Low Temperature Sintering of Hexagonal Barium Titanate

碩士 === 國立臺北科技大學 === 資源工程研究所 === 96 === For the widespread commercialization of satellite communications today and in view of its future advancement, cell phone must become miniaturized and light weight, so the development of low temperature co-fired ceramic of high dielectric constant has become mor...

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Main Authors: Yu-Jung Liu, 劉又蓉
Other Authors: 王錫福
Format: Others
Language:zh-TW
Published: 2008
Online Access:http://ndltd.ncl.edu.tw/handle/t3uzt5
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spelling ndltd-TW-096TIT053970042019-07-19T03:36:20Z http://ndltd.ncl.edu.tw/handle/t3uzt5 Low Temperature Sintering of Hexagonal Barium Titanate 六方晶鈦酸鋇之低溫燒結 Yu-Jung Liu 劉又蓉 碩士 國立臺北科技大學 資源工程研究所 96 For the widespread commercialization of satellite communications today and in view of its future advancement, cell phone must become miniaturized and light weight, so the development of low temperature co-fired ceramic of high dielectric constant has become more important. Barium titanate, BaTiO3 has many kinds of crystal structures; few researchers to date have focused on a high-temperature hexagonal polymorph (h-BaTiO3).In this study, traditional solid-state reaction method was used to incorporate Mn dopant (x=0.15) to stabilize hexagonal BaTiO3 and then mix different aids to reduce the sintering temperature and still retain the best microwave dielectric properties. So, the microstructures and properties of the Ba(Ti1-xMnx)O3 samples are analyzed by measuring dielectric parameters, XRD and SEM . The results show that Bi2O3, B2O3, Li2CO3 and (5ZnO•2B2O3) can effectively reduce the sintering temperature and keep the main phase as hexagonal. Good microwave dielectric properties of εr = 54.4, Q • f =3448 GHz and τf =254.5 ppm/℃can be obtained for 10wt% B2O3 doped Ba(Ti0.85Mn0.15)O3 ceramics sintered at 1100℃ for 2h. 王錫福 王玉瑞 2008 學位論文 ; thesis 111 zh-TW
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description 碩士 === 國立臺北科技大學 === 資源工程研究所 === 96 === For the widespread commercialization of satellite communications today and in view of its future advancement, cell phone must become miniaturized and light weight, so the development of low temperature co-fired ceramic of high dielectric constant has become more important. Barium titanate, BaTiO3 has many kinds of crystal structures; few researchers to date have focused on a high-temperature hexagonal polymorph (h-BaTiO3).In this study, traditional solid-state reaction method was used to incorporate Mn dopant (x=0.15) to stabilize hexagonal BaTiO3 and then mix different aids to reduce the sintering temperature and still retain the best microwave dielectric properties. So, the microstructures and properties of the Ba(Ti1-xMnx)O3 samples are analyzed by measuring dielectric parameters, XRD and SEM . The results show that Bi2O3, B2O3, Li2CO3 and (5ZnO•2B2O3) can effectively reduce the sintering temperature and keep the main phase as hexagonal. Good microwave dielectric properties of εr = 54.4, Q • f =3448 GHz and τf =254.5 ppm/℃can be obtained for 10wt% B2O3 doped Ba(Ti0.85Mn0.15)O3 ceramics sintered at 1100℃ for 2h.
author2 王錫福
author_facet 王錫福
Yu-Jung Liu
劉又蓉
author Yu-Jung Liu
劉又蓉
spellingShingle Yu-Jung Liu
劉又蓉
Low Temperature Sintering of Hexagonal Barium Titanate
author_sort Yu-Jung Liu
title Low Temperature Sintering of Hexagonal Barium Titanate
title_short Low Temperature Sintering of Hexagonal Barium Titanate
title_full Low Temperature Sintering of Hexagonal Barium Titanate
title_fullStr Low Temperature Sintering of Hexagonal Barium Titanate
title_full_unstemmed Low Temperature Sintering of Hexagonal Barium Titanate
title_sort low temperature sintering of hexagonal barium titanate
publishDate 2008
url http://ndltd.ncl.edu.tw/handle/t3uzt5
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