首页|基于水性硅烷聚合物与Ti/Zr复合化学转化技术在多种金属表面的工艺研究

基于水性硅烷聚合物与Ti/Zr复合化学转化技术在多种金属表面的工艺研究

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以6061铝合金、7075铝合金和镀锌钢为研究对象,通过优化一种水性环氧基硅烷聚合物与氟钛酸/氟锆酸复合化学转化工艺,同步提高了3种金属的耐腐蚀性能.采用电化学性能测试和硫酸铜点滴试验对膜层的耐腐蚀性能进行探讨,并结合扫描电镜(SEM)和能谱(EDX)对转化膜微观形貌及元素组成进行表征分析,最后探讨了钛锆硅烷复合转化膜的成膜机理.结果表明:当选择最优的工艺配方,即WB100水性硅烷2.7%、H2 TiF62.2 mL/L、H2 ZrF61.0 mL/L、转化时间90 s、pH=3.7、温度40℃时,多种金属材料的复合转化膜表面均匀致密,具有较优的耐腐蚀性能.成膜机理分析表明,起始钛锆硅烷复合转化膜经3个阶段演变后,最终形成了由金属氧化物和有机单分子膜组成的双层膜结构.
Process Study Based on Aqueous Silane Polymers and Ti/Zr Composite Chemical Transformation Technology on Various Metal Surfaces
In this study, 6061 aluminum alloy, 7075 aluminum alloy and galvanized steel were investigated as research subjects. Through the optimization of an waterborne epoxy based silane polymer combined with fluorotitanic acid and fluorozirconic acid composite chemical conversion process, the corrosion resistance of the three metals was concurrently enhanced. The corrosion resistance of the film layer was explored using electrochemical performance testing and copper sulfate spot-drop experiments, and the micro-morphology and elemental composition of the con-version film were characterized and analyzed by combining scanning electron microscopy (SEM)and energy-dispersive X-ray spectroscopy (EDX) . Finally, the film formation mechanism of the titanium zirconium silane composite conversion film was explored. Results showed that when the optimal process formulation was selected, namely waterborne silane WB100 at 2.7%, H2 TiF6 at 2.2 mL/L, H2 ZrF6 at 1.0 mL/L, a conversion time of 90 s, pH of 3.7, and a temperature of 40℃, the surfaces of the composite conversion films on various metal materials were uniformly dense and exhibited superior corrosion resistance. The film formation mechanism analysis revealed that the initial titanium zirconium silane composite conversion film evolved through three stages, ultimately forming a bilayer structure composed of metal oxides and organic mon-omolecular films.

fluorotitanic acid and fluorozirconic acid composite converison filmpolymetalliccorrosion resistancesilane

王文豪、李英朋、占稳

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中国机械总院集团武汉材料保护研究所有限公司,湖北 武汉 430030

中国机械总院集团海西 (福建) 分院有限公司,福建 三明 365500

氟钛酸/氟锆酸复合转化膜 多金属 耐腐蚀性 硅烷

国家自然科学基金面上项目

52075391

2024

材料保护
武汉材料保护研究所,中国腐蚀与防护学会 中国表面工程协会

材料保护

CSTPCD
影响因子:1.129
ISSN:1001-1560
年,卷(期):2024.57(5)
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