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Nondestructive evaluation of low-velocity impact-induced damage in basalt-carbon hybrid composite laminates using eddy current-pulsed thermography

机译:涡流脉冲热成像技术对玄武岩-碳杂化复合材料层板低速冲击致损伤的无损评估

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Hai Zhang$1$2Stefano Sfarra$3$4Ahmad Osman$2$5Fabrizio Sarasini$6Udo Netzelmann$2Bernd Valeske$2$5Nicolas P. Avdelidis$1$7Clemente Ibarra-Castanedo$1Xavier Maldague$1 $1Laval University, Department of Electrical and Computer Engineering, Computer Vision and Systems Laboratory (CVSL), Quebec City, Canada$2Fraunhofer-lnstitute for Nondestructive Testing IZFP, Department of Inspection of Components and Assemblies, Saarbruecken, Germany$3University of L'Aquila, Department of Industrial and Information Engineering and Economics, L'Aquila, Italy$4Tomsk Polytechnic University, Tomsk, Russia$5University of Applied Sciences Saarland, htw saar, Saarbruecken, Germany$6Sapienza University of Rome, Department of Chemical Engineering Materials Environment and UDR INSTM, Rome, Italy$7Aerospace Integration Research Centre (AIRC), Cranfield, United Kingdom; hai.zhang.1 @ulaval.ca;;;;;;;; Recently, basalt-carbon hybrid composite structures have attracted increasing attention due to their better damage tolerance, if compared with carbon fiber-reinforced polymer composites (CFRP). Low-velocity is considered as one of the most severe threats to composite materials as it is usually invisible and it occurs frequently in service. With this regard, nondestructive testing (NDT) techniques, especially emerging modalities, are expected to be an effective damage detection method. Eddy current-pulsed thermography (ECPT), as an emerging NDT technique, was used to evaluate the damage induced by low-velocity impact loading in a CFRP laminate, as well as in two different-structured basalt-carbon hybrid composite laminates. In addition, ultrasonic C-scan and x-ray computed tomography were performed to validate the thermographic results. Pulsed phase thermography, principal component thermography, and partial least squares thermography were used to process the thermal data and to retrieve the damage imagery. Then, a further analysis was performed on the imagery and temperature profile. As a result, it is concluded that ECPT is an effective technique for hybrid composite evaluation. The impact energy tends to create an interlaminar damage in a sandwich-like structure, while it tends to create an intralaminar damage in an intercalated stacking structure. eddy current pulsed thermography; composite; basa carbon; nondestructive testing.
机译:Hai Zhang(海章)$ 1 $ 2Stefano Sfarra $ 3 $ 4Ahmad Osman $ 2 $ 5Fabrizio Sarasini $ 6Udo Netzelmann $ 2Bernd Valeske $ 2 $ 5Nicolas P.Avdelidis $ 1 $ 7Clemente Ibarra-Castanedo $ 1Xavier Maldague $ 1 $ 1Laval University,Electrical and Computer Engineering系统实验室(CVSL),加拿大魁北克市,Fraunhofer-IZFP无损检测研究所,零部件和组件检查部,萨尔布吕肯,德国,$ 3拉奎拉大学,工业和信息工程与经济系,拉奎拉,意大利$ 4托木斯克理工大学,俄罗斯托木斯克$ 5应用科学大学萨尔大学,德国htw萨尔大学,萨尔布吕肯,德国$ 6萨皮恩扎大学,罗马化学工程材料环境和UDR INSTM,意大利罗马$ 7航空航天集成研究中心(AIRC),英国克兰菲尔德; hai.zhang.1 @ ulaval.ca ;;;;;;;;近年来,玄武岩-碳杂化复合材料结构具有更好的抗损伤性,与碳纤维增强聚合物复合材料(CFRP)相比,受到越来越多的关注。低速被认为是复合材料最严重的威胁之一,因为它通常是不可见的,并且在使用中经常发生。考虑到这一点,无损检测(NDT)技术,尤其是新兴的方法,有望成为一种有效的损伤检测方法。涡流脉冲热成像(ECPT)作为一种新兴的无损检测技术,用于评估CFRP层压板以及两种不同结构的玄武岩-碳杂化复合层压板中低速冲击载荷所造成的破坏。此外,进行了超声波C扫描和X射线计算机断层扫描以验证热成像结果。脉冲相热成像,主成分热成像和偏最小二乘热成像用于处理热数据并检索损坏图像。然后,对图像和温度曲线进行了进一步分析。结果,得出结论,ECPT是一种用于混合复合材料评估的有效技术。冲击能量倾向于在夹心状结构中产生层间损伤,而它倾向于在插层结构中产生层内损伤。涡流脉冲热像仪综合;玄武岩碳;非破坏性测试。

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    《Optical engineering》 |2019年第4期|041602.1-041602.7|共7页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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