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基于涡流测量的碳纤维束损伤预测研究

Study of Damage Prediction of Carbon Fiber Tows Using Eddy Current Measurement.

作者信息

Roh Jeong U, Kwon Hyein, Lee Sangjin, Ha Jae Chung, Yang Seong Baek, Lee Haeseong, Kwon Dong-Jun

机构信息

Composites Convergence Research Center, Korea Textile Machinery Convergence Research Institute, Gyeongsan 38542, Republic of Korea.

High-Tech Product Research Headquarters, Korea Textile Machinery Convergence Research Institute, Gyeongsan 38542, Republic of Korea.

出版信息

Polymers (Basel). 2023 Oct 21;15(20):4182. doi: 10.3390/polym15204182.

Abstract

When manufacturing fiber-reinforced composites, it is possible to improve the quality of fiber steel fire and reduce the number of cracks in the finished product if it is possible to quickly identify the defects of the fiber tow. Therefore, in this study, we developed a method to identify the condition of carbon fiber tow using eddy current test (ECT), which is used to improve the quality of composite materials. Using the eddy current detection sensor, we checked the impedance results according to the condition of the CF tow. We found that the materials of the workbench used in the experiment greatly affected the ECT results, so it is necessary to use a material with a non-conductive and smooth surface. We evaluated the impedance results of the carbon fiber at 2 mm intervals using the ECT sensor and summarized the impedance results according to the fiber width direction, presenting the condition of the section as a constant of variation (CV). If the condition of the carbon fiber tow was unstable, the deviation of the CV per section was large. In particular, the deviation of the CV per section was more than 0.15 when the arrangement of the fibers was changed, foreign substances were formed on the surface of the fibers, and damage occurred in the direction of the fiber width of more than 4 mm, so it was easy to evaluate the quality on CF tow.

摘要

在制造纤维增强复合材料时,如果能够快速识别纤维束的缺陷,就有可能提高纤维钢防火性能并减少成品中的裂纹数量。因此,在本研究中,我们开发了一种使用涡流检测(ECT)来识别碳纤维束状态的方法,该方法用于提高复合材料的质量。使用涡流检测传感器,我们根据碳纤维束的状态检查了阻抗结果。我们发现实验中使用的工作台材料对ECT结果有很大影响,因此有必要使用表面不导电且光滑的材料。我们使用ECT传感器以2毫米的间隔评估了碳纤维的阻抗结果,并根据纤维宽度方向总结了阻抗结果,将截面状态表示为变异系数(CV)。如果碳纤维束的状态不稳定,则每段CV的偏差就会很大。特别是,当纤维排列发生变化、纤维表面形成异物以及在纤维宽度方向上出现超过4毫米的损伤时,每段CV的偏差超过0.15,因此很容易评估碳纤维束的质量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5c6/10610890/8c89c8f7514a/polymers-15-04182-g001.jpg

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