首页> 外文会议>Annual Conference of the Australasian Corrosion Association >RELEASE OF CERIUM ORGANO CORROSION INHIBITORS FROM PRIMERS - ROLE OF PRIMER FREE VOLUME
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RELEASE OF CERIUM ORGANO CORROSION INHIBITORS FROM PRIMERS - ROLE OF PRIMER FREE VOLUME

机译:从引物中释放铈有机腐蚀抑制剂 - 引物自由体积的作用

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It has been recently shown that rare earth metal organo compounds, in this case cerium-organo compounds, when incorporated into epoxy primer coating can offer significant corrosion protection for AA2024 T3 alloy [1]. Two cerium compounds at fixed loading were evaluated in order to investigate the synergy between cerium and the organic-anion complexes. The compounds are dissolved in an epoxy-amine primer in liquid form and on curing the primer mixture, the cerium compound reprecipitated in nanoparticulate form dispersed throughout the coating. Primers containing 20 wt% of either cerium dibutylphosphate (Ce(dbp)3) or cerium salicylate were able to reduce the extent of corrosion both in mild (0.001M NaCl) and aggressive (filiform corrosion test, saturated aqueous NaCl) corrosion environments on AA2024 T3 by leaching out from the coating into surrounding moisture without being depleted over a 30 hour period. Analysis using position annihilation lifetime spectroscopy (PALS) showed that Ce(dbp)3 did not simply function as an inert filler in the primer system but altered the properties of the primer. This interaction was reflected in the free volume, water uptake properties, and the adhesion characteristics of the primer. These results indicate that design of the inhibitor coating system relies on an understanding of the delivery mechanism and release kinetics. Such an understanding will enable the replacement of hexavalent chromium (Cr~(6+)) compound inhibitors with environmentally benign alternatives.
机译:最近已经表明,当掺入环氧引物涂层中时,在这种情况下,稀土金属有机化合物在这种情况下,可以为AA2024 T3合金提供显着的腐蚀保护[1]。评价固定载荷的两个铈化合物以研究铈和有机阴离子配合物之间的协同作用。将化合物以液体形式溶解在环氧胺底漆中,并在固化底漆混合物中,铈化合物以纳米颗粒形式进行再沉淀,分散在整个涂层中。含有20wt%的二磺酰磷酸盐(Ce(DBP)3)或水杨酸铈的引物能够在AA2024上减少温和(0.001M NaCl)和腐蚀性(圆形腐蚀试验,饱和NaCl)腐蚀环境中的腐蚀程度T3通过从涂层浸出到周围的水分中而不会在30小时内耗尽。使用位置湮灭寿命光谱(PAL)的分析表明CE(DBP)3不仅用作底漆系统中的惰性填料,而是改变了引物的性质。该相互作用反映在自由体积,水吸收性能和引物的粘附特性中。这些结果表明抑制剂涂层系统的设计依赖于理解递送机制和释放动力学。这种理解将使六价铬(Cr〜(6+))复合抑制剂替换为环境良性替代品。

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