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Prediction of Fatigue Damage Accumulation in Metallic Structures by the Estimation of Strains from Operational Vibrations

机译:通过操作振动估计应变来预测金属结构中的疲劳损伤累积

摘要

This work deals with the problem of estimating damage accumulation due to fatigue in the entirebody of a metallic structure using operational vibration measurements collected from a limited number ofsensors installed on a structure. A recently proposed joint input-state estimation filter is extended to estimatethe strain response time histories in the entire body of the structure using the output-only vibration measurements.The estimates hold for any excitation with arbitrary temporal variation and spatial distribution over thestructure. Such predictions are then integrated with damage accumulation models, S-N fatigue curves andrainflow stress cycle counting methods to estimate fatigue damage accumulation maps covering the entirebody of the structure. The method is validated using simulated vibration measurements for a laboratory steelbeam, generated from impulse and stochastic excitations.
机译:这项工作涉及使用从安装在结构上的有限数量的传感器收集的操作振动测量值来估算由于金属结构整体疲劳引起的损坏累积的问题。扩展了最近提出的联合输入状态估计滤波器,以使用仅输出的振动测量来估计结构整体中的应变响应时间历史记录。该估计适用于具有任意时间变化和结构上空间分布的任何激励。然后将此类预测与损伤累积模型,S-N疲劳曲线和雨水应力循环计数方法集成在一起,以估计覆盖整个结构的疲劳损伤累积图。该方法通过对实验室钢梁的模拟振动测量进行了验证,该测量是由脉冲和随机激励产生的。

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