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Interfacial reactions and strength properties in dissimilar titanium alloy/Ni alloy/microduplex stainless steel diffusion bonded joints

机译:异种钛合金/镍合金/微双相不锈钢扩散粘结接头的界面反应和强度性能

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摘要

The interfacial reactions and strength properties of a titanium alloy/ microduplex stainless steel diffusion bonded joint using Ni alloy as an intermediate materials was investigated in the temperature range of 800 to 950 ℃ for 75min and at 950 ℃ for 15-90 min in vacuum. The microstructure observations at the stainless steel/Ni alloy interface indicate the presence of γ-Fe layer up to 900 ℃ for 75 min and at 950 ℃ up to 45 min. Ni_3Ti, NiTi and NiTi_2 intermetallic layers were observed at the Ni alloy/titanium alloy interface at the same processing parameters and irregular shaped particles were present within the TiNi_3 intermetallic layer. Beyond these processing parameters, the layer wise Fe-Ti or Fe-Cr-Ti base intermetallic compounds were observed at the microduplex stainless steel/Ni alloy interface. Maximum tensile strength of ~639.9 MPa and shear strength of ~477.8 MPa along with ~9.3% ductility were obtained for the diffusion couple processed at 900 ℃ for 75 min.
机译:研究了以Ni合金为中间材料的钛合金/微双相不锈钢扩散结合接头的界面反应和强度性能,在800〜950℃的温度范围内进行了75min,在950℃的温度范围内进行了15〜90min。在不锈钢/镍合金界面的显微组织观察表明,在900℃下持续75分钟,在950℃下持续45分钟,存在γ-Fe层。在相同工艺参数下,在Ni合金/钛合金界面处观察到Ni_3Ti,NiTi和NiTi_2金属间化合物层,并且在TiNi_3金属间化合物层中存在不规则形状的颗粒。除这些加工参数外,在微双相不锈钢/ Ni合金界面还观察到了层状Fe-Ti或Fe-Cr-Ti基金属间化合物。 900℃下处理75 min的扩散偶的最大抗拉强度为〜639.9 MPa,抗剪强度为〜477.8 MPa,延展性约为9.3%。

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