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Y_2O_3-Al_2O_3-SiO_2-based glass-ceramic fillers for the laser-supported joining of SiC

机译:Y_2O_3-Al_2O_3-SiO_2基玻璃陶瓷填料用于激光辅助连接SiC

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摘要

Four glass-ceramic filler compositions within the Y_2O_3-Al_2O_3-SiO_2 system were tested for their suitability in laser-supported joining of SiC materials. The compositions differed in terms of their primary crystallization behavior. Joint zone microstructures were investigated and joint tightness was determined using helium leak rate measurements after joining and subsequent annealing at 900℃ and 1050℃.Yttria- and silica-rich compositions showed a partial crystallization of yttrium silicates during the short laser processing. Subsequent heat treatment effected further crystallization toward equilibrium conditions. Despite the strong change in the degree of crystallization no reduction of the tightness was observed for the best compositions; after 500 h annealing at 1050℃ tightness values of less than 10~(-8) mbarl s~(-1) were measured. These results demonstrate the potential of the investigated filler system for high temperature stable hermetic sealing. At the same time the creation of homogeneously structured joints from glass-ceramic fillers using a laser-supported technology needs the understanding of the crystallization kinetics.
机译:测试了Y_2O_3-Al_2O_3-SiO_2系统中的四种玻璃陶瓷填料组合物在激光支持的SiC材料接合中的适用性。组成的主要结晶行为不同。研究了接合区的微观结构,并在接合和随后在900℃和1050℃退火之后,通过氦气泄漏率测量确定了接合紧密度。富含氧化钇和二氧化硅的成分在短激光加工过程中显示出硅酸钇的部分结晶。随后的热处理使结晶进一步趋于平衡。尽管结晶度发生了很大的变化,但是对于最佳的组合物,没有观察到紧密度的降低。在1050℃退火500 h后,测得的气密性值小于10〜(-8)mbar s〜(-1)。这些结果证明了所研究的填充剂系统具有高温稳定气密性密封的潜力。同时,使用激光支持技术从玻璃-陶瓷填料创建均质结构的接缝需要了解结晶动力学。

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