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Ti-Nb-Cu作缓冲层的TiC金属陶瓷/304不锈钢扩散连接
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重庆大学,重庆大学,重庆大学

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TG457

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国家自然科学基金项目(面上项目,重点项目,重大项目)


Ti-Nb-Cu stress buffer layer for TiC cermet/304 stainless steel diffusion bonding
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Chongqing University,Chongqing University,Chongqing University

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    摘要:

    对TiC金属陶瓷和304不锈钢进行真空扩散连接实验,并采用Ti/Nb/Cu中间层以实现活性连接并缓解接头残余应力的目的。对焊接接头进行详细的组织分析和力学性能测试来评估焊接工艺。分析发现在TiC金属陶瓷和304不锈钢之间形成明显的转变过渡区,界面反应产物为(Ti,Nb),剩余Nb,剩余Cu以及 Cu(s.s)。连接温度925℃,保温时间20min,压力8MPa下得到的接头剪切强度达84.6MPa,此时脆性断裂发生在靠近界面处的陶瓷内部。结果表明,中间层Ti/Nb/Cu的合理选择能很好的降低金属间化合物对接头性能的有害作用,而且Nb对接头残余应力的改善起到关键作用,有效的提高了接头强度。

    Abstract:

    Vacuum diffusion bonding of TiC cermet/304 stainless steel was conducted and Ti-Nb-Cu multi-interlayer was intended to achieve active bonding and residual stress relieving. Detailed microstructure characterization and mechanical properties assessment was carried out to evaluate the bonding technology. It was found that an obvious transition zone was formed at the interfaces and the detailed interfacial products were (Ti,Nb), remnant Nb, remnant Cu and Cu(s.s). The shear strength of TiC/Ti-Nb-Cu/304SS joint up to 84.6 MPa by controlling heating to 925℃ and hold for 20 min under a pressure of 8MPa. Failure occurred within TiC cermet near the interface in a brittle manner. The results indicated that Ti/Nb/Cu can be effectively reduce the harmful effects of intermetallic compounds on the joint performance, and the Nb interlayer plays a major role in the relief of the residual stress.

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李佳,盛光敏,黄利. Ti-Nb-Cu作缓冲层的TiC金属陶瓷/304不锈钢扩散连接[J].稀有金属材料与工程,2016,45(3):555~560.[lijia, shengguangmin, huangli. Ti-Nb-Cu stress buffer layer for TiC cermet/304 stainless steel diffusion bonding[J]. Rare Metal Materials and Engineering,2016,45(3):555~560.]
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  • 收稿日期:2014-03-12
  • 最后修改日期:2014-07-13
  • 录用日期:2014-08-12
  • 在线发布日期: 2016-07-06
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