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Microwave Sintering and Microwave Dielectric Properties of (1–

机译:微波烧结和微波介电性能(1-

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摘要

The (1–x)Ca0.61La0.26TiO3-xNd(Mg0.5Ti0.5)O3 [(1–x)CLT-xNMT, x = 0.35~0.60] ceramics were prepared via microwave sintering. The effects of sintering temperature and composition on the phase formation, microstructure, and microwave dielectric properties were investigated. The results show that the microwave sintering process requires a lower sintering temperature and shorter sintering time of (1–x)CLT-xNMT ceramics than conventional heating methods. All of the (1–x)CLT-xNMT ceramics possess a single perovskite structure. With the increase of x, the dielectric constant (ε) shows a downward trend; the quality factor (Qf) drops first and then rises significantly; the resonance frequency temperature coefficient (τf) keeps decreasing. With excellent microwave dielectric properties (ε = 51.3, Qf = 13,852 GHz, τf = −1.9 × 10−6/°C), the 0.65CLT-0.35NMT ceramic can be applied to the field of mobile communications.
机译:通过微波烧结制备(1-X)CaO 0.61La0.26TiO3-XND(Mg0.5Ti0.5)O 3 [(1-x)Clt-XNMT,X = 0.35〜0.60]陶瓷。研究了研究烧结温度和组合物对相形成,微观结构和微波介电性质的影响。结果表明,微波烧结过程需要比常规加热方法更低的烧结温度和较短的烧结时间(1-x)CLT-XNMT陶瓷。所有(1-X)CLT-XNMT陶瓷都具有单个钙钛矿结构。随着X的增加,介电常数(ε)显示下降趋势;质量因子(QF)首先跌落,然后显着升高;共振频率温度系数(τf)不断降低。具有优异的微波介电性能(ε= 51.3,QF = 13,852 GHz,τf= -1.9×10-6 /°C),可以应用于移动通信领域的0.65Clt-0.35nmt陶瓷。

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