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Original Articles

Electric field induced strain in (pb,la)(ti,zr)O2 ferroelectric ceramics near the tetragonal-rhombohedral morphotropic phase boundary

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Pages 1-15 | Received 02 Mar 1988, Published online: 08 Feb 2011

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Narit Funsueb, Apichart Limpichaipanit & Athipong Ngamjarurojana. (2020) Temperature dependence on ferroelectric properties and strain performance of PLZT ceramics containing 9 mol% La. Phase Transitions 93:7, pages 678-689.
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S. Laxmi Priya, V. Kumar, Takuya Teramoto & Isaku Kanno. (2018) Transverse piezoelectric properties of {110}-oriented PLZT thin films. Integrated Ferroelectrics 192:1, pages 113-120.
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Wuyi Pan, Cheng-Feng Yue & Shan Sun. (1992) TfI15: Domain orientation change induced by ferroelectric fatigue process in lead zirconate titanate ceramics. Ferroelectrics 133:1, pages 97-102.
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Wuyi Pan & Hengchu Cao. (1992) Acoustic emission during polarization switching in ferroelectric ceramics. Ferroelectrics 129:1, pages 119-126.
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Articles from other publishers (14)

Zhiwei Liu, Dongliang Shi, Huan Zhou, Linhong Deng & Kun Li. (2015) Fabrication and evaluation of Pb(W0.5Cu0.5)O3 modified PLZT piezoelectric ceramics. Ceramics International 41:1, pages 941-946.
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Ki Hyun Yoon & Hong Ryul Lee. (2001) Electric-field-induced strain and piezoelectric properties near the morphotropic phase boundary of Pb(Mg1/3Nb2/3)O3–PbZrO3–PbTiO3 ceramics. Journal of Applied Physics 89:7, pages 3915-3919.
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S.C. Hwang & R. Waser. (2000) Study of electrical and mechanical contribution to switching in ferroelectric/ferroelastic polycrystals. Acta Materialia 48:12, pages 3271-3282.
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Jeong Hwan Park, Ki Hyun Yoon & Dong Heon Kang. (2004) Physical and Dielectric Properties of (1– x )PbZrO 3 · x BaTiO 3 Thin Films Prepared by Chemical Solution Deposition . Journal of the American Ceramic Society 82:10, pages 2683-2688.
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Yun Woo Nam & Ki Hyun Yoon. (1998) Effect of PbO Content on Dielectric and Electric Field Induced Strain Properties in Y-Modified Lead Zirconate Titanate Stannate. Materials Research Bulletin 33:2, pages 331-339.
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Ping Wang, H. Raithel, S. Tomaschko, M. Hartweg, D. Haarer & F. Stenzel. (1998) Extension of an LVDT sensor system for thermal analysis for field-induced strain measurements of nonlinear ferroelectrics. Extension of an LVDT sensor system for thermal analysis for field-induced strain measurements of nonlinear ferroelectrics.
Zhiwu Zhang & Rishi Raj. (2005) Influence of Grain Size on Ferroelastic Toughening and Piezoelectric Behavior of Lead Zirconate Titanate. Journal of the American Ceramic Society 78:12, pages 3363-3368.
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Qiyue Jiang, Wenwu Cao & L. Eric Cross. (2005) Electric Fatigue in Lead Zirconate Titanate Ceramics. Journal of the American Ceramic Society 77:1, pages 211-215.
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Jin-Chen Shaw, Kuo-Shung Liu & I-Nan Lin. (1993) Piezoelectric properties of niobium-doped 18PMN-41PZ-41PT ceramics. Journal of Materials Science 28:15, pages 4255-4260.
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Jin -Chen Shaw, Kuo -Shung Liu & I -Nan Lin. (1993) Piezoelectric properties of hot-pressed 18PMN-41PZ-41PT ceramics. Journal of Materials Science 28:12, pages 3335-3340.
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W. Y. Pan, C. F. Yue, K. W. Lin, S. Sun & B. A. Tuttle. (1993) Thermally activated rejuvenation of ferroelectric properties in electrically fatigued lead zirconate titanate ceramics. Journal of Materials Science Letters 12:13, pages 986-991.
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W Y Pan, S Sun & B A Tuttle. (1992) Electromechanical and dielectric instability induced by electric field cycling in ferroelectric ceramic actuators. Smart Materials and Structures 1:4, pages 286-293.
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Wuyi Pan, Cheng‐Feng Yue & Ogus Tosyali. (2005) Fatigue of Ferroelectric Polarization and the Electric Field Induced Strain in Lead Lanthanum Zirconate Titanate Ceramics. Journal of the American Ceramic Society 75:6, pages 1534-1540.
Crossref
H. Wang, R.E. Newnham, L.E. Cross & W.Y. Pan. (1991) Piezoelectric properties of PLZT ceramics at different remanent polarization levels. Piezoelectric properties of PLZT ceramics at different remanent polarization levels.

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