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Analysis of Fatigue Strain, Fatigue Modulus and Fatigue Damage for the Model Formulation of Concrete Based on Strain Life Approach

机译:基于应变寿命法的混凝土模型配方的疲劳应变,疲劳模量和疲劳损伤分析

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Analysis of fatigue strain, fatigue modulus and fatigue damage for the modeling of concrete plays a vital role in the evolution material behaviour which is heterogeneous and anisotropic in nature. The Level-S nonlinear fatigue strain curve, fatigue modulus curve, residual strain curve of concrete in compression, tension, flexure and torsional fatigue loading were proposed using strain life approach. The parameters such as physical meaning, the ranges, and the impact on the shape of the curve were discussed. Then, the evolution model of fatigue modulus was established based on the fatigue strain, fatigue modulus, residual strain and secondary strain evolution model. The hypothesis of fatigue modulus is inversely related with the fatigue strain amplitude. The fatigue evolution of concrete damages the bond between material grains, changed the orientation of structure of molecules and affects the elastic properties resulting in the reduction of material stiffness and modulus by formation of microcracking, macro cracking, cracking and finally damage. This paper presents the fatigue strain life model and analysis of fatigue strain, fatigue modulus and damage parameters of concrete which is capable of predicting stiffness degradation, inelastic deformation, and strength reduction under fatigue loading and experimental results were employed for the validation of the theoretical model.
机译:用于混凝土建模的疲劳应变,疲劳模量和疲劳损伤分析在本质上是异质性和各向异性的演化材料行为中起着至关重要的作用。利用应变寿命法,提出了混凝土在压缩,拉伸,挠曲和扭转疲劳载荷下的Level-S非线性疲劳应变曲线,疲劳模量曲线,残余应变曲线。讨论了诸如物理意义,范围以及对曲线形状的影响等参数。然后,基于疲劳应变,疲劳模量,残余应变和二次应变演化模型,建立了疲劳模量的演化模型。疲劳模量的假设与疲劳应变幅度成反比。混凝土的疲劳发展破坏了材料颗粒之间的结合,改变了分子结构的方向,并影响了弹性,导致了材料的微裂纹,宏观裂纹,开裂和最终破坏,从而降低了材料的刚度和模量。本文提出了疲劳应变寿命模型,并分析了疲劳应变,疲劳模量和损伤参数,这些参数能够预测疲劳载荷下的刚度退化,非弹性变形和强度降低,并通过实验结果对理论模型进行了验证。 。

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