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Ti/Al异种合金电弧熔钎焊接头界面断裂行为分析 被引量:4

Analysis of interface fracture behavior of arc fusion-brazed joint between titanium and aluminum dissimilar alloys
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摘要 采用TIG电弧的方法实现了钛合金与铝合金熔钎焊连接,分析了不同焊丝形成的熔钎焊接头的界面组织和断裂特征.结果表明,纯铝接头界面为单一的TiAl3相,裂纹主要沿着TiAl3反应层与焊缝之间的界面扩展.拉伸时首先从坡口拐角启裂,当裂纹扩展至接头反面时,断裂扩展形式转变为从焊缝金属撕裂,接头抗拉强度为139MPa.添加Al-Cu-La焊丝的接头界面结构为TiAl3+Ti2Al20La双化合物层,拉伸时沿TiAl3反应层与钛合金界面开裂,以界面内的微裂纹为裂纹源并向反应层内扩展,属于准解理断裂,接头抗拉强度达270 MPa.稀土La元素作用下形成的双化合物层是提高接头强度的关键. Fusion-brazing of titanium alloy to aluminum alloy was achieved by TIG arc,and the interface microstructure and fracture characteristics of the joints made with different fillers were analyzed.The results indicate that the interface microstructure in the joints with pure Al filler consisted of TiAl3 phase,and cracks initiated at the interface corner and propagated along the interface between TiAl3 layer and welded seam.The facture style changed to tearing through the welded seam when the crack propagated to the back side,and the tensile strength of the joint was 139 MPa.In contrast,the interface of the joints with Al-Cu-La filler exhibited dual layers,containing TiAl3 and Ti2Al20La phases.The fracture happened along the interface between TiAl3 layer and Ti alloy substrate.The microcracks at the interface acted as the crack sources during the tensile test,and the fracture occurred in the interfacial layer with quasi-cleavage features.The tensile strength of joint with Al-Cu-La filler reached 270 MPa.The double compound layers formed due to the effect of La,which was the key to improve the joint strength.
出处 《焊接学报》 EI CAS CSCD 北大核心 2013年第6期33-36,114-115,共4页 Transactions of The China Welding Institution
基金 国家自然科学基金资助项目(50974046 50904020) 哈尔滨市青年科技创新人才基金资助项目(2009RFQXG050) 中央高校基础科研业务费专项资金资助项目(HIT.NSRIF.2012007) 国家博士后科学基金资助项目(20090460883 201003419)
关键词 Ti/Al异种合金 电弧熔钎焊 界面反应层 断裂行为 Ti/Al dissimilar joint arc fusion-brazing interfacial reaction layer facture behavior
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  • 1陈树海,李俐群,陈彦宾.光斑形式对Ti/Al异种合金激光熔钎焊特性的影响[J].焊接学报,2008,29(6):49-52. 被引量:12
  • 2傅莉,杜随更,白建红.TC4钛合金与LD10铝合金感应摩擦焊接头的组织与性能[J].中国有色金属学报,2007,17(2):228-232. 被引量:14
  • 3倪加明,李俐群,陈彦宾,封小松.铝/钛异种合金激光熔钎焊接头特性[J].中国有色金属学报,2007,17(4):617-622. 被引量:31
  • 4邹僖.钎焊[M].北京:机械工业出版社,1985..
  • 5韩虞羹.概率与数理统计[M].北京:北京航空航天大学出版社,1990..
  • 6何康生 曹雄夫.异种金属焊接[M].北京:机械工业出版社,1984..
  • 7Kreimeyer M, Wagner F, Vollertsen F. Laser processing of aluminum titanium tailored blanks [J]. Optics and Lasers in Engineering, 2005, 43(9) : 1021 - 1035.
  • 8Kreimeyer M, Wagner F, Sepold G. Joining aluminium alloys with titanimn with the use of a Nd: YAG laser system[J]. Laser Opto, 2001, 33(1): 31-33.
  • 9Jeon Min-kyu, Kim Weon-bae, Han Guk-chan, et al. A study on heat flow and temperature monitoring in the laser brazing of a pin-to-plate joint [J]. Journal of Material Processing Technology, 1998; 82( 1 -3): 53-60.
  • 10Park J S, Na S J. Heat transfer in a stud-to-plate laser braze considering filler metal movement [J]. Welding Journal, 1998, 77(4) : 155s - 163s.

共引文献65

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  • 1王星星,龙伟民,裴夤崟,黄成志,程亚芳,吕登峰.异种材料超声波钎焊连接的研究现状[J].焊接技术,2013,42(6):1-6. 被引量:5
  • 2孙军浩,曹睿,陈剑虹.铝/钛异种金属冷金属过渡熔钎焊接头分析[J].焊接学报,2015,36(3):51-54. 被引量:9
  • 3白建红,傅莉,杜随更.钛合金/纯铝异种金属摩擦焊接工艺[J].焊接学报,2006,27(11):50-52. 被引量:18
  • 4Y.C. Chen,K. Nakata.Microstructural characterization and mechanical properties in friction stir welding of aluminum and titanium dissimilar alloys[J]. Materials and Design . 2008 (3)
  • 5K. Faller,F. H. (Sam) Froes.The use of titanium in family automobiles: Current trends[J]. JOM . 2001 (4)
  • 6Rendigs K.H..Aluminium Structures Used in Aerospace - Status and Prospects-[J]. Materials Science Forum . 1997 (242)
  • 7Taban E, Could J E and Lippold J C. Dissimilarfriction welding of 6061-T6 aluminum and A ISI 1018 steel: properties and micro- structural characterization[ J]. Materials and Design, 2010, 31 (5) : 2305 -2311.
  • 8Takemoto T, Nakamura H, Okamoto I. Vacuumbrazing of Al/Ti Joints with aluminum filler metals [ J ]. Journal of Japan Institute of Light Metals, 1986, 36( 10): 627-632.
  • 9Chen Y B, Chen S H, Li L Q. Influence ofinterfacial reaction layer morphologies oncrack initiation and propagation in Ti/AI joint by laser welding-brazing [ J ]. Materials and Design, 2010, 31 ( 1 ) : 227 - 233.
  • 10Sujata M, Bhargava S, Sangal S. On the formation of TiA13 dur- ing reaction between solid Ti and liquid AI[ J]. Journal of Materi- als Science Letters, 1997, 16(13): 1175-1178.

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