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Microstructure and high temperature tensile properties of wide gap brazed cobalt based superalloy X-40

机译:宽间隙钎焊钴基高温合金X-40的组织和高温拉伸性能

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摘要

Wide gap brazing (WGB) of X-40 cobalt based superalloy was conducted in this study using BNi-9 braze alloy with X-40 and IN738 additive alloys. A groove was machined into X-40 bars with a nominal width of 6?35 mm before filler application. Following brazing at 1200°C for 15 min, the microstructure of the as brazed joints was examined using SEM, EDS and nanoindentation technique. Both WGB joints with X-40 and IN783 additive alloys contained primary matrix phase in addition to a number of boron containing phases which assumed either eutectic or discrete forms. Nanoindention testing revealed that these boron containing phases exhibited hardness values several times higher than the base alloy and matrix phase contributing to the embrittlement of the braze joint. Porosity was also observed in both types of WGB braze joints, the degree of which was greatest in the braze joints with IN738 additive alloy. Tensile testing at 950°C showed that the yield strength of both WGB joints was higher than that of the baseline specimens while the ultimate tensile strength of the WGB joints was lower than that of the baseline X-40. The ductility of the WGB joints was significantly inferior to that of the baseline X-40, particularly for WGB with IN 738 additive alloy.
机译:在这项研究中,使用BNi-9钎料与X-40和IN738添加剂合金对X-40钴基高温合金进行了宽间隙钎焊(WGB)。在填充填料之前,将沟槽加工成标称宽度为6?35 mm的X-40钢筋。在1200°C钎焊15分钟后,使用SEM,EDS和纳米压痕技术检查钎焊接头的微观结构。带有X-40和IN783添加剂合金的WGB接头均含有初级基体相,此外还含有许多呈共晶或离散形式的含硼相。纳米压痕测试表明,这些含硼相的硬度值比基础合金相和基体相的硬度值高出几倍,从而导致钎焊接头变脆。在两种类型的WGB钎焊接头中也观察到孔隙率,在使用IN738添加剂合金的钎焊接头中其程度最大。在950°C的拉伸试验中,两个WGB接头的屈服强度均高于基线样品,而WGB接头的极限抗拉强度却低于基线X-40。 WGB接头的延展性明显低于基线X-40,尤其是含IN 738添加剂合金的WGB。

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