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A study of pulsed plasma oxidation effects on the corrosion resistance of brass

机译:脉冲等离子体氧化对黄铜耐蚀性影响的研究

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The plasma oxidation process and the corrosion resistance mechanism of oxidized (alpha+beta) brass (65Cu35Zn) in pulsed dc oxygen plasma and Mattson's solution are reported. The brass was exposed to pulsed DC oxygen plasma with various pulse frequencies. When the brass was exposed to the oxygen plasma, ZnO was identified dominantly in the passive layer and alpha-brass sublayer was formed because Zn in the (alpha+beta) brass diffused to the surface. These multi-passive layers contribute to the corrosion resistance behavior of (alpha+beta) brass with 92.5% corrosion protection efficiency for the untreated sample. But as input pulse frequency decreases, it becomes more effective in corrosion resistance and has relation with surface behavior in corrosion processing. (C) 2004 Elsevier B.V. All rights reserved.
机译:报道了脉冲直流氧等离子体和Matson溶液中的氧化(α+β)黄铜(65Cu35Zn)的等离子体氧化过程和耐腐蚀机理。黄铜暴露于各种脉冲频率的脉冲直流氧等离子体中。当黄铜暴露于氧等离子体中时,由于在(α+β)黄铜中的Zn扩散到表面,因此在钝化层中主要存在ZnO,并形成了α-黄铜子层。这些多钝化层有助于(α+β)黄铜的耐腐蚀性能,对未经处理的样品具有92.5%的腐蚀防护效率。但是,随着输入脉冲频率的降低,它在抗腐蚀方面变得更加有效,并且与腐蚀过程中的表面行为有关。 (C)2004 Elsevier B.V.保留所有权利。

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