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A NON CHROMATE CONVERSION COATING PROCESS FOR CORROSION PROTECTION OF AL2024 ALUMINIUM ALLOYS IN A MARINE ENVIRONMENT

机译:一种非铬酸盐转化涂布方法,用于侵蚀海洋环境中Al2024铝合金的腐蚀保护

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To provide corrosion protection of Aluminium 2024 and other alloys in a marine environment, usually a chromate based conversion coating process is applied. However, chromates are environmentally unfriendly and efforts are underway to replace them. To develop a coating that works in similar manner, an ion with many of the same properties as chromate was required. The titanate ion was chosen for its many similarities. Electrochemical testing indicated that the titanate ion would retard corrosion in the same manner as the chromate ion. Based on successful electrochemical testing a complete conversion coating process was developed. Variables investigated included conversion solution pH and composition, process time, pre-treatment and temperature. Initially 2.5 by 10 cm samples were coated then tested in a salt spray marine environment. Several reached the 1000 hour goal with no corrosion evident. Recently, the process was scaled up to coat 7.5 by 25 cm samples. Again surface pre-treatment, process time and pH were investigated. After 336 hours of exposure, corrosion was absent on the exposed surfaces. The optimum treatment results in a "drop in" replacement for the chromate conversion coating, with only minor, advantageous variation. For example, no cyanide based chemicals are employed and the pH is more neutral at 5 rather then lower used by the chromate, both of these are environmentally friendly in addition to the removal of chromate.
机译:为了在海洋环境中提供铝2024和其他合金的腐蚀保护,通常施加基于铬酸盐的转化涂层方法。然而,铬酸盐是环境不友好的,并且正在进行努力取代它们。为了开发以类似方式工作的涂层,需要具有与铬酸盐相同的具有许多相同性质的离子。选择钛酸钛离子以其许多相似之处。电化学测试表明,钛酸钛离子将以与铬酸根离子相同的方式延迟腐蚀。基于成功的电化学测试,开发了完整的转化涂层工艺。调查的变量包括转化溶液pH和组成,处理时间,预处理和温度。最初2.5×10cm样品被涂覆,然后在盐雾海洋环境中进行测试。几个达到了1000小时的目标,没有腐蚀明显。最近,将该过程缩放到涂层7.5×25cm样品。再次研究表面预处理,处理时间和pH。暴露336小时后,露出表面不存在腐蚀。最佳处理导致铬酸盐转化涂层的替代物的“下降”,仅具有较小的,有利的变化。例如,没有使用基于氰化物的化学品,并且在5的5然后通过铬酸盐使用的低温下,pH更高,除了除去铬酸盐之外,这两种也是环保的。

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