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首页> 外文期刊>Corrosion science >Raman Mapping Of Corrosion Products Formed Onto Spring Steels During Salt Spray Experiments. A Correlation Between The Scale Composition And The Corrosion Resistance
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Raman Mapping Of Corrosion Products Formed Onto Spring Steels During Salt Spray Experiments. A Correlation Between The Scale Composition And The Corrosion Resistance

机译:盐雾实验期间在弹簧钢上形成的腐蚀产物的拉曼映射。氧化皮成分与耐蚀性的关系

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摘要

There is a growing trend in the automotive industry to reduce vehicles weight so as to increase fuel efficiency and therefore reduce CO_2 emissions. For many automotive components such as springs, weight reduction is sought through an increase in the mechanical properties (allowing smaller components size). For ultra high strength springs, a good corrosion resistance becomes essential to avoid surface damage that will be detrimental to the corrosion-fatigue resistance. Corrosion-fatigue failures indeed often initiate on surface defects caused by corrosion in service (corrosion pits). Therefore, while of moderate importance in conventional spring steels, the corrosion resistance of ultra high strength spring steels is of primary importance. Fine changes in steel chemical composition can have an important effect on corrosion resistance. To understand the individual action of each element on the corrosion resistance of spring steels, corrosion products formed on samples exposed to NaCl environments were characterized using Raman spectros-copy, in a purposely designed experimental tool that allows mapping of corrosion products on the steel surface (by nature and mass fraction). Different steel grades were thus characterized after accelerated corrosion tests, and a clear correlation was established between weight loss and the nature of the corrosion products.
机译:在汽车工业中,减少车辆重量以增加燃料效率并因此减少CO 2排放的趋势正在增长。对于许多汽车部件,例如弹簧,通过增加机械性能(允许更小的部件尺寸)来寻求减轻重量。对于超高强度弹簧,必须具有良好的耐腐蚀性能,以避免表面损坏,而这将不利于耐腐蚀疲劳性。实际上,腐蚀疲劳失效通常是由使用中的腐蚀(腐蚀坑)引起的表面缺陷引起的。因此,尽管在常规弹簧钢中具有中等重要性,但超高强度弹簧钢的耐腐蚀性才是最重要的。钢材化学成分的细微变化会对耐蚀性产生重要影响。为了了解每种元素对弹簧钢耐腐蚀性的单独作用,在经过专门设计的实验工具中使用拉曼光谱仪对暴露在NaCl环境中的样品上形成的腐蚀产物进行了表征,该工具可以绘制腐蚀产物在钢表面上的分布(本质和质量分数)。因此,在加速腐蚀试验后表征了不同等级的钢,并在失重与腐蚀产物的性质之间建立了明确的关联。

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