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31.
The inversion of strong scatterer embedded in the half-space is an important problem in engineering and a very difficult nonlinear
problem in mathematics, for which the Born iterative method is of no effect. In this paper the moment method is used in the
discretization procedure. A numerical approach is presented by employing the regularization technique and DBI (distorted Born
iterative) method. The simulation results show that the approach presented is efficient.
Project supported by the Research Fund for the Doctoral Program of Higher Education (RFDP: 98048705). 相似文献
32.
An in-depth investigation is made on the problem of an arc-shaped interface insulating crack in a three-phase concentric circular
cylindrical piezoelectric composite constitutive model. An exact solution in series form is derived by employing the complex
variable method. In addition, the distribution of physical quantities such as stresses, strains, electric displacements and
electric fields in the whole field and along the interface is also presented. Explicit expressions for crack opening displacement,
jump in electric potential on the crack surface and the electro-elastic field intensity factors at the crack tips are obtained.
Specific calculations demonstrate that the convergence of the series form solution is satisfactory and that the outer phase
(composite phase) will exert a significant effect on the electro-mechanical coupling response of the composite system. Owing
to the fact that stresses and electric displacements still possess conventional inverse square root singularities, the oscillating
singularities near the crack tip under plane strain conditions will be absent and, as a result, no unphysical interpenetration
phenomenon of the two crack surfaces will occur. In conclusion, the elastic solution obtained is also based on a solid physical
foundation.
Project supported by the National Natural Science Foundation of China (No.59635140), and the Doctorate Foundation of Xi'an
Jiaotong University. 相似文献
33.
Saqlain Abbas Fucai Li Zulkarnain Abbas Taufeeq Ur Rehman Abbasi Xiaotong Tu Riffat Asim Pasha 《声与振动》2021,55(1):1-18
Structural health monitoring (SHM) is recognized as an efficient tool to interpret the reliability of a wide variety of infrastructures. To identify the structural abnormality by utilizing the electromechanical coupling property of piezoelectric transducers, the electromechanical impedance (EMI) approach is preferred. However, in real-time SHM applications, the monitored structure is exposed to several varying environmental and operating conditions (EOCs). The previous study has recognized the temperature variations as one of the serious EOCs that affect the optimal performance of the damage inspection process. In this framework, an experimental setup is developed in current research to identify the presence of fatigue crack in stainless steel (304) beam using EMI approach and estimate the effect of temperature variations on the electrical impedance of the piezoelectric sensors. A regular series of experiments are executed in a controlled temperature environment (25°C–160°C) using 202 V1 Constant Temperature Drying Oven Chamber (Q/TBXR20-2005). It has been observed that the dielectric constant ε33T which is recognized as the temperature-dependent constant of PZT sensor has sufficiently influenced the electrical impedance signature. Moreover, the effective frequency shift (EFS) approach is optimized in term of significant temperature compensation for the current impedance signature of PZT sensor relative to the reference signature at the extended frequency bandwidth of the developed measurement system with better outcomes as compared to the previous literature work. Hence, the current study also deals efficiently with the critical issue of the width of the frequency band for temperature compensation based on the frequency shift in SHM. The results of the experimental study demonstrate that the proposed methodology is qualified for the damage inspection in real-time monitoring applications under the temperature variations. It is capable to exclude one of the major reasons of false fault diagnosis by compensating the consequence of elevated temperature at extended frequency bandwidth in SHM. 相似文献
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Functionally graded piezoelectric cantilever beam under load 总被引:3,自引:0,他引:3
Summary In the present paper, the problem of a functionally graded piezoelectric cantilever beam subjected to different loadings is studied. The piezoelectric beam is characterized by continuously graded properties for one elastic parameter and the material density. A pair of stress and induction functions in the form of polynomials is proposed and determined. Based on these functions, a set of analytical solutions for the beam subjected to different loadings is obtained. As particular cases, series of solutions for some canonical problems can be directly obtained from the solutions of the present paper, such as for the problems of a piezoelectric cantilever beam with constant body force or without body forces, etc.This research work is supported by the National Natural Science Foundation of China (50272003). Support was also given by the Teaching and Research Award Fund for Outstanding Young Teachers in Higher Education Institutions of MOE, P.R.C. 相似文献
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The difficulties in synthesizing phase pure BaTiO3 doped-(Na0.5Bi0.5)TiO3 are known. In this work, we reporting the optimized pulsed laser deposition (PLD) conditions for obtaining pure phase 0.92(Na0.5Bi0.5)TiO3-0.08BaTiO3, (BNT-BT0.08), thin films. Dielectric, ferroelectric and piezoelectric properties of BNT-BT0.08, thin films deposited by PLD on Pt/TiO2/SiO2/Si substrates are investigated in this paper. Perovskite structure of BNT-BT0.08 thin films with random orientation of nanocrystallites has been obtained by deposition at 600 °C. The relative dielectric constant and loss tangent at 100 kHz, of BNT-BT0.08 thin film with 530 nm thickness, were 820 and 0.13, respectively. Ferroelectric hysteresis measurements indicated a remnant polarization value of 22 μC/cm2 and a coercive field of 120 kV/cm. The piezoresponse force microscopy (PFM) data showed that most of the grains seem to be constituted of single ferroelectric domain. The as-deposited BNT-BT0.08 thin film is ferroelectric at the nanoscale level and piezoelectric. 相似文献
40.