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首页> 外文期刊>Journal of the European Ceramic Society >Sintering temperature effect on microstructure, electrical properties and temperature stability of MnO-modified KNN-based ceramics
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Sintering temperature effect on microstructure, electrical properties and temperature stability of MnO-modified KNN-based ceramics

机译:烧结温度效应MNO改性KNN陶瓷的微观结构,电性能和温度稳定性

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Lead-free 0.955K(0.5)Na(0.5)NbO(3)-0.045Bi(0.5)Na(0.5)ZrO(3) + 0.6%MnO (KNN-0.045BNZ + Mn0.6) ceramics have been prepared by a conventional solid-state sintering method in air. All the samples sintered at different temperatures possess a coexisting phase boundary (CPB) between rhombohedral (R) phase and tetragonal (T) phase. The increase of sintering temperature (T-s) increases the phase fraction of T phase in CPB region. Mn2+, Mn3+ and Mn4+ ions coexist in all the KNN-0.045BNZ + Mn0.6 ceramics sintered at 1110 degrees C to 1190 degrees C. High sintering temperature can induce a transformation from Mn-Nb" defects to Mn-Nb' defects. The samples with fine grain show stable octahedral structure. The KNN-0.045BNZ + Mn0.6 ceramics with fine grain possess excellent temperature stability of d(33)* due to the wide phase transition region. The increase of sintering temperature induces the (R-T) phase transition temperature to move to room temperature.
机译:无铅0.955K(0.5)Na(0.5)NBO(3)-0.045BI(0.5)Na(0.5)ZrO(3)+ 0.6%MNO(KNN-0.045BNZ + MN0.6)陶瓷已由A制备 空气中常规固态烧结方法。 在不同温度下烧结的所有样品具有菱形(R)相和四边形(T)相之间的共存相边界(CPB)。 烧结温度(T-S)的增加增加了CPB区域中T相的相位数。 Mn2 +,Mn3 +和Mn4 +离子在所有KnN-0.045Bnz + Mn0.6陶瓷中共存,烧结在1110℃至1190摄氏度下烧结。高烧结温度可以诱导Mn-Nb“缺陷到Mn-Nb”缺陷的转化。该 具有细晶粒的样品显示稳定的八面体结构。具有细粒的KNN-0.045bnz + Mn0.6陶瓷具有由于宽期过渡区域而具有优异的D(33)*的温度稳定性。烧结温度的增加诱导(RT) 相变温度移动到室温。

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