TY - JOUR
T1 - Tailoring the thermal conductivity and mechanical properties of gas pressure sintered Si3N4 ceramics by changing nitrogen pressure
AU - Deng, Kang
AU - Hu, Jiabin
AU - Wei, Zhilei
AU - Zhang, Biao
AU - Wang, Laili
AU - Yang, Jianfeng
AU - Shi, Zhongqi
N1 - Publisher Copyright:
© 2025 Elsevier Ltd and Techna Group S.r.l.
PY - 2025/9
Y1 - 2025/9
N2 - Tailoring the multi-physical properties of silicon nitride (Si3N4) ceramics is important for their application in power device packaging. To achieve this goal, herein, dense Si3N4 was prepared via gas pressure sintering (GPS), and the thermal and mechanical properties were successfully tailored by changing the nitrogen (N2) pressure. The effects of N2 pressure on the composition, linear shrinkage, microstructure, thermal conductivity and mechanical properties were systematically explored. The increasing N2 pressure elevated the N/O ratio in the intergranular phase and reduced the β-Si3N4 grain size and aspect ratio. The near-full relative density for the Si3N4 ceramics was realized at 2 MPa or above. A splendid combination of high thermal conductivity (>79.40 W m−1 K−1), flexural strength (>890 MPa) and fracture toughness (>6.60 MPa m1/2) was achieved for the Si3N4 ceramics prepared under 2–4 MPa N2 pressure. The results provide a facile method for regulating the multi-physical properties of Si3N4.
AB - Tailoring the multi-physical properties of silicon nitride (Si3N4) ceramics is important for their application in power device packaging. To achieve this goal, herein, dense Si3N4 was prepared via gas pressure sintering (GPS), and the thermal and mechanical properties were successfully tailored by changing the nitrogen (N2) pressure. The effects of N2 pressure on the composition, linear shrinkage, microstructure, thermal conductivity and mechanical properties were systematically explored. The increasing N2 pressure elevated the N/O ratio in the intergranular phase and reduced the β-Si3N4 grain size and aspect ratio. The near-full relative density for the Si3N4 ceramics was realized at 2 MPa or above. A splendid combination of high thermal conductivity (>79.40 W m−1 K−1), flexural strength (>890 MPa) and fracture toughness (>6.60 MPa m1/2) was achieved for the Si3N4 ceramics prepared under 2–4 MPa N2 pressure. The results provide a facile method for regulating the multi-physical properties of Si3N4.
KW - Mechanical properties
KW - Nitrogen pressure
KW - Silicon nitride
KW - Thermal conductivity
UR - https://www.scopus.com/pages/publications/105008152557
U2 - 10.1016/j.ceramint.2025.06.156
DO - 10.1016/j.ceramint.2025.06.156
M3 - 文章
AN - SCOPUS:105008152557
SN - 0272-8842
VL - 51
SP - 39182
EP - 39192
JO - Ceramics International
JF - Ceramics International
IS - 23
ER -