用于钢结构焊缝裂纹检测的柔性涡流阵列测量系统。

Le Quang Trung, Nguyen Duc Khuong, Tran Thi Hoai Dung, Naoya Kasai, Tran Mach Tuan Kiet, Kouichi Sekino, Honoka Fukuda
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引用次数: 0

摘要

钢结构焊缝裂纹检测是保证结构安全可靠的重要手段。涡流检测由于其非接触性和对表面和次表面裂纹的高灵敏度而被广泛应用。本研究报告了一种具有六个可弯曲通道的柔性涡流阵列(FECA)传感器,用于检测钢结构焊接区域的表面和次表面裂纹。激励线圈串联,增强信号强度,而检测线圈交错,最大限度地减少升空效应,提高灵敏度。将FECA传感器与基于labview的数字锁相放大器集成,开发了实时测量系统。实验表明,使用500 kHz和5 kHz激励频率分别可以有效检测表面和次表面裂纹,包括锌涂层下的裂纹。尽管人工扫描,稳定和可重复的信号记录跨多个通道。该系统具有高灵敏度、实时性和对复杂几何形状的适应性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flexible eddy current array measurement system for crack detection in weld zones of steel structures.

Crack detection in weld zones of steel structures is essential for ensuring structural safety and reliability. Eddy current (EC) testing is widely used due to its non-contact nature and high sensitivity to surface and sub-surface cracks. This study reports a flexible eddy current array (FECA) sensor with six bendable channels designed to detect surface and sub-surface cracks in the weld zones of steel structures. The excitation coils are connected in series to enhance signal intensity, while interleaved detection coils minimize lift-off effects and improve sensitivity. A real-time measurement system was developed by integrating the FECA sensor with a LabVIEW-based digital lock-in amplifier. Experiments using 500 kHz and 5 kHz excitation frequencies demonstrated effective detection of surface and sub-surface cracks, respectively, including under zinc coatings. Despite manual scanning, stable and repeatable signals were recorded across multiple channels. The proposed system offers high sensitivity, real-time capability, and adaptability to complex geometries.

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