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机构地区:[1]湖北科技学院核技术与化学生物学院,咸宁437100
出 处:《表面技术》2012年第6期4-6,共3页Surface Technology
基 金:湖北科技学院校级重点项目(BK1011)
摘 要:C-90%SiC涂层涂覆在不锈钢废物包装桶的内壁上,可以有效防止放射性废物中氚的渗透,涂层与不锈钢基体材料的粘着性能是此类阻氚涂层使用寿命长短的关键。采用中频磁控溅射结合离子束混合技术,在不锈钢基体上沉积C-90%SiC涂层,探索提高涂层粘着性能的方法,通过二次离子质谱和SEM形貌表征涂层与基体之间的结合性能。结果表明,预沉积一层Cu膜,可以使涂层与基体之间的元素混合效应大大提高,有利于提高涂层的粘着性能。C-90% SiC coatings are fabricated on the stainless steel which is used as waste containers of tritium to pre- vent the diffusion of hydrogen and its radioisotopes. The bonding strength between the coating and substrate is the key issue to decide the life of the coating. In this work, C-90% SiC coatings were fabricated using middle frequency magnetron sputtering and ion-beam mixing to enhance the adhension strength. SIMS and SEM morphology analyses were used to characterize the bonding structure. The results show that Cu pre-deposition can enhance the adhesion of coatings to substrate due to the element intermixing effect of the substrate and coating.
关 键 词:阻氚涂层 C-SiC涂层 Cu预沉积 离子束混合 结合性能
分 类 号:TG174.444[金属学及工艺—金属表面处理]
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