Dielectric and piezoelectric properties of low-temperature sintered lead zirconate titanate ceramics with 0.78PbO-0.22CuO flux addition

Պահպանված է:
Մատենագիտական մանրամասներ
Հրատարակված է:Metals and Materials International vol. 18, no. 6 (Dec 2012), p. 1067
Հիմնական հեղինակ: Kim, Baek Hyun
Այլ հեղինակներ: Park, Jong Hoon, Kim, Byungkyu, Kwon, Do-kyun
Հրապարակվել է:
Springer Nature B.V.
Առցանց հասանելիություն:Citation/Abstract
Full Text
Full Text - PDF
Ցուցիչներ: Ավելացրեք ցուցիչ
Չկան պիտակներ, Եղեք առաջինը, ով նշում է այս գրառումը!

MARC

LEADER 00000nab a2200000uu 4500
001 1197182377
003 UK-CbPIL
022 |a 1598-9623 
022 |a 2005-4149 
022 |a 1225-9438 
024 7 |a 10.1007/s12540-012-6022-3  |2 doi 
035 |a 1197182377 
045 2 |b d20121201  |b d20121231 
084 |a 138056  |2 nlm 
100 1 |a Kim, Baek Hyun 
245 1 |a Dielectric and piezoelectric properties of low-temperature sintered lead zirconate titanate ceramics with 0.78PbO-0.22CuO flux addition 
260 |b Springer Nature B.V.  |c Dec 2012 
513 |a Feature 
520 3 |a   Liquid phase sintering of lead zirconate titanate (abbreviated as PZT) ceramics with a 0.78 PbO-0.22 CuO (10:1 in weight ratio) flux was investigated. A small amount sintering flux consisting of a stoichiometrically mixed oxide of PbO-CuO with a eutectic composition successfully accelerated densification of the PZT ceramics far below the conventional sintering temperature. With the 3 wt% flux additions, full densifications of the PZT ceramics were achieved at temperatures as low as 825 °C. The results obtained in the crystal structure, microstructure, and electrical property analyses suggest that the Cu^sup 2+^ impurity ion substitutes as an acceptor center for the perovskite B-site without forming isolated secondary phases. Defect associates of the Cu^sup 2+^ impurities and charge compensating oxygen vacancies appear to affect dielectric and piezoelectric properties of the sintered PZT samples in both positive and negative ways by forming defect dipoles. When the Cu^sup 2+^ content is small, slightly improved dielectric and piezoelectric performances were achieved, though ferroelectric relaxation was obviously developed at the higher Cu^sup 2+^ contents. For the PZT samples sintered at 825 °C with 3 wt% flux addition, relative dielectric permittivity was 2200 and dielectric loss was less than 2%. Remnant polarization, coercive fields, and piezoelectric coefficient (d^sub 33^) were 32 μC/cm^sup 2^, 8.9 kV/cm and 373 pC/N, respectively.[PUBLICATION ABSTRACT] 
700 1 |a Park, Jong Hoon 
700 1 |a Kim, Byungkyu 
700 1 |a Kwon, Do-kyun 
773 0 |t Metals and Materials International  |g vol. 18, no. 6 (Dec 2012), p. 1067 
786 0 |d ProQuest  |t Materials Science Database 
856 4 1 |3 Citation/Abstract  |u https://www.proquest.com/docview/1197182377/abstract/embedded/ZKJTFFSVAI7CB62C?source=fedsrch 
856 4 0 |3 Full Text  |u https://www.proquest.com/docview/1197182377/fulltext/embedded/ZKJTFFSVAI7CB62C?source=fedsrch 
856 4 0 |3 Full Text - PDF  |u https://www.proquest.com/docview/1197182377/fulltextPDF/embedded/ZKJTFFSVAI7CB62C?source=fedsrch