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Numerical analysis of high and low-cycle flexural fatigue for reinforced concrete beams under full-range of varying amplitudes

机译:各种不同振幅下钢筋混凝土梁高低弯曲弯曲疲劳的数值分析

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摘要

Structural reinforced concrete (RC) experiences cyclic loads during their service life, and in practice, the load amplitude can always change, which will lead to a mixed high and low-cycle fatigue failure. This paper aims to investigate the fatigue behaviors of RC beams under different load levels and more importantly, their sequential effects. Based on the path-dependent constitutive models, the structural degradation under different repeated loads are comprehensively investigated by numerical simulation of higher consistency with the reality. It is fairly indicated that a clear bi-linear character may exist in the so-called S-N diagram, of which the high-cycle fatigue failure is attributed to rupture of main reinforcement under tension, while the low-cycle fatigue failure is controlled by the concrete failure in flexural compression zone. A simple design method to consider mixed low and high cycle fatigue is proposed to quantify this bi-linear character. For the varying amplitude of cyclic loads, the high-to-low loading sequence may cause a shortened fatigue life. More interestingly, if a rather high heavy load (0.85 or 0.95 of the static capacity) is applied just once before ordinary fatigue loads (ex. 0.6), the deflection may significantly increase, while the stiffness and final fatigue life would be slightly reduced in view of nonlinear mechanics.
机译:结构钢筋混凝土(RC)在其使用寿命期间体验循环负载,在实践中,负载幅度总是可以改变,这将导致混合的高和低循环疲劳失效。本文旨在调查不同负载水平下RC光束的疲劳行为,更重要的是,它们的顺序效应。基于依赖于路径依赖性本构模型,通过与现实更高的一致性的数值模拟全面地研究了不同重复载荷下的结构劣化。相当指出,在所谓的SN图中可以存在明确的双线性特征,其中高循环疲劳失效归因于张力下的主增强件破裂,而低循环疲劳失效由此控制弯曲压缩区的混凝土故障。提出了一种考虑混合低和高循环疲劳的简单设计方法来量化该双线性特征。对于循环载荷的变化幅度,高到低负载序列可能导致缩短的疲劳寿命。更有趣的是,如果在普通疲劳载荷(例如0.6)之前仅施加一次相当高的重载(静态容量0.85或0.95),则偏转可能会显着增加,而刚度和最终疲劳寿命将略微减少非线性力学的看法。

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