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A Study of Recycling Process of Cobalt-based Conversion Coating Formed on Aluminium Alloys

机译:铝合金基于钴基转化涂层的再循环过程研究

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摘要

In this study, the influence of different cyclic treatment and reuse process on the performance of the conversion film was systematically studied by electrochemical test, surface characterization and determination of cobalt ions in the conversion solution, and new technology of chemical conversion of cobalt salts in aluminum alloys were determined. Mode A indicated the practice of cyclical processing of the test object in the original conversion solution, in which components of the circulation liquid were consumed continuously. After the first cycle, the Ecorr and Rp were – 691.8 V and 63.5 kΩ. In the later time, Rp was just about 13.0 kΩ, and the corrosion resistance of conversion film degraded progressively. Mode B represented the practice of adding to the original solution before cyclical processing of the test object, so that volume of the solution remains unchanged, and components of the circulation liquid kept increasing. RP increased from 9.3 kΩ to the 69.9 kΩ at the beginning of the cycle, followed by a slow descent, and content of cobalt in the film was stable, also higher than that under model A. This demonstrates that mode A has high utilization of the cobalt in the conversion solution in the early recycling, whereas mode B can prolong the cyclic service life of the conversion solution in circulation. After adding oxidants, as NaClO3, NaBrO3, H2O2, NaClO, and KMnO4, to the circulation liquid before recycling, the reuse and recycle ratio of cobalt reaches up to 41.3 %, and Rp can be promoted to123.2 kΩ at most. The life of the recycling was prolonged, while the costs of chemical conversion of cobalt were reduced.
机译:在这项研究中,对转换膜的性能不同的循环处理和再利用过程的影响通过电化学测试,表面表征和在转化溶液的钴离子的测定,并在铝钴盐的化学转化的新技术进行了系统研究合金进行了测定。模式A所示在原始转化处理液,其中,所述循环液体的组分连续消耗的测试对象的循环处理的做法。第一次循环后,将腐蚀电位和Rp分别为 - 691.8 V和63.5千欧。在稍后的时间,卢比只是约13.0千欧,和转化膜的耐腐蚀性逐渐劣化。模式B表示添加到所述测试对象的循环处理之前的原始溶液的实践中,因此该解决方案的该体积保持不变,所述循环液体的部件不断增加。 RP从9.3千欧姆增加到69.9千欧,在循环的开始,随后为缓慢下降,而在薄膜中钴含量的稳定,比也较高下模型A.这表明模式A具有的高利用率钴在早期回收转化溶液,而模式B可以延长在循环中的转化溶液的循环使用寿命。回收之前加入氧化剂,如氯酸钠,NaBrO3,H2O2,次氯酸钠,高锰酸钾和,到循环液体后,钴的再利用和再循环比率达到高达41.3%,和Rp可以to123.2kΩ的至多来促进。回收的寿命延长,而钴的化学转化的成本降低。

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