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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Technique for nonuniform poling of piezoelectric element and fabrication of Gaussian transducers
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Technique for nonuniform poling of piezoelectric element and fabrication of Gaussian transducers

机译:压电元件非均匀极化技术及高斯换能器的制作

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摘要

A new technique has been developed to polarize piezoelectric ceramic elements with a nonuniform electric field. Used as an ultrasonic transducer, the piezoelectric element will produce a corresponding nonuniform sound field. Ultrasonic transducers for generating specific field profiles can therefore be made by having a predetermined spatial pattern of polarization strength poled into the piezoelectric element. One of the desirable beam profiles is a Gaussian; it has the advantages of being free from near-field fluctuations and far-field sidelobes, and it is much easier to model than the usual piston transducers. This method was used to fabricate Gaussian beam transducers, and their measured field profiles compared well with the Gaussian beam model. Such transducers containing the built-in Gaussian amplitude profile can be electroded and mounted in the same manner as conventional piston transducers.
机译:已经开发出一种新技术来极化具有非均匀电场的压电陶瓷元件。用作超声换能器时,压电元件将产生相应的不均匀声场。因此,可以通过将极化强度的预定空间图案极化到压电元件中来制造用于产生特定场轮廓的超声波换能器。理想的光束轮廓之一是高斯光束;它的优点是不受近场波动和远场旁瓣的影响,并且比普通的活塞传感器更容易建模。该方法用于制造高斯光束传感器,并将其测量的场轮廓与高斯光束模型进行比较。可以以与常规活塞式换能器相同的方式对包含内置高斯振幅分布图的这种换能器进行电极化和安装。

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