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Vacuum brazing TiAl intermetallic to K4169 alloy using amorphous filler metals Ti56.25–xZrxNi25Cu18.75.

Authors :
Zhang, Liangliang
Dong, Honggang
Li, Peng
Li, Shuai
Wu, Baosheng
Ma, Yueting
Huang, Libing
Li, Chao
Li, Jiachen
Yang, Yuesen
Source :
Journal of Materials Science & Technology; Aug2023, Vol. 154, p217-231, 15p
Publication Year :
2023

Abstract

• Novel Ti-Ni-based amorphous filler metals were designed based on a cluster-plus-glue-atom model. • TiAl intermetallic was vacuum brazed to K4169 alloy with Ti 56.25- x Zr x Ni 25 Cu 18.75 filler metals. • The relationship between the interfacial lattice structure and the fracture behavior, and the impact of Zr content on the interfacial microstructure and shear strength of joints, was examined. • A gradient transition layer with a semi-coherent lattice interface structure was observed. • The shear strength of joint reached 288 MPa as Zr content increased in filler metal. A series of Ti 56.25– x Zr x Ni 25 Cu 18.75 (x = 0–25, at.%) filler metals were designed based on a cluster-plus-glue-atom model to vacuum braze TiAl intermetallic to K4169 alloy. The impact of Zr content on the interfacial microstructure and shear strength of joints was examined. And the relationship between the interfacial lattice structure and the fracture behavior of the joint was investigated. The findings reveal a sectionalized characteristic with three reaction zones (Zone I, Zone II and Zone III) in the microstructure of the TiAl intermetallic to K4169 alloy joint. As the Zr content in filler metals increased, the diffusion of Ti transitioned from long-distance to short-distance in Zone I, changing the initial composition from TiNi 3 /TiNi/NiNb/(Cr, Fe, Ni) SS to NiCrFe/(Cr, Fe, Ni) SS /TiNi. In Zone II, the initial composition altered from TiNi 3 /TiNi to TiNi/Ti 2 Ni/TiNi 3 /TiCu/TiNi. The interface between Zones II and III altered from a non-coherent and semi-coherent interface of TiNi/TiAl/Ti 3 Al with significant residual stress to a semi-coherent interface of TiNi/TiNi 3 /TiAl 2 /Ti 3 Al with a gradient distribution. The shear strength of the joint initially decreased and then increased. When the Zr content of filler metal was 25 at.%, the shear strength of the joint reached 288 MPa. The crack initiation position changed from non-coherent TiNi/TiAl interface with high angle grain boundaries (HAGBs) and lattice mismatch of 65.86 at.% to a semi-coherent Ti 3 Al/TiAl 2 interface with a lattice mismatch of 20.07 at.% when the Zr content increased. The brittle fracture was present on the fracture surfaces of all brazed joints. [Display omitted] [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10050302
Volume :
154
Database :
Supplemental Index
Journal :
Journal of Materials Science & Technology
Publication Type :
Periodical
Accession number :
164134974
Full Text :
https://doi.org/10.1016/j.jmst.2022.12.073