首页> 外文会议>NACE International corrosion conference expo >ELECTROCHEMICAL BEHAVIOUR OF COPPER-NICKEL ALLOY CUNI 90/10 IN CHLORINATED SEAWATER UNDER STAGNATING CONDITIONS
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ELECTROCHEMICAL BEHAVIOUR OF COPPER-NICKEL ALLOY CUNI 90/10 IN CHLORINATED SEAWATER UNDER STAGNATING CONDITIONS

机译:滞后条件下氯化镍铜CUNI 90/10的电化学行为

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The copper-nickel alloy CuNi 90/10 has been extensively used on different marine engineering structures. Its main application is piping for seawater handling and heat exchangers. Regardless of the macro fouling resistance of the material, seawater is often chlorinated. As there is only limited information available about the effect of chlorination on the corrosion rate of copper-nickel, a systematic approach is required to understand the effect of free chlorine on its corrosion behavior. The aim of the first part of this project has been the characterization of the electrochemical behavior of CuNi 90/10 in chlorinated seawater under stagnating conditions at room temperature. The results were obtained in synthetic seawater containing up to 5 ppm free chlorine using fresh and pre-exposed samples. Testing involved free corrosion potential and polarization resistance measurements, cathodic and anodic polarization as well as gravimetric and metallographic examinations. The data obtained did not reveal a distinct relationship between corrosion behavior and the free chlorine concentration. Instead, the corrosion rate was found to decrease with increasing formation of oxide layers. This fact underlines a clear advantage of CuNi 90/10 versus high alloy materials in applications where the presence of chlorine is often combined with high seawater temperatures. The data obtained is being used as the basis for a second part of the project, which compares chlorination under erosive conditions with previously reported data. This will be used to validate current practical service recommendations.
机译:铜镍合金CuNi 90/10已广泛用于不同的海洋工程结构。它的主要应用是用于海水处理和热交换器的管道。无论材料的宏观防污性能如何,海水都经常被氯化。由于关于氯化对铜镍腐蚀速率影响的信息很少,因此需要一种系统的方法来了解游离氯对其腐蚀行为的影响。该项目的第一部分的目的是表征CuNi 90/10在室温下停滞条件下在氯化海水中的电化学行为。使用新鲜和预先暴露的样品,在含有高达5 ppm游离氯的合成海水中获得了结果。测试涉及自由腐蚀电位和极化电阻测量,阴极和阳极极化以及重量和金相检查。获得的数据没有揭示腐蚀行为与游离氯浓度之间的明显关系。相反,发现腐蚀速率随着氧化物层形成的增加而降低。这一事实表明,在氯含量高且海水温度高的应用中,CuNi 90/10与高合金材料相比具有明显的优势。获得的数据被用作该项目第二部分的基础,该项目将侵蚀性条件下的氯化反应与以前报告的数据进行比较。这将用于验证当前的实际服务建议。

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