Piezoelectric constant for binary piezoelectric 0-3 connectivity composites and the effect of mixed connectivity

Jayasundere, N. ; Smith, B. V. ; Dunn, J. R.

[S.l.] : American Institute of Physics (AIP)
Published 1994
ISSN:
1089-7550
Source:
AIP Digital Archive
Topics:
Physics
Notes:
An analytic expression is presented for the piezoelectric d constant of a binary piezoelectric 0-3 connectivity composite. The expression is developed under the limiting assumption that the dielectric constant of the ceramic is much greater than the matrix. Predictions made using the theory compare very favorably with available experimental data. A 0-3/1-3 mixed connectivity model is also described for composites in which the average piezoceramic particle size is a significant fraction of the thickness of the composite.
Type of Medium:
Electronic Resource
URL:
_version_ 1798289652016218112
autor Jayasundere, N.
Smith, B. V.
Dunn, J. R.
autorsonst Jayasundere, N.
Smith, B. V.
Dunn, J. R.
book_url http://dx.doi.org/10.1063/1.357546
datenlieferant nat_lic_papers
hauptsatz hsatz_simple
identnr NLZ21854989X
issn 1089-7550
journal_name Journal of Applied Physics
materialart 1
notes An analytic expression is presented for the piezoelectric d constant of a binary piezoelectric 0-3 connectivity composite. The expression is developed under the limiting assumption that the dielectric constant of the ceramic is much greater than the matrix. Predictions made using the theory compare very favorably with available experimental data. A 0-3/1-3 mixed connectivity model is also described for composites in which the average piezoceramic particle size is a significant fraction of the thickness of the composite.
package_name American Institute of Physics (AIP)
publikationsjahr_anzeige 1994
publikationsjahr_facette 1994
publikationsjahr_intervall 8009:1990-1994
publikationsjahr_sort 1994
publikationsort [S.l.]
publisher American Institute of Physics (AIP)
reference 76 (1994), S. 2993-2998
search_space articles
shingle_author_1 Jayasundere, N.
Smith, B. V.
Dunn, J. R.
shingle_author_2 Jayasundere, N.
Smith, B. V.
Dunn, J. R.
shingle_author_3 Jayasundere, N.
Smith, B. V.
Dunn, J. R.
shingle_author_4 Jayasundere, N.
Smith, B. V.
Dunn, J. R.
shingle_catch_all_1 Jayasundere, N.
Smith, B. V.
Dunn, J. R.
Piezoelectric constant for binary piezoelectric 0-3 connectivity composites and the effect of mixed connectivity
An analytic expression is presented for the piezoelectric d constant of a binary piezoelectric 0-3 connectivity composite. The expression is developed under the limiting assumption that the dielectric constant of the ceramic is much greater than the matrix. Predictions made using the theory compare very favorably with available experimental data. A 0-3/1-3 mixed connectivity model is also described for composites in which the average piezoceramic particle size is a significant fraction of the thickness of the composite.
1089-7550
10897550
American Institute of Physics (AIP)
shingle_catch_all_2 Jayasundere, N.
Smith, B. V.
Dunn, J. R.
Piezoelectric constant for binary piezoelectric 0-3 connectivity composites and the effect of mixed connectivity
An analytic expression is presented for the piezoelectric d constant of a binary piezoelectric 0-3 connectivity composite. The expression is developed under the limiting assumption that the dielectric constant of the ceramic is much greater than the matrix. Predictions made using the theory compare very favorably with available experimental data. A 0-3/1-3 mixed connectivity model is also described for composites in which the average piezoceramic particle size is a significant fraction of the thickness of the composite.
1089-7550
10897550
American Institute of Physics (AIP)
shingle_catch_all_3 Jayasundere, N.
Smith, B. V.
Dunn, J. R.
Piezoelectric constant for binary piezoelectric 0-3 connectivity composites and the effect of mixed connectivity
An analytic expression is presented for the piezoelectric d constant of a binary piezoelectric 0-3 connectivity composite. The expression is developed under the limiting assumption that the dielectric constant of the ceramic is much greater than the matrix. Predictions made using the theory compare very favorably with available experimental data. A 0-3/1-3 mixed connectivity model is also described for composites in which the average piezoceramic particle size is a significant fraction of the thickness of the composite.
1089-7550
10897550
American Institute of Physics (AIP)
shingle_catch_all_4 Jayasundere, N.
Smith, B. V.
Dunn, J. R.
Piezoelectric constant for binary piezoelectric 0-3 connectivity composites and the effect of mixed connectivity
An analytic expression is presented for the piezoelectric d constant of a binary piezoelectric 0-3 connectivity composite. The expression is developed under the limiting assumption that the dielectric constant of the ceramic is much greater than the matrix. Predictions made using the theory compare very favorably with available experimental data. A 0-3/1-3 mixed connectivity model is also described for composites in which the average piezoceramic particle size is a significant fraction of the thickness of the composite.
1089-7550
10897550
American Institute of Physics (AIP)
shingle_title_1 Piezoelectric constant for binary piezoelectric 0-3 connectivity composites and the effect of mixed connectivity
shingle_title_2 Piezoelectric constant for binary piezoelectric 0-3 connectivity composites and the effect of mixed connectivity
shingle_title_3 Piezoelectric constant for binary piezoelectric 0-3 connectivity composites and the effect of mixed connectivity
shingle_title_4 Piezoelectric constant for binary piezoelectric 0-3 connectivity composites and the effect of mixed connectivity
sigel_instance_filter dkfz
geomar
wilbert
ipn
albert
source_archive AIP Digital Archive
timestamp 2024-05-06T08:04:14.109Z
titel Piezoelectric constant for binary piezoelectric 0-3 connectivity composites and the effect of mixed connectivity
titel_suche Piezoelectric constant for binary piezoelectric 0-3 connectivity composites and the effect of mixed connectivity
topic U
uid nat_lic_papers_NLZ21854989X