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王彦芳, 王存山, 高强, 董闯, 霍树斌, 王佳杰. TiAl基合金的非晶钎焊[J]. 焊接学报, 2004, (2): 111-114.
引用本文: 王彦芳, 王存山, 高强, 董闯, 霍树斌, 王佳杰. TiAl基合金的非晶钎焊[J]. 焊接学报, 2004, (2): 111-114.
Wang Yan-fang, Wang Cun-shan, Gao Qiang, Dong Chuang, HUO Shu-bin, WANG Jia-jie. Brazing of a TiAl-based alloy with Zr65Al7.5Cu27.5 amorphous ribbon[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2004, (2): 111-114.
Citation: Wang Yan-fang, Wang Cun-shan, Gao Qiang, Dong Chuang, HUO Shu-bin, WANG Jia-jie. Brazing of a TiAl-based alloy with Zr65Al7.5Cu27.5 amorphous ribbon[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2004, (2): 111-114.

TiAl基合金的非晶钎焊

Brazing of a TiAl-based alloy with Zr65Al7.5Cu27.5 amorphous ribbon

  • 摘要: 利用一种典型的块体非晶成分Zr65Al7.5Cu27.5(摩尔分数,%),制备成非晶条带焊接TiAl基合金,研究了焊接接头的组织结构和成分分布,并分析了钎焊过程的组织演变规律。研究结果表明,利用Zr65Al7.5Cu27.5非晶条带可以成功焊接TiAl基合金。焊缝区组织出现了明显的分层现象,从中部到界面区依次是先析出的Zr2Cu型和ZrCu化合物,粗大的Zr2Cu型化合物和Ti2Al型柱状晶。焊接母材中的Al元素向焊缝发生了扩散,在界面区形成了一层很薄的反应层。

     

    Abstract: In this paper, the melt-spun Zr65Al7.5Cu27.5 amorphous alloy, a typical bulk metallic glass with high glass ability, was used to braze a TiAl-based alloy. The mierostructure and elements distribution have been studied. The results show that the Zr65Al7.5Cu27.5 amorphous ribbons can successfully braze the TiAl-based alloy. Layered structures appear in the brazing seam. From the middle region to the interface region of the brazing seam, the miorestures are the Zr2Cu-type and ZrCu precipitates,the coarse Zr2Cu type grains, and the Ti2Al-type columnar grains. The Al element in the substrate diffuses into the brazing seam, forming a thin reaction layer in the interface region.

     

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