Performance of a Ship-Based Cupronickel Alloy in Exposure Conditions of Arabian Seawater—A Comparative Study

Materials Pub Date : 2024-08-08 DOI:10.3390/ma17163940
Syed Ali Sarfraz, M. Abbas, Nasir Mahmood Ahmad
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Abstract

Cupronickel-based alloys are widely known for their excellent resistance against aqueous corrosion, however, they can be susceptible to corrosion at accelerated rates and premature failure when exposed to a polluted or brackish seawater medium, even for short-term exposure durations. This unfamiliar corrosion behavior may be a result of the formation of an unprotected corrosion film during the early exposure durations. The paper investigates the corrosion phenomenon in cupronickel 90/10 alloy, by exposing the coupons in two different seawater compositions in the Arabian Sea region. Corrosion losses were investigated on the experimental coupons in a submerged position, for a maximum exposure duration of 150 days, using the conventional weight loss method and a new dimensional metrology-based measurement technique. Additionally, in this research the tubes of a marine heat exchanger having similar material that failed prematurely during operation in the Arabian Sea were also investigated for corrosion losses, followed by the characterization of the corrosion deposits using following analytical techniques: SEM, EDS, XRD and Raman Scattering. The experimental results showed significantly higher corrosion losses on coupons exposed to seawater site rich in pollutants and nutrients including dissolved inorganic nitrogenous compounds, compared to those subjected to a natural seawater solution in corrosion tanks maintained in a controlled environment.
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船用铜镍合金在阿拉伯海水暴露条件下的性能--比较研究
众所周知,铜镍合金具有出色的抗水性腐蚀能力,然而,当它们暴露在受污染的海水或咸水介质中时,即使暴露时间很短,也很容易加速腐蚀并过早失效。这种陌生的腐蚀行为可能是由于在暴露初期形成了一层未受保护的腐蚀膜。本文通过将试样暴露在阿拉伯海地区两种不同成分的海水中,研究了 90/10 铜镍合金的腐蚀现象。采用传统的失重法和一种新的基于尺寸计量的测量技术,对浸没状态下的实验样品进行了最长 150 天的腐蚀损失调查。此外,在这项研究中,还对在阿拉伯海运行期间过早失效的具有类似材料的船用热交换器管进行了腐蚀损失调查,随后使用以下分析技术对腐蚀沉积物进行了表征:SEM、EDS、XRD 和拉曼散射。实验结果表明,暴露在富含污染物和营养物质(包括溶解的无机含氮化合物)的海水中的换热器,其腐蚀损失明显高于暴露在受控环境下的腐蚀槽中的天然海水溶液中的换热器。
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