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Nonlinear cumulative damage model and application to bridge fatigue life evaluation

机译:非线性累积损伤模型及其在桥梁疲劳寿命评估中的应用

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摘要

Fatigue is a damage accumulation process in which material property deteriorates continuously. Fatigue life prediction issues are important for safety. This article aims to develop a nonlinear cumulative damage model. A fatigue damage model based on the continuum damage mechanics is addressed and applied to bridge fatigue life evaluation. First, the bridge nonlinear cumulative damage model based on damage mechanics is propounded and equivalent effective stress range is given. Then, the effects of the main parameter in the model are analyzed. Finally, Xinghai Bay Bridge is taken as a case study. The results indicate that the damage is increased with the material parameter alpha reduced, alpha is a material parameter depending on stress amplitude and without physical meaning. If alpha 20, the effect of alpha is negligible. If alpha = 0, nonlinear cumulative damage model degrades into Miner's rule and effect of alpha to structural damage is maximum. The cumulative damage curve calculated by the nonlinear cumulative damage model is nonlinear, with a low cumulative rate initially but a very high cumulative rate at the end of the design life, whereas the Miner's rule is linear. The nonlinear cumulative damage model can reflect actual damage process, while Miner's rule is pessimistic.
机译:疲劳是一种损伤累积过程,其中材料性能不断恶化。疲劳寿命预测问题对于安全至关重要。本文旨在开发非线性累积损伤模型。提出了基于连续损伤力学的疲劳损伤模型,并将其应用于桥梁疲劳寿命评估。首先,提出了基于损伤力学的桥梁非线性累积损伤模型,并给出了等效有效应力范围。然后,分析了模型中主要参数的影响。最后以星海湾大桥为例。结果表明,随着材料参数alpha的减小,损伤会增加,alpha是取决于应力幅度且没有物理意义的材料参数。如果alpha> 20,则alpha的影响可忽略不计。如果alpha = 0,则非线性累积损伤模型会退化为Miner规则,并且alpha对结构损伤的影响最大。由非线性累积损伤模型计算出的累积损伤曲线是非线性的,最初具有较低的累积率,但在设计寿命结束时具有很高的累积率,而Miner规则是线性的。非线性累积损伤模型可以反映实际的损伤过程,而Miner法则是悲观的。

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