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Ta-Ni-braze for high temperature stable ceramic - ceramic junctions

机译:Ta-Ni-钎料,用于高温稳定的陶瓷-陶瓷结

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摘要

Ceramic materials are widely used for high temperature applications. It is still a challenge to produce ceramic or ceramic-metal junctions which are stable at temperatures above 1000℃ using metallic brazes. There are very few solutions for those junctions which are either limited for specific applications or costly. A potential braze for high temperature applications (> 1000℃) could be a Ta-Ni alloy which we started to develop recently. This paper presents investigations of Ta-Ni alloy with eutectic composition of 38 at% Ta + 62 at% Ni for brazing particularly alumina samples. The melting temperature of the above composition lies at 1395℃. Specific additives are suitable to promote the wetting of the braze to ceramic materials. Interactions of the metallic braze and the ceramic material influence properties and behavior of the junction as well. Structural features, phase formation during brazing process, mechanical and thermal behavior are investigated in relation to brazing temperature. FESEM, EDX, XRD and thermal analysis methods deliver results about the properties above. Finally a perspective view is given to the potential of Ta-Ni brazes for ceramic-ceramic or ceramic-metal joining with a look to further work which needs to be done.
机译:陶瓷材料广泛用于高温应用。使用金属钎焊生产在温度超过1000℃稳定的陶瓷或陶瓷-金属结仍然是一个挑战。这些结点的解决方案很少,这些解决方案要么局限于特定应用,要么成本很高。我们最近开始开发的Ta-Ni合金可能是用于高温应用(> 1000℃)的钎焊。本文介绍了共晶成分为38 at%Ta + 62 at%Ni的Ta-Ni合金用于钎焊特别是氧化铝样品的研究。上述组合物的熔融温度为1395℃。特定的添加剂适合于促进钎料对陶瓷材料的润湿。金属钎焊和陶瓷材料的相互作用也影响结的性质和行为。研究了与钎焊温度相关的结构特征,钎焊过程中的相形成,机械和热行为。 FESEM,EDX,XRD和热分析方法可提供有关上述特性的结果。最后,给出了Ta-Ni钎料在陶瓷-陶瓷或陶瓷-金属接合中的潜力的透视图,以期进一步开展工作。

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