Abstract

In this paper, La2O3-B2O3-CaO (LBC) glass ceramics were sintered at low temperature to density BaTi4O9 (BT4) microwave dielectric ceramics. The effects of composition ratio and sintering temperature on the micromorphology, phase composition and microwave dielectric properties of LBC/BT4 multiphase ceramics were investigated. Experimental results showed that LBC microcrystalline glass and BT4 happened between the ceramic interface reaction obviously, and with the increase of microcrystalline glass content and sintering temperature increases, density, dielectric constant epsilon εr value and the quality factor Qf value were increased after the first decrease. And the resonant frequency temperature coefficient of τf value with the increase of LBC content decreases, and with the increase of sintering temperature, it goes up and then it goes down. When the content of LBC glass ceramics is 50 wt%, LBC/BT4 multiphase ceramics sintered at 875 °C for 2 h have good microwave dielectric properties εr = 26, Qf = 8000 GHz, τf; = +150 ppm/°C.

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