DocumentCode
965531
Title
Energy Loss in Nonpolar State Polycrystalline Barium Titanate
Author
Marks, Graham W. ; Skaar, Donald L.
Author_Institution
Naval Undersea Research and Dev. Center
Volume
6
Issue
3
fYear
1970
fDate
9/1/1970 12:00:00 AM
Firstpage
110
Lastpage
118
Abstract
Two procedures, based on the Lissajous figure as observed on the screen of an oscilloscope, are described for the determination of electrical energy loss in dielectrics, particularly at higher temperatures. These procedures were employed to determine the losses in nonpolar state ceramic barium titanate within the temperature region 150°-550°C and over the frequency range 20 Hz50 kHz. The first procedure was used at a fixed frequency of 60 Hz and at relatively high field strengths. It was found that the loss L in microcalories per gram per cycle at fixed temperature and variable field strength E is given by the relation L = a2 E2 + a4E4 where a2 and a4 are constants. At low field strengths the second term can be neglected. Coefficients a2 and a4 vary exponentially with the reciprocal of the Kelvin temperature. Using the second procedure at comparatively low field strengths for loss determination, interfacial polarization was observed from 200° to 400°C as shown by a sharp rise in the index e" with decrease in frequency and by an inflection in each e" versus f curve at constant temperature. It was found that the Maxwell-Wagner equation for a two-layer condenser describes the phenomenon provided that the exponent of f is 0.89 rather than unity, the concordance between calculated and observed values of e" then being quite good.
Keywords
Barium; Ceramics; Dielectric losses; Energy loss; Frequency; Kelvin; Oscilloscopes; Polarization; Temperature distribution; Titanium compounds;
fLanguage
English
Journal_Title
Parts, Materials and Packaging, IEEE Transactions on
Publisher
ieee
ISSN
0018-9502
Type
jour
DOI
10.1109/TPMP.1970.1136261
Filename
1136261
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