Active metal brazing of Al2O3 to Kovar® (Fe-29Ni-17Co wt.%) using Copper ABA® (Cu-3.0Si-2.3Ti-2.0Al wt.%) (vol 98, pg 182, 2017)

被引:0
作者
Ali, Majed
Knowles, Kevin M.
Mallinson, Phillip M.
Fernie, John A.
机构
[1] Department of Materials Science and Metallurgy, University of Cambridge, Cambridge
[2] AWE plc, Reading
关键词
Al[!sub]2[!/sub]O[!sub]3[!/sub; alumina; Brazing; Copper ABA; joining; Kovar;
D O I
10.1080/14786435.2017.1416912
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The application of an active braze alloy (ABA) known as Copper ABA (R) (Cu-3.0Si-2.3Ti-2.0Al wt.%) to join Al2O3 to Kovar (R) (Fe-29Ni-17Co wt.%) has been investigated. This ABA was selected to increase the operating temperature of the joint beyond the capabilities of typically used ABAs such as Ag-Cu-Ti-based alloys. Silica present as a secondary phase in the Al2O3 at a level of similar to 5 wt.% enabled the ceramic component to bond to the ABA chemically by forming a layer of Si3Ti5 at the ABA/Al2O3 interface. Appropriate brazing conditions to preserve a near-continuous Si3Ti5 layer on the Al2O3 and a continuous Fe 3 Si layer on the Kovar (R) were found to be a brazing time of <= 15 min at 1025 degrees C or <= 2 min at 1050 degrees C. These conditions produced joints that did not break on handling and could be prepared easily for microscopy. Brazing for longer periods of time, up to 45 min, at these temperatures broke down the Si3Ti5 layer on the Al2O3, while brazing at >= 1075 degrees C for 2-45 min broke down the Fe3Si layer on the Kovar (R) significantly. Further complications of brazing at >= 1075 degrees C included leakage of the ABA out of the joint and the formation of a new brittle silicide, Ni16Si7Ti6, at the ABA/Al2O3 interface. This investigation demonstrates that it is not straightforward to join Al2O3 to Kovar (R) using Copper ABA (R), partly because the ranges of suitable values for the brazing temperature and time are quite limited. Other approaches to increase the operating temperature of the joint are discussed.
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页码:I / I
页数:1
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[1]  
Ali M, 2018, PHILOS MAG, V98, P182, DOI 10.1080/14786435.2017.1400702