Detection of longitudinal cracks with a serrated columnar phased array transducer: A simulation study

Cheng Zou, Dong Cai, Zhenguo Sun, Xia Liu
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引用次数: 1

Abstract

In order to detect the longitudinal cracks on the outside surface of a hollow components, a novel pattern of ultrasonic phased array transducers is designed. The shape of the transducer surface is rectangular and is distributed on the outside surface of a column, with the longer side parallel to the central axis of the column. Meanwhile the transducers are rotated with a certain angle about the longer side of the transducer surface. According to the structure of the transducers, this novel array is named as serrated columnar array. In this paper, a serrated columnar array is placed in the center of the hollow axle. Because of the rotated angle, the surface of each transducer is oblique relative to the surface of the inner surface of the hollow component, the transducers are expected to generate transverse waves in the inspection component. A delayed law calculation method, based on Snell' law, for focus beam forming through the curved interface is described. Two transient acoustic finite element models, one with crack and the other without crack, are established by using the COMSOL software to verify the performance of this array design, one with crack and the other one without crack. With the designed focus delayed laws, transverse waves can be generated and focused at the crack position. By applying the focus laws to the reception channels, and sum up the echo signals, the signal retrieved from the model with a longitudinal crack is stronger than that from the model without cracks. The results show that this special array pattern is potential to serve as an ultrasonic non-destructive tool to detect the longitudinal cracks on the outside surface of hollow components.
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用锯齿状柱状相控阵传感器检测纵向裂纹:模拟研究
为了检测中空构件外表面的纵向裂纹,设计了一种新型超声相控阵换能器。换能器表面的形状为矩形,分布在柱的外表面,较长的一面平行于柱的中心轴线。同时,换能器围绕换能器表面的较长一侧以一定角度旋转。根据传感器的结构,这种新型阵列被命名为锯齿状柱状阵列。在本文中,在空心轴的中心放置了一个锯齿状柱状阵列。由于旋转的角度,每个换能器的表面相对于中空组件的内表面是倾斜的,因此期望换能器在检测组件中产生横波。介绍了一种基于Snell定律的曲面界面聚焦光束形成的延迟定律计算方法。利用COMSOL软件建立了含裂纹和无裂纹两种瞬态声学有限元模型,验证了该阵列设计的性能,分别为含裂纹和无裂纹。利用所设计的聚焦延迟规律,可以产生横波并将横波聚焦在裂纹位置。将焦点规律应用于接收通道,对回波信号进行求和,得到了含纵裂纹模型的回波信号比无纵裂纹模型的回波信号强。结果表明,这种特殊的阵列模式有潜力作为超声无损检测中空构件外表面纵向裂纹的工具。
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