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SECTION A: PIEZOELECTRIC PROPERTIES AND DEVICES

Sintering Behavior of Hard-Soft PZT-Type Composite Ceramics

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Pages 176-186 | Received 05 Sep 2006, Accepted 28 Nov 2006, Published online: 07 Jun 2007

References

  • Jaffe , B. , Roth , R. and Marzullo , R. S. 1954 . Piezoelectric properties of lead zirconate–lead titanate solid solutions . J. Appl. Phys. , 25 : 809 – 810 .
  • Jaffe , B. , Cook , W. and Jaffe , H. 1971 . Piezoelectric Ceramics , New York : Acad Press .
  • Jaffe , H. and Belincourt , D. 1965 . Piezoelectric transducer materials . Proc. IEEE , 53 : 1372 – 1386 .
  • Fousek , J. 1991 . Ferroelectricity; Remarks on historical aspects and present trends . Ferroelectrics , 113 : 3 – 20 .
  • Ballato , A. 1995 . Piezoelectricity; Old effect, new thrusts. IEEE Trans. Ultrason . Ferroel. Freq. Control , 42 : 916 – 925 .
  • Yamamoto , T. 1996 . Ferroelectric properties of the PZ-PT system . Jpn. J. Appl. Phys. , 35 : 5104 – 5108 .
  • Gururaja , T. 1994 . Piezoelectrics for medical applications . Am. Cer. Soc. Bull. , 73 : 50 – 55 .
  • Newnham , R. and Ruschan , G. 1996 . Smart electroceramics . Am. Cer. Soc. Bull. , 75 : 51 – 61 .
  • Scott , J. 1998 . Future issues in ferroelectric miniaturization . Ferroelectrics , 206/207 : 365 – 379 .
  • Haertling , G. 1999 . Ferroelectric ceramics: History and technology . J. Am. Cer. Soc. , 82 : 797 – 818 .
  • Yoon , S. and Ukino , K. 1997 . Effect of additives on the electromechanical properties of piezoelectric ceramics . J. Am. Cer. Soc. , 80 : 1035 – 1039 .
  • Barranco , A. , Pinar , F. , Martinez , P. and Garcia , E. 2001 . Effect of additives on the properties of ferroelectric ceramic system . J. Eur. Cer. Soc. , 21 : 523 – 529 .
  • Texier , N. , Courtois , C. , Travidis , M. and Leriche , A. 2001 . Powder process influence on the characteristics of doped PZT . J. Eur. Cer. Soc. , 21 : 1499 – 1502 .
  • Gary , A. and Agrawal , D. 2001 . Effect of rare earth and bismuth additives on the mechanical and piezoelectric properties of PZT ceramics . Mat. Sci. Eng. , B86 : 134 – 143 .
  • Shelley , W. , Wan , S. and Bowman , K. 1999 . Functionally graded piezoelectric ceramics . Mat. Sci. Forum , 73 : 308 – 311 .
  • Zhu , X. , Xu , J. and Meng , Z. 1998 . Interdiffusion reaction in the PZT/PNN functionally gradient piezoelectric ceramic materials . J. Mat. Sci. , 33 : 1023 – 1030 .
  • Yamada , K. , Yamazaki , D. and Nakamura , K. 2000 . A functionally graded piezoelectric material created by an internal temperature gradient . Appl. of Feroelectrics , 1 : 475 – 478 .
  • Zhu , X. , Zhu , Z. , Zhou , S. , Li , Q. , Liu , Z. and Ming , N. 2001 . EPMA and TEM investigation on the interdiffusion layer of the PNN/PZT functionally gradient piezoelectric ceramics . J. Mat. Sci. , 35 : 1031 – 1036 .
  • Wang , B. and Noda , N. 2001 . Design of a smart functionally graded thermopiezoelectric cmposite structure . Smart Mat. Struct. , 10 : 189 – 193 .
  • Almajid , A. , Taya , M. and Hudnut , S. 2001 . Analysis of out-of-plane displacement and stress field in a piezocomposite plate with functionally grade microstructure . Int. J. Solid Struct. , 38 : 3377 – 3391 .
  • Wu , C. , Khan , M. and Moy , W. 1996 . Piezoelectric ceramics with functional gradient: A new application in material design . J. Am. Cer. Soc. , 79 : 809 – 812 .
  • He , Z. , Zhang , Z. and Li , T. 2003 . PZT based materials with bilayered structure: Preparation and ferroelectric properties . J. Eur. Cer. Soc. , 23 : 1943 – 1947 .
  • Liew , K. , Sivashanker , S. , He , X. and Ng , T. 2003 . The modelling and design of smart structures using functionally graded materials and piezoelectric sensor/actuator patches . Smart Mat. Struct. , 12 : 647 – 655 .
  • Qin , J. , Tani , J. , Ueno , T. , Morita , T. , Takahashi , H. and Du , H. 2003 . Fabrication and high durability of functionally graded piezoelectric bending actuators . Smart Mat. Struct. , 12 : 115 – 121 .
  • Tingting , L. and Zhifei , S. 2004 . Bending behavior of functionally gradient piezoelectric cantilever . Ferroelectrics , 308 : 43 – 51 .
  • Zhu , X. 1995 . A functionally gradient piezoelectric actuator prepared by powder metalurgy process . J. Mat. Sci. Lett. , 14 : 516 – 518 .
  • Hanke , T. 2000 . Bending behavior of functionally gradient materials . Ferroelectrics , 238 : 195 – 202 .
  • Steinhaunsen , R. , Kouvatov , A. , Pientschke , C. , Langhammer , L. , Seifert , W. , Beige , H. and Abicht , H. 2004 . AC poling of functionally graded piezoelectric bending devices . Integrated ferroelectrics , 63 : 15 – 20 .
  • Balamurayan , W. and Narayanan , S. 2004 . Active control of FGM plates using distributed piezoelectric sensors and actuators . The XXI ICTAM Conf. Aug. 2004 , Warsaw .
  • Ichinose , N. , Miyamoto , N. and Takahashi , S. 2004 . Ultrasonic transducers with functionally graded piezoelectric ceramics . J. Eur. Cer. Soc. , 24 : 1681 – 1685 .
  • Carpinteri , D. and Pugno , N. 2006 . Cracks and re-entrant corners in functionally graded materials . Eng. Fracture Mech. , 73 : 127 – 1291 .
  • Ueda , S. 2006 . Transient response of a center crack in functionally graded piezoelectric strip under electromechanical impact . Eng. Fracture Mech. , 73 : 1455 – 1471 .
  • Eyrand , L. , Guiffard , B. , Lebrun , L. and Guyomar , D. 2006 . Interpretation of the softening effect in PZT ceramics near the morphotropic phase boundary . Ferroelectrics , 330 : 51 – 60 .
  • Miclea , C. , Tanasoiu , C. and Miclea , C. F. 1999 . Effect of Small Amounts of Liquid Lead Oxide on the Piezoelectric Properties of Soft Type PZT Ceramics . J. Optoelectronics and Advanced Materials , 1 ( 2 ) : 57 – 63 .
  • Takagi , K. , Li , J. and Watanabe , R. 2003 . Mechanochemical synthesis of piezoelectric powder . KONA , 21 : 234 – 241 .
  • Miclea , C. , Tanasoiu , V. , Miclea , C. F. and Gheorghiu , A. 2004 . Synthesis and piezoelectric properties of nanocrystalline PZT—based ceramics prepared by high energy ball milling process . J. Mat. Sci. , 39 : 5431 – 5434 .

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