LEADER 05118nam 2200637 a 450 001 9910825299303321 005 20240410170707.0 010 $a1-61324-331-6 035 $a(CKB)2550000001042177 035 $a(EBL)3019574 035 $a(SSID)ssj0000854412 035 $a(PQKBManifestationID)12406780 035 $a(PQKBTitleCode)TC0000854412 035 $a(PQKBWorkID)10920211 035 $a(PQKB)11760366 035 $a(MiAaPQ)EBC3019574 035 $a(Au-PeEL)EBL3019574 035 $a(CaPaEBR)ebr10671139 035 $a(OCoLC)747305643 035 $a(EXLCZ)992550000001042177 100 $a20091021d2010 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 00$aDefinition of constants for piezoceramic materials$b[electronic resource] /$fVladimir A. Akopyan ... [et al.] 205 $a1st ed. 210 $aNew York $cNova Science Publishers$dc2010 215 $a1 online resource (219 p.) 225 1 $aMaterials science and technologies series 300 $aDescription based upon print version of record. 311 $a1-60876-350-1 320 $aIncludes bibliographical references and index. 327 $aIntro -- DEFINITION OF CONSTANTS FORPIEZOCERAMIC MATERIALS -- CONTENTS -- PREFACE -- INTRODUCTION -- BOUNDARY PROBLEMS FOR PIEZOELECTRICSAND MATHEMATICAL MODELSOF ELECTRO-ELASTICITY -- 2.1. CONSTITUTIVE EQUATIONS OFELECTRO-ELASTIC MEDIA -- 2.2. ELECTRO-ELASTICITY PROBLEM ON LONGITUDINALOSCILLATIONS OF TRANSVERSE-POLARIZED BEAM -- 2.3. PROBLEM ON LONGITUDINAL OSCILLATIONS OFBEAM UNDER LONGITUDINAL ELECTRIC FIELD -- 2.4. PROBLEM ON SHEAR OSCILLATIONS EXCITED INPLATE WITH DEPTH POLARIZATION -- 2.5. PROBLEM ON PLANAR OSCILLATIONS INTHIN PLATE WITH DEPTH POLARIZATION.APPROXIMATE RELATIONS FOR ELASTIC CONSTANTS -- METHODS FOR DEFINITION OFPIEZOELECTRIC MATERIAL CONSTANTS -- 3.1. METHODS FOR DEFINITION OF ELASTICPIEZOELECTRIC CONSTANTS IN DYNAMIC REGIME -- 3.2. METHODS FOR DEFINITION OF PIEZOMODULES INSTATIC AND QUASISTATIC REGIMES -- IDENTIFICATION OF OSCILLATION MODESAND DETERMINATION OFFULL MATRIX OF THE COMPATIBLEPIEZOELECTRIC MATERIAL CONSTANTS -- 4.1. DIFFERENT OSCILLATION MODES FORPIEZOCERAMIC RECTANGULAR PRISMATIC BEAM -- 4.1.1. Isolated Longitudinal and Depth Oscillation Modes forTransverse-Polarized Beam and Experimental Definition theirResonances -- 4.1.2. Theoretical Analysis of Amplitude-Frequency Characteristicsand Oscillation Forms for Transverse-Polarized Beam. Comparisonof Theoretical and Test Data -- 4.2. METHOD AND ALGORITHM FOR DEFINITION OFFULL MATRIX OF THE PIEZOCERAMIC MATERIALCOMPATIBLE CONSTANTS AND MEASURING DEVICEFOR THEIR REALIZATION -- 4.2.1. Method and Algorithm for Definition of Full Matrix of theConstants -- 4.2.2. Measuring Device Used for Definition of Constants -- 4.2.3. Results of Measurements and Calculations for SomePiezoceramics. Comparative Analysis with Known Data -- DEFINITION OF PIEZOMODULE D33 -- 5.1. GOVERNING EQUATIONS FOR DEFINITION OFPIEZOMODULE D33 AND SCHEME ITS CALCULATION. 327 $a5.2. METHOD AND DEVICE FOR DEFINITION OFPIEZOMODULE D33 IN QUASISTATIC REGIME -- 5.3. ANALYSIS OF RESULT VALIDITY ANDERROR IN MEASUREMENT OF D33 -- DEFINITION OF ELASTIC CONSTANTS FORPIEZOCERAMICS AND THEIR TEMPERATURECHARACTERISTICS BY USING METHOD OFBENDING-TORSION OSCILLATIONSOF THE CANTILEVER BEAM -- 6.1. Problem of Bending Oscillations of PiezoceramicCantilever Beam with Additive Mass -- 6.2. METHOD FOR DEFINITION OFTECHNICAL ELASTIC CONSTANTS -- 6.3. INVESTIGATION OF TEMPERATURE DEPENDENCIES OFPIEZOCERAMIC ELASTIC CONSTANTS -- 6.4. ANALYSIS OF RESULT VALIDITY AND ERROR INMEASUREMENT OF ELASTIC CONSTANTS -- APPENDIX A. SPECIALIZED FINITE-ELEMENTCOMPLEX ACELAN -- A.1. CONTINUUM AND FINITE-ELEMENT MODELS OFPIEZOELECTRIC DEVICES -- A.1.1. Continuum Models of Elastic, Electroelastic and AcousticMedia -- A.1.2. Finite-Element Models -- A.1.3. Numerical Solution of System of the Ordinary DifferentialEquations for the Finite-Element Model -- A.2. TECHNIQUE OF SOLUTIONOF THE DYNAMIC PROBLEMS IN ACELAN -- A.2.1. Construction of Finite-Element Model in ACELAN -- A.2.2. Definition of Natural Frequencies of Resonance andAntiresonance -- A.2.3. Solution of Problem on Steady Oscillations -- A.2.4. Solution of Non-stationary Problem -- REFERENCES -- INDEX. 410 0$aMaterials science and technologies series. 606 $aPiezoelectric ceramics 606 $aElectronic ceramics 606 $aElasticity$xMathematical models 606 $aPiezoelectricity$xMathematical models 606 $aPiezoelectric devices 615 0$aPiezoelectric ceramics. 615 0$aElectronic ceramics. 615 0$aElasticity$xMathematical models. 615 0$aPiezoelectricity$xMathematical models. 615 0$aPiezoelectric devices. 676 $a620.1/404297 701 $aAkopyan$b Vladimir A$01676350 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910825299303321 996 $aDefinition of constants for piezoceramic materials$94042467 997 $aUNINA