Stress corrosion in copper–nickel alloys: influence of ammonia

D. Agarwal
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引用次数: 10

Abstract

Abstract The test results from an earlier investigation by the author on the mechanical behaviour of a low nickel nickel-copper alloy exposed to a solution of 3·5%NaCl + 10%MgCl2 with and without ammonia indicated that the presence of 1% ammonia alters the failure mode and affects the load bearing capacity of the material. In the present investigation, further tests have been conducted on the same alloy to study its mechanical/corrosion behaviour on exposure to an aqueous solution of ammonia in comparison with exposure to a similar solution of ammonia containing 3·5%NaCl + 10%MgCl2. A constant displacement rate of 9·6 × 10-3 μ m s-1 was used and the concentration of ammonia was maintained at 5%. On exposure to the 5% aqueous ammonia solution, the mechanical properties of the alloy were degraded significantly and the material exhibited a brittle stress corrosion type of failure. However, on exposure to 5% ammonia in the presence of 3·5%NaCl + 10%MgCl2, there was less change in failure mode relative to that in air and a significant improvement in the mechanical properties of the material compared with those in aqueous ammonia. This indicates that the presence of MgCl2 and/or NaCl can be beneficial when low nickel copper alloys are exposed to ammonia. This paper presents the experimental results and observations from the recent tests, and discusses the relative roles of ammonia and NaCl/MgCl2 in determining the mechanical properties and modes of failure in a low nickel content copper-nickel alloy.
铜镍合金的应力腐蚀:氨的影响
摘要对低镍镍铜合金在3.5% nacl + 10%MgCl2溶液中(含和不含氨)的力学行为进行了研究,结果表明,1%氨的存在改变了材料的破坏模式,影响了材料的承载能力。在本研究中,对同一合金进行了进一步的试验,以研究其暴露于氨水溶液中的力学/腐蚀行为,并将其暴露于含有3.5% nacl + 10%MgCl2的类似氨溶液中进行了比较。顶替率为9·6 × 10-3 μ m s-1,氨水浓度为5%。在5%氨水溶液中,合金的力学性能明显下降,材料表现为脆性应力腐蚀失效。然而,在3.5% nacl + 10%MgCl2的条件下,暴露于5%的氨水中,材料的破坏模式比在空气中变化较小,力学性能比在氨水中有显著改善。这表明,当低镍铜合金暴露于氨中时,MgCl2和/或NaCl的存在是有益的。本文介绍了最近试验的结果和观察结果,并讨论了氨和NaCl/MgCl2在确定低镍铜镍合金力学性能和失效模式中的相对作用。
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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