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Formation and suppression mechanism of lack of fusion in narrow gap laser-arc hybrid welding

机译:窄间隙激光弧混合焊中缺乏融合的形成和抑制机制

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摘要

In this study, the main defect, i.e., lack of fusion (LOF), occurring at the sidewalls in narrow gap laser-arc hybrid welding (NGHW) was confirmed to depend on the cross-sectional shape of previous pass, which was classified into four types, namely concave, convex, middle convex, and inclined shapes. Only the concave shape was effective in suppressing the LOF because the sharp corner between the weld and sidewalls could not be completely filled by next pass in the other three types. The effects of the welding parameters on the concave degree of weld cross-sectional shape were obtained from the dimensionless analysis related to the driving forces in the molten pool. It was found that the welding parameters, namely the arc current, welding speed, and groove width had a significant effect on the concave degree, whereas the laser power and laser-arc distance had no direct effect. A semi-quantitative criterion was proposed to predict the occurrence of the LOF. The LOF was suppressed when the ratio of the electromagnetic force to the liquid viscosity force was larger than 3.21x10(5), and the ratio of the surface tension gradient to the liquid viscosity force was larger than 1.28x10(4). The suppression mechanism of the LOF in NGHW was discussed in terms of the forces and melt flow in the molten pool.
机译:在本研究中,确认在窄间隙激光混合焊接(NGGW)中发生在侧壁上发生的主要缺陷,即缺乏融合(LOF),以取决于先前通过的横截面形状,其被分类为四种类型,即凹形,凸,中间凸和倾斜形状。只有凹形的抑制抑制LOF是有效的,因为焊缝和侧壁之间的锋利角不能完全填充另外三种类型。焊接参数对焊接横截面形状凹形程度的影响是从与熔池中的驱动力相关的无量纲分析获得。发现焊接参数,即电弧电流,焊接速度和凹槽宽度对凹值有显着影响,而激光功率和激光弧距离没有直接效果。提出了一种半定量标准来预测LOF的发生。当电磁力与液体粘度力的比例大于3.21×10(5)时,抑制了LOF,并且表面张力梯度与液体粘度力的比率大于1.28×10(4)。根据熔池中的力和熔体流动讨论了NGHW中LOF的抑制机制。

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