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首页> 外文期刊>Physica, B. Condensed Matter >Microwave-assisted sintering of non-stoichiometric strontium bismuth niobate ceramic: Structural and dielectric properties
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Microwave-assisted sintering of non-stoichiometric strontium bismuth niobate ceramic: Structural and dielectric properties

机译:非化学计量铌酸铋铋陶瓷的微波辅助烧结:结构和介电性能

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In recent years the microwave sintering has been utilized for the synthesis of materials in enhancement of the properties. In this paper strontium bismuth niobate (Sr0.8Bi2.2Nb2O9:SBN) bulk ceramic has been synthesized by microwave reactive sintering and conventional heating techniques. A relative density of 99.6% has been achieved for microwave sintered SBN, which is higher than that of (98.81%) conventionally sintered SBN. The phase formation of SBN synthesized by both processes has been confirmed by X-ray diffraction (XRD). The surface morphology of SBN was observed by scanning electron microscopy (SEM). The microstructure was found to be more uniform in case of SBN sintered by microwave sintering. The dielectric properties of SBN were studied as a function of frequency in the temperature range of 30-500 degrees C. Both the samples synthesized by two different processes were found to follow Curie Weiss law above the transition temperature. The Curie temperature was found to be higher for microwave sintered SBN. The dielectric constant and the transition temperature were observed to be higher for SBN ceramic synthesized by microwave sintering technique. The ac and dc activation energy values were also found to be higher for microwave sintered SBN as compared to conventional sintering technique. (C) 2016 Elsevier B.V. All rights reserved.
机译:近年来,微波烧结已用于增强性能的材料合成中。本文通过微波反应烧结和常规加热技术合成了铌酸锶铋(Sr0.8Bi2.2Nb2O9:SBN)块状陶瓷。微波烧结SBN的相对密度达到了99.6%,高于常规烧结SBN的相对密度(98.81%)。通过两种方法合成的SBN的相形成已通过X射线衍射(XRD)得以证实。通过扫描电子显微镜(SEM)观察到SBN的表面形态。发现通过微波烧结对SBN进行烧结时,其微观结构更加均匀。在30-500摄氏度的温度范围内研究了SBN的介电特性随频率的变化。发现通过两种不同方法合成的两个样品均在转变温度以上遵循居里·韦斯定律。发现微波烧结SBN的居里温度更高。通过微波烧结技术合成的SBN陶瓷的介电常数和转变温度较高。与传统的烧结技术相比,微波烧结SBN的交流和直流活化能值也更高。 (C)2016 Elsevier B.V.保留所有权利。

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