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首页> 外文期刊>International Journal of Solids and Structures >Dispersion of elastic guided waves in piezoelectric infinite plates with inversion layers
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Dispersion of elastic guided waves in piezoelectric infinite plates with inversion layers

机译:带反型层的压电无限板中弹性导波的色散

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In this work. we study the dispersion of elastic waves in piezoelectric infinite plates with ferroelectric inversion layers. The motivation is to analyze the effect of ferroelectric inversion layers on wave dispersion and resonant behavior under impulsive line loads. A semi-analytical finite-element (SAFE) method has been adopted to analyze the problem. Two model problems are considered for analysis. In one. the plate is composed of a layer of 36 degrees rotated y-cut LiNbO3 with a ferroelectric inversion layer. In the other, material is PZT-4 with a ferroelectric inversion layer. Comparison with experimental results, reported in the literature for isotropic materials, shows a very good agreement with theoretical predictions obtained using SAFE method. Furthermore, comparison of the resonance frequencies of the S, modes, calculated using KLM approximation (f(o) = Cd/2h) and SAFE method, are illustrated for each problem. The frequency spectra of the Surface displacements show that resonant peaks occur at frequencies where the group velocity vanishes and the phase velocity remains finite. i.e., a minimum in the dispersion Curve below the cut-off frequency. The effect of the ratio of the thicknesses of the inversion layer (IL) and the plate on the frequencies and strength of the resonant peaks is examined. It is observed that for PZT-4 with 50% IL to plate thickness ratio the frequency for the second resonant peak is about twice that for the first one. Results are presented showing the dependence of resonant frequencies on the material properties and anisotropy. Materials selection for single-element harmonic ultrasound transducers is a very important factor for Optimum design of transducers with multiple thickness-mode resonant frequencies. The theoretical analysis presented in this Study Should provide a means for optimum ultrasound transducer design for harmonic imaging in medical applications.
机译:在这项工作中。我们研究了具有铁电反型层的压电无限板中弹性波的色散。目的是分析铁电反型层在脉冲线负载下对波色散和共振行为的影响。采用半解析有限元(SAFE)方法来分析该问题。考虑两个模型问题进行分析。合而为一。该板由一层36度旋转的Y型切割LiNbO3和一个铁电反转层组成。另一方面,材料是具有铁电反型层的PZT-4。与文献报道的各向同性材料的实验结果相比,与使用SAFE方法获得的理论预测非常吻合。此外,针对每个问题,说明了使用KLM近似(f(o)= Cd / 2h)和SAFE方法计算的S模式的共振频率的比较。表面位移的频谱表明,共振峰出现在群速度消失且相速度保持有限的频率处。即,色散曲线中的最小值低于截止频率。研究了反转层(IL)和极板的厚度之比对共振峰的频率和强度的影响。可以观察到,IL与板厚比为50%的PZT-4,第二个共振峰的频率大约是第一个共振峰的频率的两倍。结果表明共振频率对材料性能和各向异性的依赖性。对于具有多个厚度模式共振频率的换能器的最佳设计,单元素谐波超声换能器的材料选择是非常重要的因素。本研究中提出的理论分析应为医学应用中谐波成像的超声换能器最佳设计提供一种手段。

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