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Silane‐modified polyvinylimidazole(1) for corrosion protection on copper at elevated temperatures

机译:硅烷改性聚乙烯基咪唑(1),用于高温下铜的腐蚀保护

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AbstractSilane‐modifiedN‐polyvinylimidazole PVI(1) copolymers have been synthesized from various mole ratios of γ‐methacryloxypropyltrimethoxysilane (γ‐MPS) andN‐vinylimidazole, VI(1). Fourier transform infrared reflection‐absorption spectroscopy (FTIR‐RAS) is used to investigate the modified PVI(1) on copper surfaces. The silane‐modified PVI(1) has good corrosion protection and adhesion promotion capabilities for copper substrate under severe environments. The relationship between coating thickness and corrosion protection is studied at elevated temperatures. The relationship between the mole ratio of comonomers and the corrosion processes of a copper surface has also been investigated at elevated temperatures. The corrosion protection improves drastically with increased VI(1) content. An adhesion study of the silane‐modified PVI(1) film on a copper surface is also carried out using the ASTM adhesive tape test. From the adhesion strengths between the modified PVI(1) films and copper surface, it has been observed that modified PVI(1) acts as an adhesion promoter and does not depend on the mole ratio of γ‐MPS/VI(1) within the range of this experiment. Good adhesion of an anticorrosion coating is important for the corrosion protection of a copper surface. © 19
机译:摘要 由不同摩尔比的γ-甲基丙烯酰氧基丙基三甲氧基硅烷(γ-MPS)和N-乙烯基咪唑VI(1)合成了硅烷改性的N-聚乙烯基咪唑[PVI(1)]共聚物。采用傅里叶变换红外反射吸收光谱(FTIR-RAS)研究了铜表面的改性PVI(1)。硅烷改性PVI(1)在恶劣环境下对铜基体具有良好的防腐和增强附着能力。研究了高温下涂层厚度与防腐性能之间的关系。在高温下,还研究了共聚单体的摩尔比与铜表面腐蚀过程之间的关系。随着VI(1)含量的增加,防腐蚀性能大大提高。硅烷改性的PVI(1)薄膜在铜表面上的附着力研究也使用ASTM胶带测试进行。从改性PVI(1)薄膜与铜表面之间的粘结强度可以看出,改性PVI(1)起到粘合促进剂的作用,并且不依赖于本实验范围内γ‐MPS/VI(1)的摩尔比。防腐涂层的良好附着力对于铜表面的防腐保护非常重要。© 19

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