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作 者:于治水[1,2] 祁凯[3] 李瑞峰[3] 周方明[3] 吴铭方[3] 钱乙余[1]
机构地区:[1]哈尔滨工业大学现代焊接生产技术国家重点实验室 [2]华东船舶工业学院,江苏镇江212003 [3]华东船舶工业学院
出 处:《稀有金属材料与工程》2003年第12期1049-1052,共4页Rare Metal Materials and Engineering
基 金:江苏省船舶先进设计制造技术重点实验室资助
摘 要:用Ti-Cu-Ni,Ti-Cr-Zr钎料在TIG电弧加热条件对TA2和Ti-6Al-4V钛合金进行钎焊。结果表明:用Ti-Cu-Ni钎料钎焊TA2和Ti-6Al-4V钛合金的搭接接头强度分别是418.3MPa和439.6MPa;用Ti-Cr-Zr钎料钎焊TA2和Ti-6Al-4V钛合金的搭接接头强度分别是575.2MPa和656.1MPa。对Ti-Cu-Ni钎料/母材界面分析认为固液异分化合物η相((Cu,Ni)Ti2)生成时呈笋状生长,嵌入钎缝对钎缝的强度提高有利。对Ti-Cr-Zr钎料/母材界面分析,认为主要是固溶体β-Ti(Cr)存在提高了钎缝强度。Industrial pureity Ti and Ti-6Al-4V alloy were TIG-arc brazed using Ti-Cu-Ni and Ti-Cr-Zr as brazing filler metals. The experimental results show that for industrial purity Ti and Ti-6Al-4V, respectively, the overlap brazing joint strength are 418.3 MPa and 439.6 MPa by using Ti-Cu-Ni as the brazing filler metal, and 575.2 MPa and 656.1 MPa by using Ti-Cr-Zr as the brazing filler metal. Analyzsis of the interface between the Ti-Cu-Ni brazing filler metal and the base metal, it is found that an incongruent compound eta phase (Cu, Ni)Ti-2 grows in the shape of a bamboo shoot embedded in the brazing seam during arc brazing, increasing the brazing joint strength for the interface between the Ti-Cr-Zr brazing filler metal and the metal, there exists a solid solution beta Ti(Cr) as the major phase, which also increases the brazing joint strength.
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