Effect of ammoniacal sea water on material properties of copper–nickel alloy

D. Agarwal
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引用次数: 13

Abstract

Abstract A low nickel copper alloy commonly used in the plumbing/drainage pipelines on ships was investigated under slow strain rate conditions in air, and in solution containing 3·5%NaCl + 10%MgCl2, with and without 1% ammonia. The tests were conducted at ambient temperature (28 ± 1°C) at strain rates corresponding to a crosshead speed of 5·76 × 10-5cm min-1, without a passivation current. The results obtained did not show any significant deterioration in the mechanical properties of the alloy in the tests conducted in air or in solution without ammonia. However, with the introduction of 1% ammonia, a reduction in the material strength and a change in the mode of failure were observed. This paper discusses the results obtained in the present investigation and in particular the load bearing capacity of the material and the modes of failure in Cu–Ni alloys exposed to sea water.
氨化海水对铜镍合金材料性能的影响
摘要:研究了船舶给排水管道中常用的低镍铜合金在空气、3.5% nacl + 10%MgCl2、含和不含1%氨的慢应变条件下的性能。试验在环境温度(28±1℃)下进行,应变速率对应的十字速度为5·76 × 10-5cm min-1,无钝化电流。在空气或无氨溶液中进行的试验中,所获得的结果未显示合金的机械性能有任何明显的恶化。然而,随着1%氨的引入,材料强度降低,失效模式发生变化。本文讨论了本研究的结果,特别是铜镍合金在海水中的承载能力和破坏模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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