涡流检测技术对铜(C101)提离效果的评价

F. Sulaiman, Syafiqa Putri Adlina Harun, E. Eldy
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引用次数: 0

摘要

本研究旨在开发一种涡流测试(ECT)探头,当线圈放置在铜101金属上测试是否有导电涂层,以及存在升降高度(即0,2.5,5.0,7.5和10.00.5 mm)时,该探头产生涡流信号。然后,将不同厚度的金属,即1.5、3.0和5.00.5 mm,以及不同表面缺陷,即10、20和300.5 mm,刻印在金属上进行测试。线圈探头采用棒状电磁线圈设计,铁芯长度为65mm,面积为5mm,匝数为200n。它演示了棒状电磁线圈如何用于检测铜101 (C101)上的各种表面缺陷。C101的最佳频率为7.850 MHz。综上所述,当表面缺陷尺寸较大时,输出电压信号随厚度的增大而增大,但随厚度的增大而减小。此外,随着提升高度的增加,涂层和非涂层金属的输出电压都相应降低。因此,除了比较涂层和非涂层金属的输出电压外,还有微小的差异,这表明本研究中的ECT技术能够适当地检测表面缺陷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lift-Off Effect Evaluation by Using Eddy Current Testing Technique on Copper (C101)
This study aims to develop an eddy current testing (ECT) probe that generates eddy current signals when a coil is placed above copper101 metal testing with and without nonconductive coating and the presence of lift-off height, i.e., 0, 2.5, 5.0, 7.5, and 10.0 0.5 mm. Then, the metal test with a variety of thicknesses, i.e., 1.5, 3.0, and 5.0 0.5 mm, and with varies of surface defects, i.e., 10, 20, and 30  0.5 mm, engraved on the metal testing. The coil probe is a rodshaped solenoid coil designed with an iron core with 65 mm length, 5 mm area, and 200 N turns. It demonstrates how the rod-shaped solenoid coil may be used to detect various surface defects on copper101 (C101). The optimal frequencies for C101 are 7.850 MHz. In conclusion, the output voltage signals for larger surface defect sizes increase but decrease as the thickness becomes thicker. Furthermore, as the lift-off height increases, the output voltage for both coated and non-coated metal decreases accordingly. Therefore, besides comparing the output voltage for coated and non-coated metals, there are minor differences which shows that the ECT technique in this studyis capableto detect surface defects appropriately.
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