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首页> 外文期刊>Journal of Micromechanics and Microengineering >Multiphysics modelling and experimental validation of an air-coupled array of PMUTs with residual stresses
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Multiphysics modelling and experimental validation of an air-coupled array of PMUTs with residual stresses

机译:剩余应力的空气耦合阵列的多体模型与实验验证

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摘要

In this paper a complete multiphysics modelling via the finite element method (FEM) of an air-coupled array of piezoelectric micromachined ultrasonic transducers (PMUT) and its experimental validation are presented. Two numerical models are described for the single transducer, axisymmetric and 3D, with the following features: the presence of fabrication induced residual stresses, which determine a non-linear initial deformed configuration of the diaphragm and a substantial fundamental mode frequency shift; the multiple coupling between different physics, namely electro-mechanical coupling for the piezo-electric model, thermo-acoustic-structural interaction and thermo-acoustic-pressure interaction for the waves propagation in the surrounding fluid.The model for the single transducer is enhanced considering the full set of PMUTs belonging to the silicon dye in a 4 x 4 array configuration.The results of the numerical multiphysics models are compared with experimental ones in terms of the initial static pre-deflection, of the diaphragm central point spectrum and of the sound intensity at 3.5 cm on the vertical direction along the axis of the diaphragm.
机译:在本文中,通过了通过电耦合压电微机械超声换能器(Pmut)的有限元方法(FEM)的完整多体模型及其实验验证。单个换能器,轴对称和3D描述了两个数值模型,具有以下特征:存在制造诱导的残余应力,其确定隔膜的非线性初始变形配置和大小的基本模式频移。不同物理学之间的多耦合,即用于压电模型的电力耦合,热声结构相互作用和用于周围流体的波浪传播的热声结构相互作用和热声压力相互作用。考虑到单个换能器的模型在4×4阵列配置中属于硅染料的全套PMUT。数值多体型模型的结果与实验性的初始静态前偏转,隔膜中心点谱和声音的效果进行比较沿隔膜的轴线垂直方向上的3.5厘米处的强度。

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