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    • 5. 发明申请
    • Corrosion Resistant Metallate Compostions
    • 耐腐蚀金属组合物
    • US20110300390A1
    • 2011-12-08
    • US12794527
    • 2010-06-04
    • Eric L. Morris
    • Eric L. Morris
    • B32B15/04C09D139/06B05D3/00
    • C23C22/34C23C22/68C23C22/83
    • A composition for application to a metal substrate comprising at least one metallate compound comprising hexafluorzirconate, zirconyl nitrate, and/or yttrium nitrate is provided. The composition may further comprise additives that promote corrosion resistance of the metal substrate, or the adhesion of subsequent coatings, such as one or more rare earth element salts; allontoin, polyvinylpyrrolidone, surfactants, and other additives and co-inhibitors. A metal substrate such as an aluminum or an aluminum alloy substrate coated with a metallate composition according to the present invention is also provided. A process for preparing a coating on a metal substrate to improve the corrosion resistance of the substrate or improve the adhesion of a subsequent coating is also provided. The process comprises treating the metal substrate with an aqueous solution comprising a metallate compound. The process may further comprise one or more pre-treating the substrate, coating the metal substrate with an oxidizing agent and/or coating the metal substrate with one or more rare earth element salts. A process for preparing the metallate coatings of the invention is also provided.
    • 提供了一种用于金属基材的组合物,其包含至少一种包含六氟锆酸盐,硝酸氧锆和/或硝酸钇的金属化合物。 组合物还可以包含促进金属基材的耐腐蚀性或随后的涂层如一种或多种稀土元素盐的粘附的添加剂; 聚铁蛋白,聚乙烯吡咯烷酮,表面活性剂和其它添加剂和辅助抑制剂。 还提供了金属基底,例如涂覆有根据本发明的金属盐组合物的铝或铝合金基底。 还提供了一种在金属基材上制备涂层以提高基材的耐腐蚀性或改善随后的涂层的粘附性的方法。 该方法包括用包含金属化合物的水溶液处理金属底物。 该方法还可包括一种或多种预处理基材,用氧化剂涂覆金属基材和/或用一种或多种稀土元素盐涂覆金属基材。 还提供了制备本发明的金属镀层的方法。
    • 7. 发明授权
    • Corrosion resistant metallate compositions
    • 耐腐蚀金属化合物组合物
    • US09347134B2
    • 2016-05-24
    • US12794527
    • 2010-06-04
    • Eric L. Morris
    • Eric L. Morris
    • C23C22/34C23C22/56C23C22/66C23C22/68C23C22/83
    • C23C22/34C23C22/68C23C22/83
    • A composition for application to a metal substrate comprising at least one metallate compound comprising hexafluorzirconate, zirconyl nitrate, and/or yttrium nitrate is provided. The composition may further comprise additives that promote corrosion resistance of the metal substrate, or the adhesion of subsequent coatings, such as one or more rare earth element salts; allontoin, polyvinylpyrrolidone, surfactants, and other additives and co-inhibitors. A metal substrate such as an aluminum or an aluminum alloy substrate coated with a metallate composition according to the present invention is also provided. A process for preparing a coating on a metal substrate to improve the corrosion resistance of the substrate or improve the adhesion of a subsequent coating is also provided. The process comprises treating the metal substrate with an aqueous solution comprising a metallate compound. The process may further comprise one or more pre-treating the substrate, coating the metal substrate with an oxidizing agent and/or coating the metal substrate with one or more rare earth element salts. A process for preparing the metallate coatings of the invention is also provided.
    • 提供了一种用于金属基材的组合物,其包含至少一种包含六氟锆酸盐,硝酸氧锆和/或硝酸钇的金属化合物。 组合物还可以包含促进金属基材的耐腐蚀性或随后的涂层如一种或多种稀土元素盐的粘附的添加剂; 聚铁蛋白,聚乙烯吡咯烷酮,表面活性剂和其它添加剂和辅助抑制剂。 还提供了金属基底,例如涂覆有根据本发明的金属盐组合物的铝或铝合金基底。 还提供了一种在金属基材上制备涂层以提高基材的耐腐蚀性或改善随后的涂层的粘附性的方法。 该方法包括用包含金属化合物的水溶液处理金属底物。 该方法还可包括一种或多种预处理基材,用氧化剂涂覆金属基材和/或用一种或多种稀土元素盐涂覆金属基材。 还提供了制备本发明的金属镀层的方法。