焊接:微粒和气体排放

C. Homer, E. Seymour, Peace Jon
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引用次数: 0

摘要

铝制部件和结构的制造和修复通常涉及使用电弧焊。电弧和被焊金属的相互作用产生紫外线辐射、金属氧化物、烟雾和气体。铝很少作为纯金属使用,但经常与其他金属合金化以提高强度和其他物理性能。因此,任何排放物的确切成分将取决于焊接过程和被焊接的特定铝合金。为了量化这种排放,美国铝业协会赞助了几项研究,以表征各种基材和填充合金组合的气体金属电弧焊(GMAW)和气体钨电弧焊(GTAW)工艺的弧焊排放。在所有情况下,测试都是在没有强制通风的生产焊接车间的条件下进行的。焊工可能接触到的每种分析物的浓度受焊接工艺、基体和填充合金的组成、焊工的位置和焊接头盔的影响很大。所获得的结果可用于雇主识别和控制与铝合金焊接相关的潜在危险,并可为参与这些合金焊接的员工提供危险沟通的依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Welding: Particulate and Gaseous Emissions
Fabrication and repair of aluminum components and structures commonly involves the use of electric arc welding. The interaction of the arc and the metal being welded generates ultraviolet radiation, metallic oxides, fumes, and gases. Aluminum is seldom used as the pure metal but is often alloyed with other metals to improve strength and other physical properties. Therefore, the exact composition of any emissions will depend on the welding process and the particular aluminum alloy being welded. To quantify such emissions, The Aluminum Association sponsored several studies to characterize arc welding emissions by the gas metal arc welding (GMAW) and gas tungsten arc welding (GTAW) processes for various combinations of base and filler alloys. In all cases, the tests were conducted under conditions that could be found in a production weld shop without forced ventilation. The concentrations of each analyte that a welder could be exposed to were greatly affected by the welding process, the composition of the base and filler alloys, the position of the welder, and the welding helmet. The results obtained can be used by employers to identify and control potential hazards associated with the welding of aluminum alloys and can provide the basis for hazard communication to employees involved in the welding of these alloys.
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