行比较。 还对键的延展性进行了详细分析和讨论。该分析由FEM执行。

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