Non-Destructive Testing of Magnetically Impelled Arc Butt Welding of Mild Steel Tubes

M. Chaturvedi, S. Arungalai Vendan, R. Sharanabasavaraj, V. Kachinsky, K. Ramesh Kumar
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Abstract

This paper presents the results of Non-Destructive Testing on Magnetically Impelled Arc Butt (MIAB) welded mild steel tubes of 27mm OD and 1.5mm thickness. As part of this work, the tests covered were radiography, liquid penetrant, and magnetic particle testing. The testing results indicate that porosity, penetration levels and the defects found are within acceptable limits as per standard. For this experimental work, the selection of parameters was based on trial and error adopted in preliminary trials. The irregularities found in the non-destructive testing samples have enabled the fine-tuning of process parameters. The optimum values of hydraulic pressure, weld time and weld current are assessed to be 30-35bar, 5.5s and 150 A, respectively 270 A for this dimension of tubes. This work focuses on the experimental observations of MIAB welding and Non-destructive testing results for MS tubes of the selected dimension, which have not been reported in the existing literature. The achieved input forms the database for the parametric study of this process. The optimum parametric ranges obtained from the results can be extrapolated to be used for joining tubes of different dimensions and can also form the inputs for reaching parameter and response dependency equations.
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低碳钢管磁推动电弧对接焊的无损检测
本文介绍了外径为27mm、厚度为1.5mm的磁脉冲电弧对焊低碳钢管的无损检测结果。作为这项工作的一部分,所涵盖的测试包括射线照相、液体渗透和磁粉检测。测试结果表明,孔隙率、渗透水平和发现的缺陷均在标准规定的可接受范围内。对于这项实验工作,参数的选择是基于初步试验中采用的试错法。在无损检测样品中发现的不规则性使得能够对工艺参数进行微调。对于这种尺寸的管子,液压、焊接时间和焊接电流的最佳值分别为30-35bar、5.5s和150A、270A。这项工作的重点是MIAB焊接的实验观察和选定尺寸的MS管的无损检测结果,这些结果在现有文献中没有报道。所获得的输入形成了用于该过程的参数研究的数据库。从结果中获得的最佳参数范围可以外推以用于连接不同尺寸的管,并且还可以形成用于达到参数和响应依赖性方程的输入。
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来源期刊
CiteScore
0.80
自引率
0.00%
发文量
1
审稿时长
16 weeks
期刊最新文献
Non-Destructive Testing of Magnetically Impelled Arc Butt Welding of Mild Steel Tubes Effect of GTAW on the Tensile Strength and Hardness of Mild Steel Machine Learning for Parametrical Analysis of Friction Stir Welded Aluminum Metal Matrix Composites Mechanical Characterization of Filler Modified ABS 3D Printed Composites Made via Fused Filament Fabrication Review of Joining Various Materials by FSW Process and Applications
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