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    陶博浩, 李红, 栗卓新, 郭福. 先进航空钛合金中温钎焊技术的研究进展[J]. 机械工程材料, 2013, 37(11): 1-5.
    引用本文: 陶博浩, 李红, 栗卓新, 郭福. 先进航空钛合金中温钎焊技术的研究进展[J]. 机械工程材料, 2013, 37(11): 1-5.
    TAO Bo-hao, LI Hong, LI Zhuo-xin, GUO Fu. Research Progress in Low Temperature Brazing Technology for Advanced Aeronautical Titanium Alloys[J]. Materials and Mechanical Engineering, 2013, 37(11): 1-5.
    Citation: TAO Bo-hao, LI Hong, LI Zhuo-xin, GUO Fu. Research Progress in Low Temperature Brazing Technology for Advanced Aeronautical Titanium Alloys[J]. Materials and Mechanical Engineering, 2013, 37(11): 1-5.

    先进航空钛合金中温钎焊技术的研究进展

    Research Progress in Low Temperature Brazing Technology for Advanced Aeronautical Titanium Alloys

    • 摘要: 从中温钎焊用钎料和中温钎焊技术两方面介绍了钎焊温度在800 ℃以下钛合金钎焊技术的研究进展, 总结了微量元素对银基、铝基、钛-锆基中温钎料熔点及润湿性的影响, 以及中温钎焊工艺对钛合金钎焊接头性能的影响; 并指出了先进航空钛合金中温钎焊技术的发展方向。

       

      Abstract: The research progress in titanium alloys brazing at the temperatures below 800 ℃ is introduced from brazing filler metals and technology. The effects of microelements on the melting point and wettability of low temperature filler metals, such as Ag-based, Al-based and Ti-Zr based filler metals, as well as the influence of low temperature brazing process parameters on the properties of welded joints of titanium alloy are summarized. The future development direction of brazing technology for advanced aeronautical titanium alloy is pointed out.

       

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