Opening book details…
Can I read High Performance of Low‐Temperature‐Cofired Ceramic with Al 2 O 3 /BN Biphasic Ceramics Based on B 2 O 3 –Bi 2 O 3 –SiO 2 –ZnO Glass on EtoBox?
High Performance of Low‐Temperature‐Cofired Ceramic with Al 2 O 3 /BN Biphasic Ceramics Based on B 2 O 3 –Bi 2 O 3 –SiO 2 –ZnO Glass by Feng, Xiangyan; Lv, Yuanyuan; Zhang, Lan; Ding, Jianjun; Sun, Jun; Li, Xiaoxiao; Chen, Lin; Zheng, Kang; Zhang, Xian; Tian, Xingyou is a Engineering article available to read on EtoBox.
What is High Performance of Low‐Temperature‐Cofired Ceramic with Al 2 O 3 /BN Biphasic Ceramics Based on B 2 O 3 –Bi 2 O 3 –SiO 2 –ZnO Glass about?
With the rapid development of microelectronic information technology, high‐power electronic devices require high heat dissipation. Herein, the preparation of low‐temperature cofired ceramic (LTCC) applications with excellent thermal conductivity and dielectric properties is focused. B~2~O~3~–Bi~2~O~3~–SiO~2~–ZnO (BBSZ) glass/Al~2~O~3~/BN green sheets are prepared by tape casting and sintered at 850 °C. The crystal phase composition, microstructure, thermal conductivity, thermal expansion coefficient, and dielectric properties of LTCC are investigated. It is shown that nanoscale rod crystals ZnAl~2~O~4~ and Bi are formed in the composite. The generated nanoscale rod crystals build a 3D heat conduction channel in the composite. The thermal conductivity of the sintered sheet with 20 wt% BN is 5.165 W m^−1^ K^−1^. The sintered sheet containing 20 wt% BN has a low coefficient of thermal expansion (2.92 ppm °C^−1^) matched well with silicon and excellent dielectric properties (ε~r~ = 3.9672, tan δ = 1.49 × 10^−3^) at 20 GHz. This material has great potential applications in electronic devices.
Who reads High Performance of Low‐Temperature‐Cofired Ceramic with Al 2 O 3 /BN Biphasic Ceramics Based on B 2 O 3 –Bi 2 O 3 –SiO 2 –ZnO Glass?
It is typically read by researchers, students, and practitioners in Engineering.
- Author
- Feng, Xiangyan; Lv, Yuanyuan; Zhang, Lan; Ding, Jianjun; Sun, Jun; Li, Xiaoxiao; Chen, Lin; Zheng, Kang; Zhang, Xian; Tian, Xingyou
- Publisher
- John Wiley and Sons; Wiley (John Wiley & Sons); John Wiley & Sons Ltd.; Wiley (ISSN 1438-1656)
- Published
- 2020
- Language
- EN
- Field
- Engineering (Physical Sciences)