Influence of Different Transition Metals on Properties of Diffusion Bonding Joint of TC4/ZQSn10-10
Jicai Feng
Abstract
Jicai Feng
Abstract
Effects of different transition metals on the diffusion bonding joints of Ti alloy(TC4) to Tin-bronze(ZQSn10-10) were studied.The microstructure of the diffusion bonding joint was analyzed with SEM,EDS and XRD.The results show that when the interlayer was Ni or Ni+ Cu transition metal,Ni could effectively prevent the diffusion between Ti and Cu and thus avoid producing the Cu-Ti intermetallic compounds(Cu3Ti,CuTi etc.),but the Ni-Ti intermetallic compound(NiTi,Ni3Ti) were formed at the TC4/Ni interface resulting in the degradation in the strength of the joints.When the interlayer was Ni,the optimum bonding temperature was 830 ℃ and when the interlayer was Ni+Cu,the optimum bonding temperature was 850 ℃.With the optimum bonding parameters,the tensile strength of joints with Ni interlayer was 155.8 MPa,equal to that with Cu+Ni interlayer and was 65% of the tensile strength of ZQSn10-10 base metal.
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Effects of different transition metals on the diffusion bonding joints of Ti alloy(TC4) to Tin-bronze(ZQSn10-10) were studied.The microstructure of the diffusion bonding joint was analyzed with SEM,EDS and XRD.The results show that when the interlayer was Ni or Ni+ Cu transition metal,Ni could effectively prevent the diffusion between Ti and Cu and thus avoid producing the Cu-Ti intermetallic compounds(Cu3Ti,CuTi etc.),but the Ni-Ti intermetallic compound(NiTi,Ni3Ti) were formed at the TC4/Ni interface resulting in the degradation in the strength of the joints.When the interlayer was Ni,the optimum bonding temperature was 830 ℃ and when the interlayer was Ni+Cu,the optimum bonding temperature was 850 ℃.With the optimum bonding parameters,the tensile strength of joints with Ni interlayer was 155.8 MPa,equal to that with Cu+Ni interlayer and was 65% of the tensile strength of ZQSn10-10 base metal.
Key concepts: Materials science, Intermetallic, Diffusion bonding, Diffusion, Ultimate tensile strength, Alloy, Metallurgy, Transition metal