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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Cr6+ reduction in welding fumes by nano composite coatings on stainless steel manual metal arc welding electrodes
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Cr6+ reduction in welding fumes by nano composite coatings on stainless steel manual metal arc welding electrodes

机译:纳米复合涂层在不锈钢手动金属弧焊电极上的焊接烟雾减少

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摘要

A new manual metal arc welding electrode was developed using a nano composite coating on the core wire prior to flux coating. As fume formation rate (FFR) and hexavalent chromium (Cr(VI)) concentration in the welding fumes are trade off with each other, a concurrent method was attempted to reduce both. Al2O3 and TiO2 were used via nano coating as the arc stabilizers to reduce the fume formation rate and a tertiary material, a reactive metal oxide (ZnO) was coated to reduce hexavalent chromium concentration in the welding fumes. The collective behavior of all three materials brought out an effective reduction in both the fume formation rate and the Cr(VI) concentration in welding fumes. An effective reduction of Cr(VI) concentration in the welding fumes accounting to 47% with reasonable reduction in fume formation rate as well as other harmful constituents was achieved among the tested tertiary nano coated electrodes. The optimum combination of process parameters which favored the maximum reduction in Cr(VI) concentration in the welding fumes at the source was arrived using the Taguchi methodology of experimental design. The stability of the statistical model was verified and found adequate. (C) 2018 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:在通量涂层之前,使用芯线上的纳米复合涂层开发了新的手动金属弧焊电极。随着焊接烟雾中的烟雾形成速率(FFR)和六价铬(Cr(vi))浓度彼此进行互换,试图减少两者的并发方法。通过纳米涂层使用Al 2 O 3和TiO 2作为弧形稳定剂以减少烟雾形成速率和三级材料,涂覆反应性金属氧化物(ZnO)以降低焊接烟雾中的六价铬浓度。所有三种材料的集体行为都在焊接烟雾中的烟雾形成率和Cr(vi)浓度的有效减少。在测试的叔纳米涂覆电极中,在测试的叔纳米涂覆电极中实现了施工烟雾中的Cr(VI)浓度的有效减少了烟雾形成率以及其他有害成分的47%。使用实验设计的Taguchi方法到达源的焊接烟雾中Cr(vi)浓度最大的过程参数的最佳组合是使用实验设计的塔本核法。核实统计模型的稳定性验证并发现了足够的。 (c)2018化学工程师机构。 elsevier b.v出版。保留所有权利。

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