TY - JOUR
T1 - Preparation of (1-x) wt% (Mg0.4Zn0.6)2SiO4-x wt% CaTiO3 composite ceramics and microstrip antenna application design
AU - Zhang, Miao
AU - Liu, Xiangchun
AU - Zhang, Kai
AU - Wei, Ziyao
AU - Liu, Zhongsheng
AU - Jiang, Weibo
AU - Chen, Danni
AU - Guan, Jiayan
AU - Zhang, Hanbi
AU - Wang, Jiahui
AU - Liu, Jiahao
AU - Gao, Feng
N1 - Publisher Copyright:
© 2025 Elsevier B.V.
PY - 2025/11
Y1 - 2025/11
N2 - In this paper, (1-x) wt% (Mg0.4Zn0.6)2SiO4-x wt% CaTiO3 composite ceramics were prepared by the solid-phase method. Adding CaTiO3 reduces the sintering temperature of the ceramics, and the resonance frequency temperature coefficient of the composite ceramics can be brought close to 0 value by adjusting the x value in the (1-x) wt% (Mg0.4Zn0.6)2SiO4-x wt% CaTiO3 composite ceramics. When the sintering temperature was 1175 °C, the 95 wt% (Mg0.4Zn0.6)2SiO4-5 wt% CaTiO3 composite ceramics had the largest bulk density and relatively good dielectric (1 MHz) properties and microwave dielectric properties: ρ = 3.70 g/cm3, tanδ = 8.97 × 10−4, εr = 8.79, Q × f = 8959 GHz, and τf = −17.95 ppm/oC. A microstrip patch antenna is designed. The simulation results show that the S11 parameter is −26.20 dB, the antenna gain is 5.50 dB, and the radiation efficiency is about 91.4 % when the resonant frequency is 2.45 GHz.
AB - In this paper, (1-x) wt% (Mg0.4Zn0.6)2SiO4-x wt% CaTiO3 composite ceramics were prepared by the solid-phase method. Adding CaTiO3 reduces the sintering temperature of the ceramics, and the resonance frequency temperature coefficient of the composite ceramics can be brought close to 0 value by adjusting the x value in the (1-x) wt% (Mg0.4Zn0.6)2SiO4-x wt% CaTiO3 composite ceramics. When the sintering temperature was 1175 °C, the 95 wt% (Mg0.4Zn0.6)2SiO4-5 wt% CaTiO3 composite ceramics had the largest bulk density and relatively good dielectric (1 MHz) properties and microwave dielectric properties: ρ = 3.70 g/cm3, tanδ = 8.97 × 10−4, εr = 8.79, Q × f = 8959 GHz, and τf = −17.95 ppm/oC. A microstrip patch antenna is designed. The simulation results show that the S11 parameter is −26.20 dB, the antenna gain is 5.50 dB, and the radiation efficiency is about 91.4 % when the resonant frequency is 2.45 GHz.
KW - (1-x) wt% (MgZn)SiO-x wt% CaTiO
KW - Microstrip patch antenna
KW - Microwave dielectric properties
KW - Sintering temperature
UR - http://www.scopus.com/inward/record.url?scp=105007300868&partnerID=8YFLogxK
U2 - 10.1016/j.mseb.2025.118490
DO - 10.1016/j.mseb.2025.118490
M3 - 文章
AN - SCOPUS:105007300868
SN - 0921-5107
VL - 321
JO - Materials Science and Engineering: B
JF - Materials Science and Engineering: B
M1 - 118490
ER -