Chen Changjun, Sui Liwei, Zhang Min
Laser Processing Research Center, School of Mechanical and Electric Engineering, Soochow University, Suzhou 215131, China.
State Key Laboratory of Advanced Welding and Joining, Harbin Institute of Technology, Harbin 150001, China.
Materials (Basel). 2024 May 10;17(10):2251. doi: 10.3390/ma17102251.
Glass-to-metal seals are a very important element in the construction of vacuum tubes, electric discharge tubes, pressure-tight glass windows in metal cases, and metal or ceramic packages of electronic components. This paper presents the influence of different pretreatment methods on the high-temperature wettability of 304 stainless steel by high-alumina glass sealing. The pretreatment of the steel included laser surface melting and pre-oxidizing. The bonding characteristics of glass and stainless steel directly depend on the wettability in terms of the measured wetting angle, the type of oxide formed at the stainless steel surface, and the microstructural changes during the manufacturing process. The oxide film thickness on the stainless steel surface was evaluated to determine the optimal parameters. The film was wetted with high-alumina glass powder at different temperatures. The results showed that pre-oxidation decreased the wetting angle from 56.2° to 33.6°, while for the laser-melted surface, the wetting angle decreased from 49.8° to 31.5°. Scanning electron microscopy (SEM) revealed that the oxide film on the laser-melted surface was thicker and denser than that formed on the pre-oxidized surface. The present work shows that laser surface melting has a greater beneficial influence on the wetting and diffusion characteristics of 304 stainless steel sealed by high-alumina glass.
玻璃与金属的密封是真空管、放电管、金属外壳中的耐压玻璃窗以及电子元件的金属或陶瓷封装结构中的一个非常重要的部件。本文介绍了不同预处理方法对高铝玻璃密封304不锈钢高温润湿性的影响。对钢材的预处理包括激光表面熔化和预氧化。玻璃与不锈钢的结合特性直接取决于润湿性,具体体现在测量的润湿角、不锈钢表面形成的氧化物类型以及制造过程中的微观结构变化。对不锈钢表面的氧化膜厚度进行了评估,以确定最佳参数。在不同温度下用高铝玻璃粉对该膜进行润湿。结果表明,预氧化使润湿角从56.2°降至33.6°,而对于激光熔化表面,润湿角从49.8°降至31.5°。扫描电子显微镜(SEM)显示,激光熔化表面的氧化膜比预氧化表面形成的氧化膜更厚、更致密。目前的工作表明,激光表面熔化对高铝玻璃密封的304不锈钢的润湿和扩散特性具有更大的有益影响。