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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Ultrasound characteristics of focused axisymmetrically curved surface transducers
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Ultrasound characteristics of focused axisymmetrically curved surface transducers

机译:聚焦轴对称曲面传感器的超声特性

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A high-speed method for exactly calculating the time-dependent pressure of the radiated acoustic field from pulse-excited axisymmetrically curved surface or lens transducers using the Rayleigh surface integral is presented. The time-dependent pressure of a medical lens transducer with its outer surface shaped like a revolving arc is calculated as an example. Convolution-algorithm procedures are used to study the acoustic radiation field for various forms of exciting pulses. In the calculations, an integral representation of the impulse response function is reduced to a one-dimensional integration. With the help of the triangle criterion for identification and the principle of one-dimensional constriction, the calculation can be scanned over the segmented ranges of integration to carry out the numerical analysis. Ultrasound characteristics of the transducers are calculated, and their relationship to the structure of the transducers is examined.
机译:提出了一种使用瑞利表面积分从脉冲激励轴对称曲面或透镜换能器精确计算辐射声场随时间变化的压力的高速方法。作为示例,计算出其外表面形状像旋转电弧的医用透镜换能器的随时间变化的压力。卷积算法程序用于研究各种形式的激发脉冲的声辐射场。在计算中,脉冲响应函数的积分表示被简化为一维积分。借助三角形识别标准和一维压缩原理,可以在分段的积分范围内扫描计算以进行数值分析。计算换能器的超声特性,并检查它们与换能器结构的关系。

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