Yan Xudong, Liu Wenjing, Xu Yang, Xiong Sang
School of Materials Science and Engineering, Beihang University No. 37 Xueyuan Road Beijing 100191 China
Hunan Defense Industry Polytechnic Xiangtan Hunan 411207 China.
RSC Adv. 2024 Oct 8;14(43):31825-31836. doi: 10.1039/d4ra04757e. eCollection 2024 Oct 1.
Copper sheets corrode easily when exposed to oil-in-water (O/W) emulsions during metal-forming processes. The quest for identifying novel, high-efficiency copper inhibitors and realizing the effective protection of copper surfaces from emulsion corrosion has gradually attracted considerable attention. In this study, two organic heterocyclic derivatives, ,-bis(2-ethylhexyl)-4-methyl-1-benzotriazol-1-methanamine (NBTAH) and 2,5-bis(octyldithio)-1,3,4-thiadiazole (BTDA), were introduced as copper inhibitors into O/W emulsions. Their corrosion inhibition performance was investigated in-depth using electrochemical measurements, surface characterization, adsorption isotherms and wetting techniques. The results indicated that both inhibitors generated anodic passive films on the copper surface, and thus enhanced the corrosion resistance. The maximum corrosion inhibition efficiency achieved was 94.0% with combination of 5 mM NBTAH and 8 mM BTDA. From the surface analysis, it was confirmed that the composite inhibitors could successfully adsorb onto the copper surface the polar atoms of the benzene, azole, and thiazole rings. The adsorption formed multilayer inhibitor films comprised of Cu-NBTAH and Cu-BTDA chelates. In addition, these films significantly reduced the wettability of the O/W emulsions on the copper surface, thus isolating copper from the corrosive medium. The anti-corrosion mechanism for adsorption and shielding of the composite inhibitors on the copper surface is preliminarily proposed.
在金属成型过程中,铜片暴露于水包油(O/W)乳液时容易腐蚀。寻找新型高效的铜缓蚀剂并实现对铜表面的有效保护以防止乳液腐蚀,已逐渐引起了广泛关注。在本研究中,两种有机杂环衍生物,即1,1-双(2-乙基己基)-4-甲基-1H-苯并三唑-1-甲胺(NBTAH)和2,5-双(辛基二硫代)-1,3,4-噻二唑(BTDA),被作为铜缓蚀剂引入到O/W乳液中。采用电化学测量、表面表征、吸附等温线和润湿技术对它们的缓蚀性能进行了深入研究。结果表明,两种缓蚀剂均在铜表面生成了阳极钝化膜,从而提高了耐蚀性。5 mM NBTAH和8 mM BTDA复配时,最大缓蚀效率达到94.0%。通过表面分析证实,复合缓蚀剂能够通过苯环、唑环和噻唑环的极性原子成功吸附在铜表面。吸附形成了由Cu-NBTAH和Cu-BTDA螯合物组成的多层缓蚀剂膜。此外,这些膜显著降低了O/W乳液在铜表面的润湿性,从而使铜与腐蚀介质隔离。初步提出了复合缓蚀剂在铜表面的吸附和屏蔽防腐机理。