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A novel approach to improving resistance to dezincification of diphasic brass

机译:改善两相黄铜抗脱锌性能的新方法

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摘要

Dezincification-resistant brasses have been developed and refined for nearly 100 years, and lead (Pb) doped brass fittings have played a large role in the transport of potable water. However, due to Pb toxicity, restrictions have been placed on the amount of Pb that can be added to brass, and in general there is no safe level of Pb. In this study, 0.02 wt.% addition of Niobium (Nb) to diphasic brass (also know as duplex brass) was found to significantly improve resistance to dezincification when compared with a 0.20 wt.% doping level of Pb. Nb prevents dezincification in two ways: by alloying with beta-phase to suppress the preferential dissolution of Zn and by forming a passivation layer incorporated with Nb that serves as a barrier against chloride ions in CuCl2 solution. As a result, it is expected that a Nb-doped diphasic brass will not negatively impact industrial application of duplex brass. (C) 2016 Elsevier B.V. All rights reserved.
机译:耐脱锌黄铜已经开发和提炼了近100年,掺铅(Pb)的黄铜配件在饮用水的运输中起着重要作用。但是,由于Pb的毒性,限制了可添加到黄铜中的Pb的含量,并且通常没有安全水平的Pb。在这项研究中,与0.20 wt。%的Pb掺杂水平相比,发现在双相黄铜(也称为双相黄铜)中添加0.02 wt。%的铌(Nb)可以显着提高抗脱锌性。 Nb可以通过两种方式防止脱锌:通过与β相合金化以抑制Zn的优先溶解,以及形成掺有Nb的钝化层,该钝化层用作对CuCl2溶液中氯离子的阻挡层。结果,预期掺Nb的双相黄铜不会对双相黄铜的工业应用产生负面影响。 (C)2016 Elsevier B.V.保留所有权利。

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