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Induced phase transformations and nature of metastable states in ZTLL ceramics

Abstract

Phase transitions in ZTLL ceramics with zirconium content being 65%, titanium content - 35%, are considered. Peculiarities in the ZTLL behaviour are shown to be caused by the existence of an intermediate range between ferroelectric and antiferroelectric states. The state of samples in the range is determined by their prehistory. It is emphasized that phase transitions in ZTLL can be explained in the framework of the existing models.
Publication Date:
Dec 01, 1987
Product Type:
Conference
Report Number:
CONF-8702150-
Reference Number:
AIX-19-071851; EDB-88-140901
Resource Relation:
Journal Name: Izv. Akad. Nauk SSSR, Ser. Fiz.; (USSR); Journal Volume: 51:12; Conference: 11. All-Union conference on ferroelectric physics, Chernovtsy, USSR, 1 Feb 1987
Subject:
36 MATERIALS SCIENCE; LANTHANUM COMPOUNDS; PHASE TRANSFORMATIONS; TITANATES; ZIRCONATES; ANTIFERROELECTRIC MATERIALS; CERAMICS; FERROELECTRIC MATERIALS; PHASE DIAGRAMS; DIAGRAMS; DIELECTRIC MATERIALS; MATERIALS; OXYGEN COMPOUNDS; RARE EARTH COMPOUNDS; TITANIUM COMPOUNDS; TRANSITION ELEMENT COMPOUNDS; ZIRCONIUM COMPOUNDS; 360202* - Ceramics, Cermets, & Refractories- Structure & Phase Studies
OSTI ID:
7009201
Country of Origin:
USSR
Language:
English
Other Identifying Numbers:
Journal ID: CODEN: IANFA
Submitting Site:
INIS
Size:
Pages: 2254-2259
Announcement Date:
May 13, 2001

Citation Formats

Ishchuk, V M, and Zavadskij, Eh A. Induced phase transformations and nature of metastable states in ZTLL ceramics. USSR: N. p., 1987. Web.
Ishchuk, V M, & Zavadskij, Eh A. Induced phase transformations and nature of metastable states in ZTLL ceramics. USSR.
Ishchuk, V M, and Zavadskij, Eh A. 1987. "Induced phase transformations and nature of metastable states in ZTLL ceramics." USSR.
@misc{etde_7009201,
title = {Induced phase transformations and nature of metastable states in ZTLL ceramics}
author = {Ishchuk, V M, and Zavadskij, Eh A}
abstractNote = {Phase transitions in ZTLL ceramics with zirconium content being 65%, titanium content - 35%, are considered. Peculiarities in the ZTLL behaviour are shown to be caused by the existence of an intermediate range between ferroelectric and antiferroelectric states. The state of samples in the range is determined by their prehistory. It is emphasized that phase transitions in ZTLL can be explained in the framework of the existing models.}
journal = []
volume = {51:12}
place = {USSR}
year = {1987}
month = {Dec}
}