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Study of the law between the weld pool shape variations with the welding parameters under two TIG processes

机译:两种TIG工艺下熔池形状变化与焊接参数之间的规律研究

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摘要

A double-shielded TIG method was proposed to improve weld penetration and has been compared with the traditional TIG welding method under different welding parameters (i.e., speed, arc length and current). The strength of the Marangoni convection was calculated to estimate the influence of the welding parameters on the variations in weld pool shapes. The results show that the changes in the welding parameters directly impact the oxygen concentration in the weld pool and the temperature distribution on the pool surface. The oxygen content and heat distribution on the weld pool surface are determinants of the pattern and strength of the Marangoni convection. For a negative temperature coefficient of surface tension ((partial deriv)σ/(partial deriv)T< 0), an outward Marangoni convection leads to a wide and shallow weld pool shape. The narrow and deep weld pool shape occurs when the Marangoni convection flows along an inward direction ((partial deriv)σ/(partial deriv)T > 0). The oxide layer that may appear with the relatively high oxygen content in the weld pool is harmful for the heat flow along the pool surface so as to reduce the welding efficiency especially in the double shielded TIG process.
机译:提出了一种双屏蔽TIG方法以提高焊缝熔深,并已在不同的焊接参数(即速度,电弧长度和电流)下与传统的TIG焊接方法进行了比较。计算了Marangoni对流的强度,以估算焊接参数对焊池形状变化的影响。结果表明,焊接参数的变化直接影响焊池中的氧气浓度和池表面的温度分布。焊池表面的氧气含量和热分布是Marangoni对流模式和强度的决定因素。对于表面张力的负温度系数((偏导数)σ/(偏导数)T <0),向外的Marangoni对流会导致焊池形状宽而浅。当Marangoni对流沿向内方向流动时((偏导数)σ/(偏导数)T> 0),会出现狭窄而深的焊缝形状。可能在焊接熔池中出现的氧气含量较高的氧化层对沿熔池表面的热流有害,从而降低了焊接效率,尤其是在双屏蔽TIG工艺中。

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