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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A parametric study of ultrasonic beam profiles for a linear phased array transducer
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A parametric study of ultrasonic beam profiles for a linear phased array transducer

机译:线性相控阵换能器超声束轮廓的参数研究

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摘要

A numerical simulation model is presented to investigate the influences of design parameters of linear phased array transducers on beam focusing and steering performance. The characteristic of ultrasonic beam profiles has been simulated on the basis of the Huygen's superposition principle. For the simulation, a linear phased array is considered as the composition of finite number of elements separated by equidistance. Individual elements are considered as two-dimensional point sources. The waves generated from piezoelectric elements are considered as simplified transient ultrasonic waves that are constructed with the cosine function enveloped with a Hanning window. The characteristic of ultrasonic wave propagation into a medium from the phased array transducer is described. The effects of the number, the interelement spacing, steering angle, the focal length, and frequency bandwidth of the piezoelectric elements on beam directivity and ultrasonic pressure field in a linear phased array transducer are systematically discussed.
机译:提出了一个数值模拟模型来研究线性相控阵换能器的设计参数对光束聚焦和操纵性能的影响。超声束轮廓的特性已根据惠更斯叠加原理进行了仿真。对于仿真,线性相控阵被视为由等距分隔的有限数量元素的组成。单个元素被视为二维点源。由压电元件产生的波被认为是简化的瞬态超声波,该瞬态超声波的余弦函数被汉宁窗所包围。描述了超声波从相控阵换能器传播到介质中的特性。系统地讨论了线性相控阵换能器中压电元件的数量,元件间距,转向角,焦距和频率带宽对射束方向性和超声压力场的影响。

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