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Damage detection and fatigue life estimation under random loads: A new structural health monitoring methodology in the frequency domain

机译:随机载荷下的损伤检测和疲劳寿命估计:频域中的新结构健康监测方法

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摘要

This paper presents a methodology for structural health monitoring of fatigue cracks under stationary random loads. The methodology is composed of two parts: an empirical correlation to monitor the evolution of damage indices and a numerical scheme for fatigue life estimation. The damage indices are based on the variation of the vibrational response of the structure due to crack propagation. Two damage metrics are studied, and the methodology is verified for a cantilever beam subjected to random base excitation. The case study validates the effectiveness of the methodology and shows that both metrics have the potential for damage detection. For the numerical estimation of the fatigue life, the proposed framework uses the probability density function of the stress, which is obtained from frequency-domain methods, and an equivalent stress approach based on the Walker's equation for fatigue crack growth. Excellent agreement is found between the predicted fatigue life and the experimental values.
机译:本文介绍了固定式随机荷载下疲劳裂缝结构健康监测的方法。该方法由两部分组成:经验相关性,以监测损伤指数的演变和疲劳寿命估计的数值方案。损坏指数基于由于裂纹传播而导致结构的振动响应的变化。研究了两种损伤度量,并且验证了对随机基础激励的悬臂梁的方法。案例研究验证了方法的有效性,并表明两个度量都具有损坏检测的可能性。对于疲劳寿命的数值估计,所提出的框架使用应力的概率密度函数,该概率密度函数从频域方法获得,以及基于步行者方程的疲劳裂纹生长的等效应力方法。在预测的疲劳寿命和实验值之间发现了良好的协议。

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