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Simulation of 3-D radiation beam patterns propagated through a planar interface from ultrasonic phased array transducers

机译:模拟从超声相控阵换能器通过平面界面传播的3-D辐射束图

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摘要

Phased array transducers are quite often mounted on solid wedges with specific angles in many practical ultrasonic inspections of thin plates < 10 mm in their thickness or welded joints with convex crowns. For the reliable application of phased array techniques with testing set-up, it is essential to have thorough understanding on the characteristics of radiation beam pattern produced in the interrogated medium. To address such a need, this paper proposes a systematic way to calculate full 3-D radiation beam patterns produced in the interrogated solid medium by phased array transducers mounted on a solid wedge. In order to investigate the characteristics of radiation beam patterns in steel, simulation is carried out for 7.5 MHz array transducers mounted on an acrylic wedge with the angle of 15.45degrees with various of steering angles and/or focal planes. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 9]
机译:相控阵换能器通常在厚度小于10 mm的薄板或带有凸冠的焊接接头的许多超声检查中以特定角度安装在具有特定角度的实心楔上。为了可靠地使用相控阵技术和测试装置,必须对被询问介质中产生的辐射束方向图的特征有透彻的了解。为了满足这种需求,本文提出了一种系统的方法来计算由安装在固体楔块上的相控阵换能器在被询问的固体介质中产生的完整3-D辐射束方向图。为了研究钢中辐射束方向图的特性,对安装在丙烯酸楔形物上的7.5 MHz阵列换能器进行了仿真,其角度为15.45°,具有各种转向角和/或焦平面。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:9]

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