田口方法
材料科学
扫描电子显微镜
冶金
泥浆
耐磨性
分析化学(期刊)
核化学
复合材料
化学
色谱法
作者
Akshay Kumar,G.S. Dangayach,Amar Patnaik
标识
DOI:10.1002/mawe.202200298
摘要
Abstract High‐speed oxy‐fuel warm showering is utilized to cover Q 235 steel with Fe 32 Cr 21 Co 21 Ni 16 Si 5 B 5 and Fe 43 Cr 16 Co 12 Ni 14 Si 5 B 10 . The resistance of coatings to slurry wear is tested using a jet‐type apparatus. Investigations of the surface are conducted. Taguchi's and wear model verify the significance of impact of the most important factors. In this case, the wear model‘s proposed process closely matches with the experiments. In this study, the impact velocity was entitled as the most influential component, with a commitment proportion of 70 %, trailed by the impingement point, with proportions of 28.16 % and 28.70 % for Fe 32 Cr 21 Co 21 Ni 16 Si 5 B 5 and Fe 43 Cr 16 Co 12 Ni 14 Si 5 B 10 , separately. It is by and large concurred that the main success of the control boundaries is influence speed>impingement point>erodent feed rate>erodent size for Fe 43 Cr 16 Co 12 Ni 14 Si 5 B 10 , and the opposite is true for Fe 43 Cr 16 Co 12 Ni 14 Si 5 B 10 . Scanning electron microscopy has shown that the principal erosion processes for Fe 32 Cr 21 Co 21 Ni 16 Si 5 B 5 and Fe 43 Cr 16 Co 12 Ni 14 Si 5 B 10 coatings are miniature cutting and blended cutting and furrowing at low impingement point while platelets are apparent at ordinary impingement point. Coatings formed passivation films, as shown by their greater value relative to the substrate.
科研通智能强力驱动
Strongly Powered by AbleSci AI