首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Corrosion resistance and metallurgical behaviour of CMT welded Al-LCS dissimilar butt joint exposed in simulated industrial environment
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Corrosion resistance and metallurgical behaviour of CMT welded Al-LCS dissimilar butt joint exposed in simulated industrial environment

机译:模拟工业环境下CMT焊接Al-LCS异种对接头的耐腐蚀性能及冶金性能

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摘要

Cold Metal Transfer welding is a predominant process for joining the Aluminium and Low Carbon Steel (LCS) dissimilar joints with enhanced properties. In addition, these joints have vast application in various simulated industrial environmental conditions. However, the formation of thick intermetallic layers during welding over these joints leads to invoking the corrosion attack and causing a catastrophic failure that is the primary concern in life prediction of the joint. Hence, the corrosion behaviour of AL-LCS dissimilar butt joint exposed in the simulated industrial environment has been studied experimentally and it has been compared with the Cold Metal Transfer (CMT) welded aluminium and LCS similar joints. The potentiodynamic polarization and the electrochemical impedance spectroscopy were carried out in 3.5 aggressive sodium chloride medium with varying benzotriazole corrosion inhibitor with varying the concentrations like 10 ppm, 15 ppm and 20 ppm. The results showed that the corrosion resistance behaviour of CMT welded dissimilar joints are increased with increasing inhibitor concentration. The inhibitor showed effective performance, and the efficiency is also found to be 78-80 at 20ppm, which revealed the enhanced corrosion resistance of dissimilar metal joints in simulated industrial conditions. Finally, the dissimilar joints are characterized by sophisticated analytical techniques.
机译:冷金属转移焊接是连接铝和低碳钢 (LCS) 异种接头的主要工艺,具有增强的性能。此外,这些接头在各种模拟工业环境条件下都有广泛的应用。然而,在这些接头上焊接过程中形成厚厚的金属间化合物层会导致腐蚀侵蚀并导致灾难性故障,这是接头寿命预测中的主要问题。因此,通过实验研究了AL-LCS异种对接头在模拟工业环境中的腐蚀行为,并与冷金属转移(CMT)焊接铝和LCS类似接头进行了比较。在3.5%腐蚀性氯化钠介质中,使用浓度为10 ppm、15 ppm和20 ppm的苯并三唑缓蚀剂进行动电位极化和电化学阻抗谱分析。结果表明:CMT焊接异种接头的耐蚀性能随抑制剂浓度的增加而增加。该抑制剂表现出有效的性能,在20ppm时效率也达到78-80%,这表明异种金属接头在模拟工业条件下的耐腐蚀性增强。最后,通过复杂的分析技术对不同的接头进行表征。

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