Electrical properties of Al–ZrMgMo3O12 with controllable thermal expansion
Electrical properties of Al–ZrMgMo3O12 with controllable thermal expansion
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DOI:
10.1016/j.ceramint.2014.10.048
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发表时间:
2015-03
影响因子:
5.2
通讯作者:
Xiao Xiao-Xiao;Zhou Wenjin;Xiansheng Liu;M. Chao;L. Yucheng;Niu Zhang;Yaming Liu;Lin Yuxiang;Dongsheng Feng;E. Liang
中科院分区:
文献类型:
--
作者:
Xiao Xiao-Xiao;Zhou Wenjin;Xiansheng Liu;M. Chao;L. Yucheng;Niu Zhang;Yaming Liu;Lin Yuxiang;Dongsheng Feng;E. Liang
Al–ZrMgMo3O12composites samples were prepared by the solid state method. The crystal phase and microstructure of the composites were analyzed by X-ray diffraction (XRD) and scanning electron microscopy (SEM). The XRD patterns show two phases of Al and ZrMgMo3O12. The SEM images show the microstructures of the ceramics containing particles of ZrMgMo3O12and blocks of Al–ZrMgMo3O12. The ratio of particles to blocks changed on adjusting the mass ratio of Al:ZrMgMo3O12, consequently changing the coefficient of thermal expansion (CTE) and the electrical properties of the composites. When the mass ratio of Al:ZrMgMo3O12is 2:8 the CTE is 0.77×10−6K−1(room temperature to 673 K), which corresponds to a near-zero thermal expansion dielectric material. For Al–ZrMgMo3O12composite with mass ratio of 6:4, the CTE (8.72×10−6K−1) is reduced to one-third of that of Al (23.79×10−6K−1) and the impedance is decreased to 7.68 Ω. The conductivity change of Al–ZrMgMo3O12composites can be attributed to the conductive percolation phenomenon, resulting from the presence of large mixed blocks of Al–ZrMgMo3O12among the particles of ZrMgMo3O12.