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首页> 外文期刊>Journal of advanced concrete technology >Tension Stiffening Model For Numerical Analysis Of Rc Structures By Using Bond-slip Relationship
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Tension Stiffening Model For Numerical Analysis Of Rc Structures By Using Bond-slip Relationship

机译:基于粘结滑移关系的RC结构数值分析的抗拉刚度模型

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In this paper, a tension stiffening model based on the bond-slip relationship is introduced and adopted in a finite multi-layered shell element formulation for surface structure analysis. The tension stiffening effect evaluated at the meso-level is taken into account in the constitutive law of reinforcement at the macro level by defining a crack element at the Gauss point. The crack element is iteratively analyzed by means of a step-by-step integration, which allows application of any complicated bond laws. To define the crack element, a crack spacing model considers the crack formation grade. As a relevant factor in this tension stiffening concept, the reinforcement cracking stress may be evaluated by taking the frac-tile value of the concrete tensile strength. Through several simulations, the validity of the concept is systematically investigated under monotonic and cyclic loading. The analysis under cyclic loading shows the effect of the re-contact of the crack flanks. The numerical examples demonstrate the applicability of the applied reinforced concrete model with a tension stiffening effect.
机译:本文介绍了一种基于粘结-滑移关系的抗拉刚度模型,并将其用于有限的多层壳单元公式中,以进行表面结构分析。通过在高斯点定义裂纹单元,在宏观上的本构关系中考虑了在细观水平上评估的拉伸刚度效果。裂纹元素通过逐步集成进行迭代分析,从而可以应用任何复杂的键定律。为了定义裂纹元素,裂纹间距模型考虑了裂纹的形成等级。作为该抗拉刚度概念的一个相关因素,可以通过采用混凝土抗拉强度的脆性值来评估增强开裂应力。通过多次仿真,系统地研究了单调和循环荷载作用下该概念的有效性。循环载荷下的分析表明了裂纹侧面的重新接触的影响。数值算例表明了所应用钢筋混凝土模型的抗拉刚度效果。

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