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首页> 外文期刊>International Journal of Civil Engineering,Transaction A:Civil Engineering >Three-Dimensional Nonlinear Finite Element Modeling for Bond Performance of Ribbed Steel Bars in Concrete Under Lateral Tensions
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Three-Dimensional Nonlinear Finite Element Modeling for Bond Performance of Ribbed Steel Bars in Concrete Under Lateral Tensions

机译:横向张力下混凝土中罗纹钢筋粘结性能的三维非线性有限元建模

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摘要

Development of experimental studies in bond behavior between deformed bar and concrete under complex stress conditions in the last 2 decades is significantly affecting the concrete design specification. This article presents a rib-scale finite element model (FEM) to study the bond behavior of deformed bar in concrete under lateral tensions. In this model, detailed modeling including the reinforcing bar ribs and the concrete keys in contact region is realized with real geometric parameters. At the concrete-bar interface, surface-to-surface contacts with tie constraints are used and relative sliding or separation between contact surfaces are inhibited; adhesion between concrete and deformed bar is ignored. A user-defined subroutine named VUSDFLD in ABAQUS software was incorporated into the concrete damaged plasticity (CDP) model to acquire more accurate concrete constitutive relations. The FEM is calibrated using pullout test data from published papers. The simulation results show that all specimens failed in splitting mode. The lateral tension is an adverse factor on the bond property between steel bar and concrete, both the ultimate bond strength and the slip at the peak bond stress decrease with the increase of the lateral tensions. Comparison of computational simulation with the experimental data indicates that the proposed model gives a reasonable prediction of the bond stress-slip curves as well as the concrete crack patterns.
机译:在过去2岁的复杂胁迫条件下,变形棒与混凝土之间粘合行为的实验研究的发展是显着影响混凝土设计规范的显着影响。本文介绍了罗纹尺度有限元模型(FEM),以研究横向张力下混凝土中变形棒的粘合行为。在该模型中,使用实际几何参数实现了包括加强条肋和接触区域中的混凝土键的详细建模。在混凝土条界面处,使用与扎带约束的表面到表面触点,并且抑制接触表面之间的相对滑动或分离;忽略混凝土和变形棒之间的粘附性。 ABAQUS软件中指定VUSDFLD的用户定义子程序被纳入混凝土损坏的可塑性(CDP)模型,以获取更准确的具体组成部分关系。使用来自已发布的论文的拔路测试数据进行校准。仿真结果表明,所有标本都在分裂模式下失效。横向张力是钢筋和混凝土之间的粘合性质的不利因素,恒定粘合强度和峰值粘应力的差异随着横向张力的增加而降低。计算模拟与实验数据的比较表明,所提出的模型可以合理地预测粘合应力滑动曲线以及混凝土裂纹图案。

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