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首页> 外文期刊>Journal of the European Ceramic Society >Low firing temperature zinc molybdate ceramics for dielectric and insulation applications
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Low firing temperature zinc molybdate ceramics for dielectric and insulation applications

机译:用于介电和绝缘应用的低烧成温度的钼酸锌陶瓷

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Low temperature firing, non-stoichiometric zinc molybdate (11ZnO-10MoO(3)) dielectric ceramics (NSZM) were prepared by the mixed oxide route with additions of B2O3. All products were sintered at 850-950 degrees C to over 96% theoretical density with co-existence of ZnMoO4 and Zn3Mo2O9 phases. The addition of B2O3 reduced the proportion of Zn3Mo2O9 secondary phase. The relative permittivities of NSZM samples ranged from 9.2 to 11.1; the breakdown strength was between 14.3 and 17.6 kV/mm. Impedance spectroscopy suggested that charge transport in the grain boundary region governed the breakdown strength. NSZM prepared with 1.0 wt% B2O3 exhibited a relative permittivity of 11.1, dielectric strength of 17.6 kV/mm, thermal expansion coefficient of 4.7 ppm/K and thermal conductivity of 1.3 W/(m K). The results indicate that NSZM is a promising candidate for dielectric and high temperature insulation applications. (C) 2015 The Authors. Published by Elsevier Ltd.
机译:通过添加B2O3的混合氧化物途径制备了低温烧成的非化学计量的钼酸锌(11ZnO-10MoO(3))电介质陶瓷(NSZM)。在ZnMoO4和Zn3Mo2O9相共存的情况下,所有产品均在850-950摄氏度下烧结至超过96%的理论密度。 B2O3的添加减少了Zn3Mo2O9第二相的比例。 NSZM样品的相对介电常数为9.2至11.1。击穿强度在14.3和17.6 kV / mm之间。阻抗谱表明,晶界区域中的电荷传输决定了击穿强度。用1.0 wt%B2O3制备的NSZM的相对介电常数为11.1,介电强度为17.6 kV / mm,热膨胀系数为4.7 ppm / K,热导率为1.3 W /(m K)。结果表明,NSZM是介电和高温绝缘应用的有希望的候选者。 (C)2015作者。由Elsevier Ltd.发布

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