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不锈钢芯板钎焊接头中部分缺失焊料的脉冲涡流成像

Pulsed Eddy Current Imaging of Partially Missing Solder in Brazing Joints of Stainless Steel Core Plates.

作者信息

Zhu Changchun, Chen Hanqing, Zhu Xuecheng, Zeng Hui, Xu Zhiyuan

机构信息

School of Mechanical Engineering and Mechanics, Xiangtan University, Xiangtan 411105, China.

School of Electrical and Information Engineering, Tianjin University, Tianjin 300072, China.

出版信息

Materials (Basel). 2024 Nov 14;17(22):5561. doi: 10.3390/ma17225561.

Abstract

Stainless steel core plates (SSCPs) show great potential for modular construction due to their superiority of excellent mechanical properties, light weight, and low cost over traditional concrete and honeycomb structures. During the brazing process of SSCP joints which connect the skin panel and core tubes, it is difficult to keep an even heat flow of inert gas in the vast furnace, which can lead to partially missing solder defects in brazing joints. Pulsed eddy current imaging (PECI) has demonstrated feasibility for detecting missing solder defects, but various factors including lift-off variation and image blurring can deteriorate the quality of C-scan images, resulting in inaccurate evaluation of the actual state of the brazed joints. In this study, a differential pulsed eddy current testing (PECT) probe is designed to reduce the lift-off noise of PECT signals, and a mask-based image segmentation and thinning method is proposed to eliminate the blurring effect of C-scan images. The structure of the designed probe was optimized based on finite element simulation and the positive peak of the PECT signal was selected as the signal feature. Experiments with the aid of a scanning device are then carried out to image the interrogated regions of the SSCP specimen. The peak values of the signals were collected in a matrix to generate images of the scanned brazing joints. Results show that lift-off noise is significantly reduced by using the differential probe. Image blurring caused by the convolution effect of the probe's point spread function with the imaging object was eliminated using a mask-based image segmentation and thinning method. The restored C-scan images enhance the sharpness of the profiles of the brazing joints and the opening in the images accurately reflect the missing solder of the brazed joints.

摘要

不锈钢芯板(SSCPs)由于其在机械性能、重量轻和成本低方面优于传统混凝土和蜂窝结构,在模块化建筑中显示出巨大潜力。在连接蒙皮面板和芯管的SSCP接头的钎焊过程中,在大型炉中难以保持惰性气体的均匀热流,这可能导致钎焊接头出现部分缺焊缺陷。脉冲涡流成像(PECI)已证明检测缺焊缺陷的可行性,但包括提离变化和图像模糊在内的各种因素会降低C扫描图像的质量,从而导致对钎焊接头实际状态的评估不准确。在本研究中,设计了一种差分脉冲涡流测试(PECT)探头以降低PECT信号的提离噪声,并提出了一种基于掩膜的图像分割和细化方法以消除C扫描图像的模糊效应。基于有限元模拟对设计的探头结构进行了优化,并选择PECT信号的正峰值作为信号特征。然后借助扫描装置进行实验,对SSCP试样的检测区域进行成像。将信号的峰值收集在一个矩阵中,以生成扫描钎焊接头的图像。结果表明,使用差分探头可显著降低提离噪声。使用基于掩膜的图像分割和细化方法消除了探头点扩散函数与成像对象的卷积效应引起的图像模糊。恢复后的C扫描图像增强了钎焊接头轮廓的清晰度,图像中的开口准确反映了钎焊接头的缺焊情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ace9/11595735/00abfc396a79/materials-17-05561-g001.jpg

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