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The Effect of Corrosion Inhibitors on Corrosion Fatigue under Complex Environmental Conditions

机译:复杂环境条件下缓蚀剂对腐蚀疲劳的影响

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Research shows that chromate can offer a large, 10 fold, reduction in corrosion fatigue crack growth rates when added to a bulk sodium chloride (NaCl) solution in high concentrations, and can inhibit corrosion fatigue when added to a bulk NaCl solution in concentrations relevant to inhibitor leaching studies. However it remains unclear if chromate epoxy based primer can inhibit corrosion fatigue under atmospheric corrosion conditions. The protection provided by corrosion inhibitors under fatigue conditions can be affected by loading conditions (AK, frequency) but it is also likely affected by the environmental effects on inhibitor leaching (pH, chloride concentration, temperature, coating degradation). An improved understanding of how environment and loading parameters influence a coating's ability to offer protection against corrosion fatigue damage would greatly help the coating community to design more robust coatings and better evaluate new coating protection systems. This work includes research on the effect environment and corrosion protection systems (chromate coatings) on legacy aluminum alloy UNS A97075 with respect to environmentally assisted fatigue damage.
机译:研究表明,当将铬酸盐以高浓度添加到块状氯化钠(NaCl)溶液中时,可以大大降低腐蚀疲劳裂纹扩展速率的10倍,而当以与浓度相关的浓度添加到块状NaCl溶液中时,则可以抑制腐蚀疲劳。抑制剂浸出研究。然而,目前尚不清楚铬酸环氧基环氧底漆能否抑制大气腐蚀条件下的腐蚀疲劳。缓蚀剂在疲劳条件下提供的保护作用可能会受到载荷条件(AK,频率)的影响,但也可能受到缓蚀剂浸出的环境影响(pH,氯化物浓度,温度,涂层降解)的影响。更好地了解环境和载荷参数如何影响涂层提供抗腐蚀疲劳损伤保护的能力,将极大地帮助涂层社区设计更坚固的涂层并更好地评估新的涂层保护系统。这项工作包括对传统铝合金UNS A97075的环境影响和疲劳防护方面的影响环境和腐蚀防护系统(铬酸盐涂层)的研究。

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