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Continuum-based approach for modelling the flexural behaviour of plain concrete beam under high-cycle fatigue loads

机译:基于连续的方法,用于在高循环疲劳负荷下造型普通混凝土梁弯曲行为的建模方法

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摘要

In this study, a continuum-based model was proposed to characterise the flexural performance and damage evolution process of a plain concrete beam under high-cycle fatigue loads. The plain concrete beam under threepoint bending load was modelled by combining the damaged constitutive model of concrete and the Euler-Bernoulli beam theory with varied stiffness. The dynamic stiffness matrix method, in conjunction with the discretization technique, was adopted to solve the nonlinear governing equations of motion. A global damage index corresponding to natural frequencies was introduced to quantify the performance degradation of the beam. To improve the analysis efficiency of the high-cycle fatigue problems, the accelerated algorithm, namely the jump-in-cycle method, was employed in this model. It is demonstrated that the numerical results agree well with the experimental data under fatigue harmonic loads. Performance degradation under fatigue bending loads only occurs at the midspan of the beam. Adopting the jump-in-cycle methods significantly improves the analysis efficiency of the high-cycle fatigue problem, and the calculation time is reduced by approximately 90% compared with the cycle-by-cycle method. This model is capable of rationally predicting damage evolutions, stiffness degradation processes, stress redistributions, and loading level-fatigue life (S-N) curves and can provide a basis for simulating the flexural behaviours of reinforced concrete (RC) beams under fatigue bending loads.
机译:在本研究中,提出了一种基于连续的模型,以表征在高循环疲劳负载下普通混凝土梁的弯曲性能和损伤演化过程。三个弯曲载荷下的普通混凝土梁通过组合混凝土的损坏结构型模型和各种刚度来建模。采用动态刚度矩阵法,与离散化技术结合使用来解决运动的非线性控制方程。引入了对应于自然频率的全局损伤指数来量化光束的性能下降。为了提高高周期疲劳问题的分析效率,在该模型中采用加速算法,即跳转循环方法。证明数值结果与疲劳谐波负荷下的实验数据很好。在疲劳弯曲载荷下的性能劣化仅发生在光束的中间。采用跳跃循环方法显着提高了高循环疲劳问题的分析效率,与逐个循环方法相比,计算时间约为90%。该模型能够理性地预测损伤演进,刚度降解过程,应力再分布和装载水平疲劳寿命(S-N)曲线,并且可以为模拟疲劳弯曲载荷下钢筋混凝土(RC)梁的弯曲行为提供依据。

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