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首页> 外文期刊>IEEE transactions on industrial informatics >Detection and Quantization of Fatigue Damage in Laminated Composites With Cross Recursive Quantitative Analysis
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Detection and Quantization of Fatigue Damage in Laminated Composites With Cross Recursive Quantitative Analysis

机译:交叉递归定量分析叠层复合材料疲劳损伤的检测与量化

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摘要

Damage detection is an inevitable part of composite laminate product verification during both manufacture and maintenance inspections. The article presents a damage characterization method to detect and quantize the fatigue damage in composite laminates. The cross recurrence plot (CRP) of Lamb signal is introduced to assess the dynamic difference between the composite laminates in undamaged and damaged states. The cross recursive quantification analysis features derived from the CRPs are optimally selected and fused into a damage value (DV) based on the support vector data description model. Then, the DVs of diagnostic paths are integrated into a unified damage index for quantizing the fatigue damage of composite laminate subjected to the cyclic loading. The feasibility of the proposed method is validated by the simulation data acquired from the finite element models with different severity degrees of microcracking and the fatigue damage progressing data from NASA prognostics data repository.
机译:损伤检测是在制造和维护检查期间复合层压材料产品验证的不可避免部分。该物品呈现损伤表征方法,以检测和量化复合层压板中的疲劳损伤。引入LAMB信号的交叉复发图(CRP)以评估复合层压板在未损坏和受损状态中的动态差异。基于支持向量数据描述模型,最佳地选择并融合来自CRP的交叉递归量化分析特征并融合成损坏值(DV)。然后,将诊断路径的DV集成到统一的损伤指数中,以量化对循环载荷进行复合层压材料的疲劳损伤。所提出的方法的可行性由从有限元模型获取的模拟数据验证,其具有不同严重程度的微裂纹和从美国国家航空航天局预测数据存储库进展数据的疲劳损坏。

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