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Timescale Correlation between Marine Atmospheric Exposure and Accelerated Corrosion Testing - Part 2

机译:海洋大气暴露与加速腐蚀测试之间的时标相关性-第2部分

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Evaluation of metals to predict service life of metal-based structures in corrosive environments has long relied on atmospheric exposure test sites. Traditional accelerated corrosion testing relies on mimicking the exposure conditions, often incorporating salt spray and ultraviolet (UV) radiation, and exposing the metal to continuous or cyclic conditions similar to those of the corrosive environment. Their reliability to correlate to atmospheric exposure test results is often a concern when determining the timescale to which the accelerated tests can be related. Accelerated corrosion testing has yet to be universally accepted as a useful tool in predicting the long-term service life of a metal, despite its ability to rapidly induce corrosion. Although visual and mass loss methods of evaluating corrosion are the standard, and their use is crucial, a method that correlates timescales from accelerated testing to atmospheric exposure would be very valuable. This paper presents work that began with the characterization of the atmospheric environment at the Kennedy Space Center (KSC) Beachside Corrosion Test Site. The chemical changes that occur on low carbon steel, during atmospheric and accelerated corrosion conditions, were investigated using surface chemistry analytical methods. The corrosion rates and behaviors of panels subjected to long-term and accelerated corrosion conditions, involving neutral salt fog and alternating seawater spray, were compared to identify possible timescale correlations between accelerated and long-term corrosion performance. The results, as well as preliminary findings on the correlation investigation, are presented.
机译:长期以来,对金属进行评估以预测金属基结构在腐蚀性环境中的使用寿命一直依赖于大气暴露测试场所。传统的加速腐蚀测试依赖于模拟暴露条件,通常结合盐雾和紫外线(UV)辐射,并使金属暴露于类似于腐蚀性环境的连续或循环条件。在确定加速测试可以关联的时间范围时,通常需要考虑它们与大气暴露测试结果相关的可靠性。尽管加速腐蚀测试具有迅速诱发腐蚀的能力,但它仍被普遍认为是预测金属的长期使用寿命的有用工具。尽管评估腐蚀的视觉和质量损失方法是标准方法,并且它们的使用至关重要,但是将加速测试到暴露于大气的时间范围相关联的方法将非常有价值。本文介绍了从肯尼迪航天中心(KSC)海滨腐蚀试验场的大气环境表征开始的工作。使用表面化学分析方法研究了低碳钢在大气和加速腐蚀条件下发生的化学变化。比较了经受长期和加速腐蚀条件(包括中性盐雾和交替的海水喷雾)的面板的腐蚀速率和行为,以确定加速和长期腐蚀性能之间可能存在的时间尺度相关性。结果,以及相关调查的初步结果,介绍了。

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