Investigation in Fabrication Process and Electrical Properties of (Na,K)NbO3-based Multi-component Oxide Systems With Perovskite Crystal Structures

碩士 === 義守大學 === 材料科學與工程學系碩士班 === 97 === Sodium and potassium niobate 〈(Na,K)NbO3〉 is currently believed to be one of piezoelectric materials for replacing the lead-containing Pb(Zr,Ti)O3 from environmental concerns. However, there are so many problems for manufacturing (Na,K)NbO3-containing piezoele...

Full description

Bibliographic Details
Main Authors: Shi-xin Su, 蘇世昕
Other Authors: Tzer-Shin Sheu
Format: Others
Language:zh-TW
Published: 2009
Online Access:http://ndltd.ncl.edu.tw/handle/54162168968949320510
id ndltd-TW-097ISU05159033
record_format oai_dc
spelling ndltd-TW-097ISU051590332016-05-04T04:25:44Z http://ndltd.ncl.edu.tw/handle/54162168968949320510 Investigation in Fabrication Process and Electrical Properties of (Na,K)NbO3-based Multi-component Oxide Systems With Perovskite Crystal Structures 以鈮酸鈉鉀為主多元鈣鈦礦氧化物之製備與電性探討 Shi-xin Su 蘇世昕 碩士 義守大學 材料科學與工程學系碩士班 97 Sodium and potassium niobate 〈(Na,K)NbO3〉 is currently believed to be one of piezoelectric materials for replacing the lead-containing Pb(Zr,Ti)O3 from environmental concerns. However, there are so many problems for manufacturing (Na,K)NbO3-containing piezoelectric materials. For example, how to improve its sinterability to further increase its densification is one major task for improving the property of (Na,K)NbO3. Therefore, this research is concentrated on the process improvement of fabricating (Na,K)NbO3 ceramics. There are five different process for sintering (Na,K)NbO3 materials through various initial materials; the first process is obtained from the combinations of Nb2O5 and carbonate salts; the second, Nb2O5 and nitrate solution; the third, Nb2O5 and hydroxide solution; the fourth, nitrate and chloride solutions; the last one, additions of BaTiO3. It is expected that the key points in densification problem of (Na,K)NbO3 can be further solved. From experimental results, it is found: the optimal calcinations temperature in the carbonate system is 950℃; 500℃ in the nitrate system; 500℃ in the hydroxide system; and 350℃ in the nitrate and chloride aqueous solution. Optimal sintering temperature is found to be 1100℃ in the carbonate system; 1050℃ in the nitrate system; 800℃ in the hydroxide system; 1050℃ in the nitrate and chloride aqueous solution; 1050℃ for 0.05% BaTiO3 alloying systems, but 1150℃ for ≧0.10% BaTiO3 alloying systems. As to the densification, the best bulk density of sintering (Na,K)NbO3 ceramics is 3.536g/cm3 in the carbonate system; 3.613g/cm3 in the nitrate system; 2.475g/cm3 in the hydroxide system; but only 3.120g/cm3 in the nitrate and chloride aqueous solution. Overall, from the densification, the nitrate system is found to be the best process for fabricating (Na,K)NbO3 ceramics in this research. Tzer-Shin Sheu 許澤勳 2009 學位論文 ; thesis 96 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 義守大學 === 材料科學與工程學系碩士班 === 97 === Sodium and potassium niobate 〈(Na,K)NbO3〉 is currently believed to be one of piezoelectric materials for replacing the lead-containing Pb(Zr,Ti)O3 from environmental concerns. However, there are so many problems for manufacturing (Na,K)NbO3-containing piezoelectric materials. For example, how to improve its sinterability to further increase its densification is one major task for improving the property of (Na,K)NbO3. Therefore, this research is concentrated on the process improvement of fabricating (Na,K)NbO3 ceramics. There are five different process for sintering (Na,K)NbO3 materials through various initial materials; the first process is obtained from the combinations of Nb2O5 and carbonate salts; the second, Nb2O5 and nitrate solution; the third, Nb2O5 and hydroxide solution; the fourth, nitrate and chloride solutions; the last one, additions of BaTiO3. It is expected that the key points in densification problem of (Na,K)NbO3 can be further solved. From experimental results, it is found: the optimal calcinations temperature in the carbonate system is 950℃; 500℃ in the nitrate system; 500℃ in the hydroxide system; and 350℃ in the nitrate and chloride aqueous solution. Optimal sintering temperature is found to be 1100℃ in the carbonate system; 1050℃ in the nitrate system; 800℃ in the hydroxide system; 1050℃ in the nitrate and chloride aqueous solution; 1050℃ for 0.05% BaTiO3 alloying systems, but 1150℃ for ≧0.10% BaTiO3 alloying systems. As to the densification, the best bulk density of sintering (Na,K)NbO3 ceramics is 3.536g/cm3 in the carbonate system; 3.613g/cm3 in the nitrate system; 2.475g/cm3 in the hydroxide system; but only 3.120g/cm3 in the nitrate and chloride aqueous solution. Overall, from the densification, the nitrate system is found to be the best process for fabricating (Na,K)NbO3 ceramics in this research.
author2 Tzer-Shin Sheu
author_facet Tzer-Shin Sheu
Shi-xin Su
蘇世昕
author Shi-xin Su
蘇世昕
spellingShingle Shi-xin Su
蘇世昕
Investigation in Fabrication Process and Electrical Properties of (Na,K)NbO3-based Multi-component Oxide Systems With Perovskite Crystal Structures
author_sort Shi-xin Su
title Investigation in Fabrication Process and Electrical Properties of (Na,K)NbO3-based Multi-component Oxide Systems With Perovskite Crystal Structures
title_short Investigation in Fabrication Process and Electrical Properties of (Na,K)NbO3-based Multi-component Oxide Systems With Perovskite Crystal Structures
title_full Investigation in Fabrication Process and Electrical Properties of (Na,K)NbO3-based Multi-component Oxide Systems With Perovskite Crystal Structures
title_fullStr Investigation in Fabrication Process and Electrical Properties of (Na,K)NbO3-based Multi-component Oxide Systems With Perovskite Crystal Structures
title_full_unstemmed Investigation in Fabrication Process and Electrical Properties of (Na,K)NbO3-based Multi-component Oxide Systems With Perovskite Crystal Structures
title_sort investigation in fabrication process and electrical properties of (na,k)nbo3-based multi-component oxide systems with perovskite crystal structures
publishDate 2009
url http://ndltd.ncl.edu.tw/handle/54162168968949320510
work_keys_str_mv AT shixinsu investigationinfabricationprocessandelectricalpropertiesofnaknbo3basedmulticomponentoxidesystemswithperovskitecrystalstructures
AT sūshìxīn investigationinfabricationprocessandelectricalpropertiesofnaknbo3basedmulticomponentoxidesystemswithperovskitecrystalstructures
AT shixinsu yǐnǐsuānnàjiǎwèizhǔduōyuángàitàikuàngyǎnghuàwùzhīzhìbèiyǔdiànxìngtàntǎo
AT sūshìxīn yǐnǐsuānnàjiǎwèizhǔduōyuángàitàikuàngyǎnghuàwùzhīzhìbèiyǔdiànxìngtàntǎo
_version_ 1718257064429486080