Low Temperature Sintering and Piezoelectric Properties in Pb(ZrxTi1-x)O3–Pb(Zn1/3Nb2/3)O3–Pb(Ni1/3Nb2/3)O3 Ceramics
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概要
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High-power ceramics of the composition 0.8Pb(Zr0.5Ti0.5)O3–0.2Pb[(Zn0.8Ni0.2)1/3Nb2/3]O3 (0.8PZT–0.2PZNN) + 0.5 wt% MnO2 have excellent piezoelectric and dielectric properties such as $d_{33}=320$ pC/N, ${\varepsilon_{33}}^{\text{T}}/\varepsilon_{\text{o}}=1227$, $k_{\text{p}}=0.54$, and $Q_{\text{m}}=1265$. However, the sintering temperature of this composition is high, approximately 1200°C, restricting the use of cheap base metal electrodes in the fabrication of multilayer components. In this study, we provide a solution to this problem and report a low sintering temperature high-power composition in a PZT–PZNN system. CuO and Al2O3 were selected as sintering agents. It was found that the addition of CuO can reduce the sintering temperature to 920°C, but it can also significantly reduce the piezoelectric properties. The reduction of $Q_{\text{m}}$ magnitude was 81% when 0.5 wt% CuO was added. The addition of Al2O3 as a sintering agent was found to improve $Q_{\text{m}}$ magnitude but significant reductions in piezoelectric and dielectric properties were observed. The addition of excess ZnO and NiO was found to improve the density and piezoelectric properties, but it was also found to reduce $Q_{\text{m}}$ magnitude. Consequently, the optimization of the concentration of the sintering agents was carried out, and the optimized low sintering temperature high-power composition was found to be 0.875Pb(Zr0.5Ti0.5)O3–0.125Pb[(Zn0.8Ni0.2)1.5/3Nb2/3]O3 + 0.5 wt% MnO2 + 0.2 wt% CuO + 0.3 wt% Al2O3. The piezoelectric properties of the specimens of this composition sintered at 920°C were found to be $k_{\text{p}}=0.581$, $Q_{\text{m}}=809$, $d_{33}=345$ pC/N, ${\varepsilon_{3}}^{\text{T}}/\varepsilon_{\text{o}}=1345$, and $T_{\text{c}}=330$°C.
- Published by the Japan Society of Applied Physics through the Institute of Pure and Applied Physicsの論文
- 2005-03-15
著者
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Kang Nam-kee
Korea Electronics Technology Institute
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Song Hyun-cheol
Department Of Materials Science And Engineering Korea University
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Ahn Cheol-woo
Department Of Materials Science And Engineering Korea University
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LEE Hyeung-Gyu
Korea Electronics Technology Institute
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Nahm Sahn
Department Of Materials Science And Engineering Korea University
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Priya Shashank
Department Of Materials Science And Engineering University Of Texas At Arlington
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Park Seung-ho
Department Of Materials Science And Engineering Korea University
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Uchino Kenji
International Center For Actuators And Transducers (icat) Intercollege Materials Research Laboratory
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Priya Shashank
Department of Materials Science and Engineering, University of Texas at Arlington, Arlington, TX 76019, U.S.A.
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Lee Hyeung-Gyu
Korea Electronics Technology Institute, 455-6, Masan-ri, Jinwi-Myon, Pyungtaek-si, Kyeonggi-do 451-865, Korea
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Uchino Kenji
International Center for Actuators and Transducers, Materials Research Institute Pennsylvania State University, University Park, PA 16802, U.S.A.
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Song Hyun-Cheol
Department of Materials Science and Engineering, Korea University, 1-5 Ka, Anam-Dong, Sungbuk-Ku, Seoul 136-701, Korea
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