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Measurement of particle emissions generated by Arc spray and Flame spray processes

机译:测量电弧喷涂和火焰喷涂工艺产生的颗粒物排放

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Thermal spray of Zn, Zn/Al, or Al is extensively used to make anticorrosion coatings on steel structures. Twin arc spray and wire flame spray are the two most practised processes to achieve such coatings. This paper presents measurements of particle emissions generated by these two processes. Sampling and analysis of aerosols generated by both processes have been carried out inside the exhaust ductwork using various instruments: an ELPI impactor, a CNC (Condensation Nucleus Counter), a TEOM microbalance and sampling filters allowing sampling for SEM observations. Electric arc spraying produced much more fumes of ultra fine particles than flame spraying. Aluminum spraying also produces large fume quantities compared to the Zn spraying under the same conditions. The aerosol comprised submicron particles and 95% of the numerical particle size distribution was less than 100 nm. The nanometric nature of the fume particles was confirmed by observations on the SEM. The strong dilution caused by compressed air has the effect of strongly limiting particle coagulation and, in turn, the size of the agglomerated particles. Electric arc spray has taken market share versus wire flame spray for Zn, ZnAl, or Al spraying, but this study shows that it generates much more particle emissions.
机译:Zn,Zn / Al或Al的热喷涂被广泛用于在钢结构上制作防腐涂层。双电弧喷涂和金属丝火焰喷涂是获得此类涂层的两种最常用的工艺。本文介绍了这两个过程产生的颗粒物排放的测量值。在这两个过程中产生的浮质的采样和分析已经在排气管内部使用了多种仪器进行:ELPI撞击器,CNC(冷凝核计数器),TEOM微量天平和允许对SEM进行采样的采样过滤器。与火焰喷涂相比,电弧喷涂产生的烟雾超细得多。与在相同条件下进行锌喷涂相比,铝喷涂还会产生大量的烟雾。气雾剂包含亚微米颗粒,并且95%的数值粒度分布小于100 nm。通过在SEM上的观察证实了烟雾颗粒的纳米性质。由压缩空气引起的强烈稀释具有强烈限制颗粒凝结的作用,进而限制了团聚颗粒的大小。与金属丝喷涂相比,电弧喷涂在Zn,ZnAl或Al喷涂方面占据了市场份额,但这项研究表明,它产生了更多的颗粒排放。

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