Sandhu Jaswinder S, Schoonover Robert W, Weber Joshua I, Tawiah J, Kunin Vitaliy, Anastasio Mark A
Santec Systems, Inc., 2924 Malmo Drive, Arlington Heights, IL.
Adv Acoust Vib. 2012;2012. doi: 10.1155/2012/275858.
A common current practice for transducer field mapping is to scan, point-by-point, a hydrophone element in a 2D raster at various distances from the transducer radiating surface. This approach is tedious, requiring hours of scanning time to generate full cross-sectional and/or axial field distributions. Moreover, the lateral resolution of the field distribution image is dependent on the indexing steps between data points. Acoustography is an imaging process in which an acousto-optical (AO) area sensor is employed to record the intensity of an ultrasound wavefield on a two-dimensional plane. This paper reports on the application of acoustography as a simple but practical method for assessing transducer field characteristics. A case study performed on a commercial transducer is reported, where the radiated fields are imaged using acoustography and compared to the corresponding quantities that are predicted numerically.
当前用于换能器场映射的一种常见做法是,在距换能器辐射表面不同距离处,在二维光栅中逐点扫描水听器元件。这种方法很繁琐,需要数小时的扫描时间才能生成完整的横截面和/或轴向场分布。此外,场分布图像的横向分辨率取决于数据点之间的索引步长。声成像技术是一种成像过程,其中使用声光(AO)面积传感器在二维平面上记录超声波场的强度。本文报道了声成像技术作为一种简单而实用的方法来评估换能器场特性的应用。报道了对一个商用换能器进行的案例研究,其中使用声成像技术对辐射场进行成像,并与数值预测的相应量进行比较。