润湿
模具
材料科学
基质(水族馆)
焊剂(冶金)
复合材料
接触角
冶金
海洋学
地质学
作者
Xianzheng Si,Wanlin Wang,Lejun Zhou,Sibao Zeng,Liwu Zhang,Jianghua Qi,Peng Liu
标识
DOI:10.1002/srin.202400270
摘要
Wettability of mold flux on stainless steel is a very important index to reflect the possibility of slag entrapment during the continuous casting process. In this study, the wetting behavior of mold flux droplet with different size on stainless steel is investigated using sessile drop method. Results show that the contact angle at 1573 K increases from 64.62 ± 0.25°, 62.56 ± 0.2° to 61.46 ± 0.2° and 60.56 ± 0.2°, with the size of the original flux sample increasing from 3, 4 to 5 and 6 mm. No chemical reaction occurs at the interface between mold flux and steel substrate via the thermodynamic calculation and microstructure analyses. Furthermore, the line tension of flux droplet/stainless steel/Ar‐5%H 2 system ranges from 160.55 to 125.19 mN m −1 at the temperature range of 1473–1573 K. It is due to the positive line tension (line energy) which decreases the wettability of flux droplet on steel substrate and results in an increase of contact angle when the droplet size reduces.
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