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Sizing Defects Using Annular Array Techniques with an Automatic Ultrasonic Data Acquisition System

机译:使用环形阵列技术和自动超声数据采集系统确定缺陷的大小

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摘要

Present state of the art sizing measurements of defects by ultrasonic techniques has been inadequate, especially in support of a quantitative fracture mechanical analysis of the strength of a material. Present capabilities of defect sizing in some cases do not allow an accept/reject decision to be made. Currently, ultrasonic imaging systems including phased array, synthetic aperture, and wavefront reconstruction systems are being developed to quantitatively measure defect sizes. Also, in the medical field phased array systems have been developed for imaging purposes. Ibis work describes an annular phased array system which is being developed for general NDE applications on metal and ceramic materials. The main usefulness of phased array techniques is the ability of electronically changing the focus of the acoustic beam radiating from a phased array transducer or reflecting from a defect in a solid material.
机译:通过超声技术对缺陷进行尺寸测量的现有技术水平是不足的,特别是在支持对材料强度的定量断裂力学分析方面。在某些情况下,现有的缺陷大小调整功能无法做出接受/拒绝的决定。当前,包括相控阵,合成孔径和波前重建系统在内的超声成像系统正在开发中,以定量测量缺陷尺寸。同样,在医学领域,相控阵系统已经被开发用于成像目的。 Ibis的工作描述了一种环形相控阵系统,该系统正在开发用于金属和陶瓷材料的一般NDE应用。相控阵技术的主要用途是电子改变从相控阵换能器辐射或从固体材料中的缺陷反射的声束焦点的能力。

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