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Influence of Metal Transfer Stability and Shielding Gas Composition on CO and CO2 Emissions during Short-circuiting MIG/MAG Welding

机译:MIG / MAG短路焊接过程中金属转移稳定性和保护气体成分对CO和CO2排放的影响

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Several studies have demonstrated the influence of parameters and shielding gas on metal transfer stability or on the generation of fumes in MIG/MAG welding, but little or nothing has been discussed regarding the emission of toxic and asphyxiating gases, particularly as it pertains to parameterization of the process. The purpose of this study was to analyze and evaluate the effect of manufacturing aspects of welding processes (short-circuit metal transfer stability and shielding gas composition) on the gas emission levels during MIG/MAG welding (occupational health and environmental aspects). Using mixtures of Argon with CO2 and O2 and maintaining the same average current and the same weld bead volume, short-circuit welding was performed with carbon steel welding wire in open (welder’s breathing zone) and confined environments. The welding voltage was adjusted to gradually vary the transfer stability. It was found that the richer the composition of the shielding gas is in CO2, the more CO and CO2 are generated by the arc. However, unlike fume emission, voltage and transfer stability had no effect on the generation of these gases. It was also found that despite the large quantity of CO and CO2 emitted by the arc, especially when using pure CO2 shielding gas, there was no high level residual concentration of CO and CO2 in or near the worker’s breathing zone, even in confined work cells.
机译:多项研究表明,参数和保护气体对MIG / MAG焊接中的金属转移稳定性或烟雾的产生有影响,但关于有毒和窒息气体的排放,尤其是与气体的参数化有关的讨论很少或没有讨论。过程。这项研究的目的是分析和评估焊接工艺的制造方面(短路金属转移稳定性和保护气体成分)对MIG / MAG焊接期间气体排放水平的影响(职业健康和环境方面)。使用氩气与CO2和O2的混合物并保持相同的平均电流和相同的焊缝体积,在开放(焊工呼吸区域)和密闭环境中使用碳钢焊丝进行短路焊接。调节焊接电压以逐渐改变转移稳定性。已经发现,在CO 2中保护气体的成分越丰富,电弧产生的CO和CO 2越多。但是,与烟气排放不同,电压和传输稳定性对这些气体的产生没有影响。还发现,尽管电弧释放出大量的CO和CO2,尤其是在使用纯净的CO2保护气体时,即使在密闭的工作单元中,工人的呼吸区域内或附近也没有高水平的CO和CO2残留浓度。 。

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