首页|(163101)A novel (l-x)MgZr_(0.85)Sn_(0.15)Nb_2O_8-xBa_3Ti_4Nb_4O_(21) microwave dielectric composite ceramic with near-zero temperature coefficient

(163101)A novel (l-x)MgZr_(0.85)Sn_(0.15)Nb_2O_8-xBa_3Ti_4Nb_4O_(21) microwave dielectric composite ceramic with near-zero temperature coefficient

扫码查看
A novel temperature stable (l-x)MgZr_(0.85)Sn_(0.15)Nb_2O_8-xBa_3Ti_4Nb_4O_(21) -2wt% BaCu(B_2O_5) (MZSN-BTN-BCB, x = 0.12, 0.14, 0.15, 0.16, 0.18 in molar) composite ceramic was fabricated via a conventional solid-state reaction method. MZSN and BTN phase can coexist in the sintered ceramics due to the different crystal structures from the results of X-Ray diffraction and scanning electron microscopy. The sintering temperature and phase composition are especially relevant to the microwave dielectric properties. The optimal sintering temperature of MZSN-BTN ceramics was successfully reduced to 1125 °C due to the formation of BCB liquid phase. The temperature coefficient of the resonant frequency was successfully adjusted to near zero by adding an appropriate amount of BTN due to its opposite-sign τf value. Excellent microwave dielectric properties of er = 33, Q×f= 53,950 GHz (at 6.079 GHz), τf = -4.3 ppm/°C were obtained in 0.88MZSN-0.12BTN-2 wt% BCB composite ceramics when sintered at 1125 °C for 4 h.

Solid-state reaction methodComposite ceramicMicrowave dielectric propertiesTemperature coefficient

Lei He、Ruzhong Zuo

展开 >

School of Materials Science and Engineering, Hefei University of Technology, Hefei 230009, PR China

School of Materiab Science and Engineering, Anhui Polytechnic University, Wuhu 24W00, PR China

2022

Journal of Alloys and Compounds

Journal of Alloys and Compounds

EISCI
ISSN:0925-8388
年,卷(期):2022.896
  • 5
  • 36