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The influence of operating parameters on number-weighted aerosol size distribution generated from a gas metal arc welding process

机译:操作参数对由气体金属电弧焊工艺产生的数量加权气溶胶尺寸分布的影响

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In hight of recent research on the potential health problems associated with sub-micrometer aerosols, a study was conducted to determine the effect that droplet mass transfer mode, shield gas composition, and welding spatter had upon the aerosols generated from a Gas Metal Arc Welding (GMAW) Operation. The results revealed that the sub-micrometer aerosols produced during spray transfer resulted in markedly higher concentrations of nucleated particles than those produced during globular transfer.This probably resulted from a larger droplet surface area for vaporization of metallic species. The shield gas experiments results revealed that as the percentage of carbon dioxide increased the number of nucleated particles also increased. It appears that oxygen may have facilitated chemical reactions with the alloy constituents, thereby increasing the mass transfer rate from the evaporating metal droplets in the plasma. Finally, an attempt to characterize the spatter aerosol revealed a distinct particle size distribution with a mode particle diameter of 6.8 #mu#m.This particle size distribution appeared to be independent of shield gas composition, and the particle number concentration was significantly smaller than the sub-micrometer aerosols formed during the GMAW process (i.e., two-orders of magnitude smaller when weighted by particle mass).
机译:在近期有关与亚微米气溶胶有关的潜在健康问题的研究中,进行了一项研究以确定液滴传质模式,保护气体成分和焊渣对气体金属电弧焊产生的气溶胶的影响( GMAW)操作。结果表明,喷雾转移过程中产生的亚微米气溶胶比球形转移过程中产生的核颗粒浓度要高得多,这可能是由于较大的液滴表面积导致了金属物质的汽化。保护气体实验结果表明,随着二氧化碳百分比的增加,成核颗粒的数量也增加了。看来氧可能促进了与合金成分的化学反应,从而提高了等离子体中蒸发的金属液滴的传质速率。最后,试图对飞溅气溶胶进行表征的尝试揭示了一个独特的粒径分布,众数粒径为6.8#μm.m,该粒径分布似乎与保护气体的成分无关,并且颗粒数浓度明显小于在GMAW过程中形成的亚微米气溶胶(即,按颗粒质量加权时,小两个数量级)。

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