Shen Jiajia, Chen Changjun, Zhang Min
Laser Processing Research Center, School of Mechanical and Electric Engineering, Soochow University, Suzhou 215131, China.
Materials (Basel). 2023 Jun 27;16(13):4628. doi: 10.3390/ma16134628.
This paper investigates the wettability of Kovar alloys with high-borosilicate glass and microscopically analyses the mechanism of wettability and diffusion between Kovar and borosilicate glass. First, Kovar was oxidised at 800 °C for 5, 15, 25, 35, and 60 min to observe the oxide morphology of the Kovar surface layer and to analyse the composition of the oxide layer. To investigate the wetting pattern formations of Kovar and high-borosilicate glass under different wetting temperatures, times, and preoxidation conditions, Kovar and high-borosilicate glass obtained from different oxidation treatments were held at 1060 °C for 20 min for wetting experiments, and the glass-metal wetting interface morphology and elemental distribution were observed using SEM and EDS. The elemental diffusion at the wetting interface between the borosilicate glass and the Kovar with different preoxidation and at the glass spreading boundary was investigated. The longitudinal diffusion of the liquid glass in the metal oxide layer formed a new tight chemical bond of FeSiO, and the lateral diffusion of the liquid glass in the Kovar surface layer formed a black halo.
本文研究了可伐合金与高硼硅玻璃的润湿性,并微观分析了可伐合金与硼硅玻璃之间的润湿性及扩散机理。首先,将可伐合金在800℃下氧化5、15、25、35和60分钟,以观察可伐合金表面层的氧化物形态并分析氧化层的成分。为了研究在不同润湿温度、时间和预氧化条件下可伐合金与高硼硅玻璃的润湿模式形成情况,将经过不同氧化处理的可伐合金和高硼硅玻璃在1060℃下保温20分钟进行润湿实验,并用扫描电子显微镜(SEM)和能谱仪(EDS)观察玻璃-金属润湿界面形态和元素分布。研究了硼硅玻璃与不同预氧化条件下的可伐合金在润湿界面以及玻璃铺展边界处的元素扩散情况。液态玻璃在金属氧化物层中的纵向扩散形成了新的紧密化学键FeSiO,液态玻璃在可伐合金表面层中的横向扩散形成了黑色晕圈。