首页> 外文会议>International Conference on Thermal, Mechanical and Multi-Physics Simulation and Experiments in Microelectronics and Microsystems >Air-Coupled Array of Pmuts at 100 kHz with PZT Active Layer: Multiphysics Model and Experiments
【24h】

Air-Coupled Array of Pmuts at 100 kHz with PZT Active Layer: Multiphysics Model and Experiments

机译:带有PZT活性层的100kHz的空气耦合阵列Pmuts:多体模型和实验

获取原文
获取外文期刊封面目录资料

摘要

This work is focused on the multi-physics modelling via the finite element method (FEM) of an air-coupled array of Piezoelectric Micromachined Ultrasonic Transducers (PMUTs) and its preliminary experimental validation in the time domain for the mechanical and acoustic behaviour.Two numerical models are used to simulate the complete performance of the system based on the response of the diaphragm.In the former, the electro-mechanical-acoustic (EMA) problem for the single PMUT is solved, exploiting the axial symmetry of the system, with the following features: the presence of the fabrication induced residual stresses, which determine a non-linear initial deformed configuration and a substantial linearized fundamental mode frequency shift of the piezo-plate; the multiple couplings between different physics, namely piezoelectric coupling in the active layer and acoustic-structural interaction for the waves propagation in the surrounding fluid. When the non-linearities are activated in the dynamic response, by the involved large displacements, the system shows an initial beating behaviour with small steady state amplitude increment as the voltage input increases.In the latter model, the full set of PMUTs belonging to the silicon die in a 4 × 4 array configuration is considered in which the vibrating plates are modelled as equivalent oscillating rigid plane circular pistons, with reduced imposed acceleration amplitude, on a rigid baffle represented by the remaining part of the surface die.The results of the numerical simulations are compared with the experimental ones in terms of the initial static pre-deflection and pressure at 15 cm from the centre of the diaphragm, on the vertical direction along its own acoustic axis, in the case of the TX test with a single actuated transducer for different voltage amplitudes.
机译:这项工作专注于通过压电微机械超声换能器(PMUT)的有限元方法(FEM)的多物理建模及其在机械和声学行为的时域中的初步实验验证.TWO数值模型用于根据膜片的响应来模拟系统的完整性能。在前者,单个Pmut的电力 - 声学(EMA)问题求解,利用系统的轴对称性。以下特征:存在制造诱导的残余应力,其确定非线性初始变形配置和压电板的大量线性化基本模式频移;不同物理学之间的多个联接,即在周围流体中的波浪传播中的有源层中的压电耦合和声学结构相互作用。当在动态响应中激活非线性时,通过涉及的大型位移,系统显示初始跳动行为,随着电压输入的增加,具有小稳态幅度增量的初始跳动行为。在后面的模型中,属于的全套Pmuts考虑了4×4阵列配置中的硅模具,其中振动板以等效的振动刚性平面圆形活塞建模,其施加减小的加速度幅度,在由表面模具的剩余部分表示的刚性挡板上。结果在沿着隔膜中心15厘米的初始静态前偏转和15cm的初始静态预偏转和压力方面与实验模拟进行比较,在沿着其自身的声轴的垂直方向上,在TX测试的情况下用单一致动用于不同电压幅度的换能器。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号