JING Yongjuan, LIU Ye, SHANG Yonglai, LI Sisi, ZHANG Yuanwei. Research on Filler Design and Interface Microstructure for Brazing γ–TiAl Alloys[J]. Aeronautical Manufacturing Technology, 2024, 67(8): 105-109.
JING Yongjuan, LIU Ye, SHANG Yonglai, LI Sisi, ZHANG Yuanwei. Research on Filler Design and Interface Microstructure for Brazing γ–TiAl Alloys[J]. Aeronautical Manufacturing Technology, 2024, 67(8): 105-109. DOI: 10.16080/j.issn1671-833x.2024.08.105.
Al 相,但其塑性较好且硬度适中,因此有利于基体与界面之间力的传递和接头韧性。对接接头抗拉强度在室温下达到517 MPa,强度系数0.816。
Abstract
γ–TiAl alloy is a kind of intermetallic compound material with great application potential. It was brazed by the designed filler as Ti–15.6Zr–11.0Cu–9.8Ni (mass fraction
%). The microstructure and element distribution of the joint were analyzed. The microhardness and strength of the joint were tested. It was found that the diffusion of Al to the interface was the main driving force for the formation of the interface. The Zr
Cu and Ni elements in the filler metal are mainly concentrated in the center of the adjacent interface. Due to the coarse grain structure and the high hardness of the grid structure
brazing fracture happened in the central part of the adjacent interface. Although there is a continuous Ti
3
Al phase near the interface
its excellent plasticity and the moderate hardness
were beneficial to transfer the force between the matrix and the interface. Thus this phase was benefit for the toughness of the joint. The tensile strength of joint reaches to 517 MPa at room temperature