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Adding Sn on the Performance of Amorphous Brazing Fillers Applied to Brazing TA2 and Q235

机译:添加锡对钎焊TA2和Q235的非晶钎料性能的影响

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Amorphous filler Ti-Zr-Cu-Ni with better performance and higher melting point than the α → β phase transition temperature 882.5°C of TA2, is appropriate for joining TC and TB titanium alloys but not for TA titanium alloys, with which the ductility of the joined base metal TA2 gets down. In this paper, Sn is added into Ti-Zr-Cu-Ni filler to reduce its melting temperature then to satisfy the joining temperature requirement, and the effects of the content of Sn on the microstructure of the alloy and brazing performance are investigated. The results show that, the Ti-Zr-Cu-Ni-Sn brazing foils still possess amorphous structure; the melting point of fillers is reducing with the increase of the Sn content; the joint gap that formed during brazing TA2 and Q235 using Ti-Zr-Cu-Ni-Sn foils is fully filled with continuous compact surface and smooth uniform fillet; the shear strength of the joint is raising with the increase of Sn content in brazing fillers and the strength reaches to 112 MPa when Sn content is 3%; adding more Sn, more brittle intermetallic compounds TiFe and TiFe2 are gathering to form cluster and the shear strength of the joint is reducing; the shear fracture always occurs in the center of the seam.
机译:非晶态填料Ti-Zr-Cu-Ni比TA2的α→β相变温度882.5°C具有更好的性能和更高的熔点,适用于连接TC和TB钛合金,但不适用于具有延展性的TA钛合金接合的母材TA2的高度下降。本文将锡添加到Ti-Zr-Cu-Ni填料中以降低其熔化温度,然后满足接合温度要求,并研究了锡含量对合金的显微组织和钎焊性能的影响。结果表明,Ti-Zr-Cu-Ni-Sn钎焊箔仍具有非晶态结构。随着Sn含量的增加,填料的熔点降低。用Ti-Zr-Cu-Ni-Sn箔钎焊TA2和Q235时形成的接缝被连续不断的致密表面和光滑均匀的圆角填充。随着钎料中Sn含量的增加,接头的剪切强度也随之提高,当Sn含量为3%时,强度达到112 MPa。加入更多的锡,聚集更多的脆性金属间化合物TiFe和TiFe2形成团簇,并且接头的剪切强度降低。剪切断裂总是发生在接缝的中心。

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