TY - JOUR
T1 - Designing a low-melting Sn6Ag7Ni4Co2Ti high entropy alloy filler to optimize microstructure and mechanical properties of Ti3SiC2/Cu joint
AU - Nai, Xin
AU - Chen, Haiyan
AU - Zhao, Shuai
AU - Wang, Qian
AU - Li, Wenya
N1 - Publisher Copyright:
© 2022
PY - 2023/2
Y1 - 2023/2
N2 - Brazing Ti3SiC2 ceramic to pure copper can expand their practical applications, but excessive brittle intermetallic in the joint is harmful to mechanical properties of joint. The key to acquire a high-quality brazed joint is to control the microstructure in brazing seam and diffusion reaction zone at Ti3SiC2 ceramic side. Herein, Sn6Ag7Ni4Co2Ti low-melting high entropy alloy was fabricated and brazed to acquire a defect-free Ti3SiC2/Cu brazed joint. Through careful characterizations of the interfacial reaction products, the influence of novel HEA filler was clarified. The high-entropy effect and hysteresis effect of HEA filler effectively reduced the rate of atomic, and metallurgical reaction was also slowed down, which is beneficial to maintain a simple interface structure. The interface of Ti3SiC2/Cu joint brazed with Sn6Ag7Ni4Co2Ti HEA filler is mainly composed of Ag (s, s), Cu (s, s), Cu3Sn and FCC-base solid solution. Due to the thin diffusion reaction zone and solid solution, the maximum shear strength of 60.55 ± 3.45 MPa was achieved when the joint was brazed at 1000 °C for 10 min. This is 34.85% more than the joint brazed with Ag-26.7Cu-4.5Ti filler under its optimal brazing parameter.
AB - Brazing Ti3SiC2 ceramic to pure copper can expand their practical applications, but excessive brittle intermetallic in the joint is harmful to mechanical properties of joint. The key to acquire a high-quality brazed joint is to control the microstructure in brazing seam and diffusion reaction zone at Ti3SiC2 ceramic side. Herein, Sn6Ag7Ni4Co2Ti low-melting high entropy alloy was fabricated and brazed to acquire a defect-free Ti3SiC2/Cu brazed joint. Through careful characterizations of the interfacial reaction products, the influence of novel HEA filler was clarified. The high-entropy effect and hysteresis effect of HEA filler effectively reduced the rate of atomic, and metallurgical reaction was also slowed down, which is beneficial to maintain a simple interface structure. The interface of Ti3SiC2/Cu joint brazed with Sn6Ag7Ni4Co2Ti HEA filler is mainly composed of Ag (s, s), Cu (s, s), Cu3Sn and FCC-base solid solution. Due to the thin diffusion reaction zone and solid solution, the maximum shear strength of 60.55 ± 3.45 MPa was achieved when the joint was brazed at 1000 °C for 10 min. This is 34.85% more than the joint brazed with Ag-26.7Cu-4.5Ti filler under its optimal brazing parameter.
KW - Brazing
KW - Ceramics
KW - High entropy alloy
KW - Mechanical properties
KW - Microstructure
UR - https://www.scopus.com/pages/publications/85144062401
U2 - 10.1016/j.matchar.2022.112573
DO - 10.1016/j.matchar.2022.112573
M3 - 文章
AN - SCOPUS:85144062401
SN - 1044-5803
VL - 196
JO - Materials Characterization
JF - Materials Characterization
M1 - 112573
ER -