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- W2045732076 abstract "TRS single crystal plates with special crystal orientations and dimensions of 10×5×0.5mm were prepared, and the in-plane strain-electric field behavior was measured using a modified Sawyer-Tower circuit with an LVDT. A d<sub>32</sub> coefficient as high as -1600 pm/V was observed which is 60-75% higher than d<sub>31</sub> in the conventional cut crystal. The increased performance of this cut can be directly applied to bending mode actuators and other devices that utilize the d<sub>31</sub> mode. The strain response was both linear and non-hysteretic up to 15 kV/cm. Large stroke and highly directional strain was also achieved from a quasi-d<sub>33</sub> mode single crystal plate with interdigital electrodes (IDE). These were prepared with plate thickness of 0.2 mm, and an effective d<sub>33</sub>>1000 pC/N was obtained under 10 KV/cm driving field. Both types of plate actuators show at least 5 times larger piezoelectric coefficient than the d<sub>31</sub> of PZT materials. Amplified out-of-plane stroke could be easily achieved by integrating the developed thin plate actuators into unimorph, bimorph, or moonie structures." @default.
- W2045732076 created "2016-06-24" @default.
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- W2045732076 date "2003-08-12" @default.
- W2045732076 modified "2023-10-18" @default.
- W2045732076 title "Large-stroke low-profile single-crystal piezoelectric actuators" @default.
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- W2045732076 doi "https://doi.org/10.1117/12.484199" @default.
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