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首页> 外文期刊>Nondestructive Testing and Evaluation >Method for detecting damage in carbon-fibre reinforced plastic-steel structures based on eddy current pulsed thermography
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Method for detecting damage in carbon-fibre reinforced plastic-steel structures based on eddy current pulsed thermography

机译:基于涡流脉冲热成像检测碳纤维增强塑料 - 钢结构损伤的方法

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摘要

Eddy current pulsed thermography (ECPT) is well established for non-destructive testing of electrical conductive materials, featuring the advantages of contactless, intuitive detecting and efficient heating. The concept of divergence characterization of the damage rate of carbon fibre-reinforced plastic (CFRP)-steel structures can be extended to ECPT thermal pattern characterization. It was found in this study that the use of ECPT technology on CFRP-steel structures generated a sizeable amount of valuable information for comprehensive material diagnostics. The relationship between divergence and transient thermal patterns can be identified and analysed by deploying mathematical models to analyse the information about fibre texture-like orientations, gaps and undulations in these multilayered materials. The developed algorithm enabled the removal of information about fibre texture and the extraction of damage features. The model of the CFRP-glue-steel structures with damage was established using COMSOL Multiphysics (R) software, and quantitative non-destructive damage evaluation from the ECPT image areas was derived. The results of this proposed method illustrate that damaged areas are highly affected by available information about fibre texture. This proposed work can be applied for detection of impact induced damage and quantitative evaluation of CFRP structures.
机译:涡流脉冲热成像(ECPT)对于导电材料的非破坏性测试,提供了很好的成立,具有非接触,直观的检测和高效加热的优点。碳纤维增强塑料(CFRP)--斯钢结构的损伤率的分歧概念可以扩展到Ecpt热图案表征。在本研究中发现,在CFRP-钢结构上使用ECPT技术为综合材料诊断产生了大量的有价值信息。通过部署数学模型来识别和分析发散和瞬态热图案之间的关系,以分析这些多层材料中的纤维纹理定向,间隙和起伏的信息。开发的算法使删除了有关纤维纹理的信息和损坏功能的提取。使用COMSOL多体学该提出方法的结果说明了受纤维纹理的可用信息的受损区域受到高度影响。该拟议的作品可用于检测对CFRP结构的影响造成损伤和定量评估。

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