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Experimental investigations on creep rupture strength and failure mechanism of vacuum brazed joints of a DS superalloy at elevated temperature

机译:DS高温合金真空钎焊接头高温蠕变断裂强度及破坏机理的实验研究

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Experiments were carried out in order to investigate the creep rupture strength of vacuum brazed joints in a directionally solidified (DS) superalloy. Vacuum brazed joint specimens were tested with and without post-brazing heat treatment. Specimens were crept at 980 ℃ in laboratory air at applied stress levels between 124MPa and 318MPa. After creep testing, specimens were analyzed by means of SEM, OM and EDXS in order to understand failure mechanisms. The results showed that: (1) under the same test conditions, all brazed joints exhibited a lower creep life compared with a typical DS superalloy. In addition, the life of heat treated brazed joints was longer than that of non heat treated braze joints; (2) all the brazed joints fractured in the brazing seam; (3) the Larson-Miller equation can be used to characterize the creep rupture strength of the DS superalloys and the brazed joints. (4) the post-brazing heat treatment had an important impact on the creep behavior and microstructure of brazed joints; and (5) creep loading contributed to interdiffusion of the elements and decrease of the brazing pores in the brazed joints.
机译:为了研究定向凝固(DS)高温合金中真空钎焊接头的蠕变断裂强度,进行了实验。在进行和不进行钎焊后热处理的情况下,对真空钎焊接头试样进行了测试。试样在980℃的实验室空气中以124MPa至318MPa的施加应力水平蠕变。经过蠕变测试后,通过SEM,OM和EDXS对样品进行了分析,以了解其失效机理。结果表明:(1)在相同的测试条件下,与典型的DS高温合金相比,所有钎焊接头均具有较低的蠕变寿命。另外,热处理的铜焊接头的寿命比未热处理的铜焊接头更长。 (2)钎焊缝中所有钎焊接头均断裂; (3)Larson-Miller方程可用于表征DS高温合金和钎焊接头的蠕变断裂强度。 (4)钎焊后热处理对钎焊接头的蠕变行为和显微组织有重要影响; (5)蠕变载荷促进了元素的相互扩散,并减少了钎焊接头中的钎焊孔。

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