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Systematic study of effect of cross-drafts and nozzle diameter on shield gas coverage in MIG welding

机译:系统研究气孔和喷嘴直径对MIG焊接保护气体覆盖率的影响

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摘要

A shield gas flowrate of 15–20 L min21 is typically specified in metal inert gas welding, but is often adjusted to as high as 36 L min21 by welders in practice. Not only is this overuse of shield gas wasteful, but uncontrolled high gas flows can lead to significant turbulence induced porosity in the final weld. There is therefore a need to understand and control the minimum shield gas flowrate used in practical welding where cross-drafts may affect the coverage. Very low gas coverage or no shielding leads to porosity and spatter development in the weld region. A systematic study is reported of the weld quality achieved for a range of shield gas flowrates, cross-draft speeds and nozzle diameters using optical visualisation and numerical modelling to determine the shield gas coverage. As a consequence of the study, the shield gas flow has been reduced to 12 L min21 in production welding, representing a significant process cost saving and reduced environmental impact with no compromise to the final weld quality.
机译:金属惰性气体保护焊通常会指定15–20 L min21的保护气体流量,但实际上焊工通常将其调整为高达36 L min21。过度使用保护气体不仅浪费,而且不受控制的高气流会导致最终焊接中明显的湍流引起的孔隙。因此,有必要了解和控制在实际焊接中使用的最小保护气体流速,在这种情况下,交叉通风会影响覆盖范围。极低的气体覆盖率或没有保护层会导致在焊接区域产生气孔和飞溅。据报道,通过光学可视化和数值模型确定保护气体的覆盖范围,对一系列保护气体流量,交叉气流速度和喷嘴直径所达到的焊接质量进行了系统研究。研究的结果是,在生产焊接中将保护气体流量降低至12 L min21,这意味着可以节省大量工艺成本并减少环境影响,而不会影响最终焊接质量。

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