Newnham R E , Skinner D P , Cross E L. Connectivity andpiezoelect ric-pyroelect ric composites [J] . Mat Res B ul l ,1978 , 13 : 525.
[2]
Robert E M , Claude R. A model for t he hydrostatic pressureresponse of a 1-3 composite [J] . I EEE Trans Ult ra FerroFreq Cnt rl , 1996 , 43 (3) : 457 - 466.
[3]
J eremy B , Gordon H. Design of 1-3 piezocomposite hydrophones using finite element analysis [J] . I E EE Trans Ul t raFerro Freq Cnt rl , 1997 , 44 : 565 - 574.
[4]
Marco A. Calculating t he performance of 1-3 piezoelect riccomposites hydrophones applications : An effective mediumapproach [J] . J Acoust S oc A m , 1998 , 103 ( 3) : 1449 -1467.
[5]
Emilio C N S , J un S O F , Noboru K. Optimal design of periodic piezocomposites [J] . Comput Met hods A p pl MechEngrg , 1998 ,159 : 49 - 77.
[6]
Nan C W , Liu L , Guo D , Li L T. Calculations of t he effective properties of 1-3 type piezoelect ric composites wit h various rod/ fiber orientations [J] . J Phys D : A p pl Phys ,2000 , 33 : 2977 - 2984.
[7]
Banno H. Recent development of piezoelect ric ceramic product s and composite of synt hetic rubber and piezoelect ric ceramic particle [J] . Ferroelect rics , 1983 , 50 : 3 - 12.
[8]
Banno H. Theoretical equations for dielect ric , elastic and piezoelect ric constant s of diphasic composite changing it s connectivity from 3-0 to 0-3 via 3-3 [J] . I E EE I nt S ymp A p plFerroelect r , 1994 : 186 - 189.
[9]
Banno H. Effect s of porosity on dielect ric , elastic and elect romechanical properties of PZT ceramics wit h open pores : At heoretical approach [J] . J pn J A p pl Phys , 1993 , 32 :4214 - 4217.
[10]
Levassort F , Let hiecq M. Homogenization of Piezocomposites Containing Bot h 0-3 and 3-3 Connectivities [A] . IEEEInt Symposium on Appl of Ferro [C] . 1998. 333 - 336.
[11]
Levassort F. Effective elect roelastic moduli of 3-3 (0-3) piezocomposites [J] . I EEE T rans Ult rason Ferroelect r FreqCont rol , 1999 , 46 (4) : 1028 - 1034.
[12]
Dunn M L , Taya M. Elect romechanical properties of porouspiezoelect ric ceramics [J] . J A m Ceram S oc , 1993 , 76 (7) :1697 - 1706.
[13]
Gómez Alvarez-Arenas T E , Mulholland A J , Hayward G,et al . Wave propagation in 03-3-3 connectivity compositeswit h complex microst ructure [J] . Ult rasonics , 2000 , 38 :897 - 907.
[14]
Tan P , Tong L Y. A micro-elect romechanics model for t he3-D PFRC materials [J] . J Compos Mater , 2002 , 36 (2) :127 - 141.
[15]
Perry A , Bowen C R. Finite element modeling of 3-3 piezocomposites [J] . Scri pta Materialia , 1999 , 41 (9) : 1001 -1007.
[16]
Rittenmyer K, Shrout T , Schulze W A , Nwenham R E.Piezoelect ric 3-3 composites [J] . Ferroelct rics , 1982 , 4 :189 - 195.
[17]
Bowen C R , Perry A , Kara H , Mahon S W. Analytical modeling of 3-3 piezoelect ric composites [J] . J of Euro CeramS oc , 2001 , 21 : 1463 - 1467.
[18]
Rowen C R , Kara H. Pore anisot ropy in 3-3 piezoelect riccomposites [J] . Materials Chemist ry and Phys , 2002 , 75 :45 - 49.
[19]
Kara H , Perry H , Stevens R , et al . 3-3 piezocomposites : Acomparison between t he models and experimental result s[J] . Ceram Eng Sci Proc , 2001 , 22 (4) : 543 - 554.
[20]
Amen A , Hung N V , Joseph P. Homogenization techniquesand application to piezoelect ric composite materials [J] . I ntJ of A p pl Elect romag and Mechanics , 1999 , 10 : 391 -403.
[21]
Amen A , Calude R , Yves V. Segmented piezoelect ric fibercomposite for vibration cont rol : Fabricating and modeling ofelect romechanical properties [J] . Composites Science andTechnology , 2003 , 63 : 871 - 881.
[22]
Kim S J , Jiang Q. A finite element model for rate-dependentbehavior of ferroelect ric ceramics [J] . I nt J of S ol i ds andS t ructures , 2002 , 39 : 1015 - 1030.
[23]
Smit h W A. Optimizing elect romechanical coupling in piezocomposites using polymers wit h negative Poisson’s ratio [J] .Ult ra S ymposium , 1991 , 1 : 661 - 666.