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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Correlation between wire feed speed and external mechanical constraint for enhanced process stability in underwater wet flux-cored arc welding
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Correlation between wire feed speed and external mechanical constraint for enhanced process stability in underwater wet flux-cored arc welding

机译:水下湿润磁通弧焊中增强工艺稳定性送送速度与外部机械约束的相关性

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摘要

It is a great challenge to improve the process stability in conventional underwater wet welding due to the formation of unstable bubble. In this study, mechanical constraint method was employed to interfere the bubble generated by underwater wet welding, and the new method was named as mechanical constraint assisted underwater wet welding. The aim of the study was to quantify the combined effect of wire feed speed and condition of mechanical constraint on the process stability in mechanical constraint assisted underwater wet welding. Experimental results demonstrated that the introduction of mechanical constraint not only suppressed the bubble without floating but also stabilized the arc burning process. The degree of influence of mechanical constraint, which changed with wire feed speed, played an important role during the mechanical constraint assisted underwater wet welding process. For all wire feed speeds, the fluctuations of welding electrical signal were decreased through introduction of mechanical constraint. The difference in the proportion of arc extinction process between underwater wet welding and mechanical constraint assisted underwater wet welding became less with increasing wire feed speed. At wire feed speed lower than 7.5 m/min, the improvement of process stability was very significant by mechanical constraint. However, the further improvement produced limited effect when the wire feed speed was greater than 7.5 m/min. The observation results showed that a better weld appearance was afforded at a large wire feed speed, corresponding to a lower variation coefficient.
机译:由于不稳定气泡形成,改善传统水下湿焊中的过程稳定性是一个巨大的挑战。在该研究中,采用机械约束方法干扰水下湿焊产生的气泡,并将新方法命名为机械约束辅助水下湿焊接。该研究的目的是通过机械约束辅助水下湿焊接中的工艺稳定性来量化送送速度和机械约束条件的综合作用。实验结果表明,机械约束的引入不仅抑制了泡沫而不漂浮,而且还稳定了电弧燃烧过程。在机械约束辅助水下湿焊接过程中,使用送丝速度变化的机械约束的影响程度起到了重要作用。对于所有导线速度,通过引入机械约束,焊接电信号的波动减小。随着送丝速度的增加,水下湿焊接和机械约束辅助水下湿焊接之间的电弧消光过程比例的差异变少。在送丝速度低于7.5米/分钟,通过机械约束,工艺稳定性的提高非常显着。然而,当送料速度大于7.5米/分钟时,进一步改善产生有限的效果。观察结果表明,在大的送料速度下提供更好的焊接外观,对应于较低的变化系数。

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