The pyroelectric coefficients of laminate composites under short circuit condition have been investigated by analytical modeling and numerical simulations. Indicators for various pyroelectric/non-pyroelectric material pairs that can be utilized to determine their pyroelectric coefficient enhancement credentials have been identified. Six pyroelectric materials were paired with six non-pyroelectric/elastic materials and their pyroelectric coefficient enhancement potential and figure of merit for efficiency were investigated. The best performing partnership out of the 36 pairs was lead zirconate titanate (PZT5H)-chlorinated polyvinyl chloride thermoplastic (CPVC) for thickness ratios (R) below 0.09 and PZT5H-zinc for R larger than 0.09 with both demonstrating total pyroelectric coefficient of approximately at , which corresponds to approximately 300% increase in the coefficient. PZT5H-CPVC also showed maximum of 800% rise in the pyroelectric coefficient while figure of merit for efficiency indicated up to twentyfold increase in its electrical response output per given thermal stimuli when compared to that of PZT5H by itself.
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1 December 2009
Research Article|
December 09 2009
Pyroelectric effect enhancement in laminate composites under short circuit condition
H. H. S. Chang;
H. H. S. Chang
a)
1Department of Materials,
Cranfield University
, Bedfordshire, MK43 0AL, United Kingdom
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R. W. Whatmore;
R. W. Whatmore
2
Tyndall National Institute
, Lee Maltings, Prospect Row, Cork, Ireland
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Z. Huang
Z. Huang
1Department of Materials,
Cranfield University
, Bedfordshire, MK43 0AL, United Kingdom
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a)
Electronic mail: [email protected].
J. Appl. Phys. 106, 114110 (2009)
Article history
Received:
January 16 2009
Accepted:
October 24 2009
Citation
H. H. S. Chang, R. W. Whatmore, Z. Huang; Pyroelectric effect enhancement in laminate composites under short circuit condition. J. Appl. Phys. 1 December 2009; 106 (11): 114110. https://doi.org/10.1063/1.3264623
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