Smart materials containing piezoelectric fibers have a large potential in s
ensoric, actuatoric and ultrasonic transducer applications. Fine scale PZT
fibers with five systematically adjusted Zr/Ti ratios ranging from x = 58/4
2 to 48/52 have been prepared using a sol-gel route. The fibers were embedd
ed in a polymer matrix to produce 1-3 composites and the effective piezoele
ctric and dielectric coefficients were measured. An analytical model was us
ed to extract the corresponding values of the fibers from the effective mat
erial properties. The dependence of the coefficients on the Zr/Ti ratio sho
ws a pronounced maximum at x = 53/47. This correlates with an analysis of t
he phase content. For x = 53/47 the fibers consist of 31 % rhombohedral and
69 % tetragonal phase, whereas the content of rhombohedral phase is 100 an
d 7 % for x = 58/42 and 48/52, respectively. For x = 53/47 maximum values o
f epsilon (T)(33) = 1200 and d(33) = 127 pm/V were found. The latter one is
about 50 % of the value of corresponding bulk materials. (C) 2001 Elsevier
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