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超高温复合材料与高温合金钎焊连接钎料选择及残余应力调控研究进展

Research progress on brazing filler metal selection and residual stress regulation for brazing between ultra-high temperature composites and superalloys

  • 摘要: 超高温复合材料与高温合金异质连接构件不仅可以充分发挥超高温复合材料耐极端高温和轻量化优势,还可以兼顾高温合金优异的加工性能和力学性能,在航空及航天发动机等重大装备领域具有广泛的应用需求. 然而,由于超高温复合材料与高温合金在物理及化学性质上存在显著差异,如何实现二者的高性能、高可靠钎焊连接一直是国内外研究人员关注焦点问题.文中综述了超高温复合材料与高温合金主要钎焊连接方法,阐述了二者钎焊连接时存在的主要难题,并针对存在的难题,从钎料选择与设计、接头残余应力预测与调控等两个方面重点阐述了Cf /C,Cf /SiC,SiCf /SiC和ZrB2-SiC-C等超高温复合材料与高温合金的钎焊连接研究进展,在此基础上,对超高温复合材料与高温合金异质钎焊连接的发展方向进行了展望.

     

    Abstract: Heterogeneous joining components of ultra-high temperature composites and superalloys can not only give full play to the extreme high-temperature resistance and lightweight advantages of ultra-high temperature composites but also take into account the excellent processability and mechanical properties of superalloys. They have broad application demands in key equipment fields such as aero-engines and aerospace engines. However, due to significant differences in physical and chemical properties between ultra-high temperature composites and superalloys, achieving high-performance and high-reliability brazed joints between them has long been a research focus of scholars in China and abroad. In this paper, the main brazing methods for ultra-high temperature composites and superalloys were reviewed, and the key challenges in their brazing were elaborated. In view of these challenges, the research progress on brazing of ultra-high temperature composites, including Cf/C, Cf/SiC, SiCf/SiC, and ZrB2-SiC-C, with superalloys was elaborated with emphasis on two aspects of brazing filler metal selection and design, as well as joint residual stress prediction and regulation. On this basis, the development directions of heterogeneous brazing between ultra-high temperature composites and superalloys were prospected.

     

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