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SIZING OF SMALL SURFACE-BREAKING TIGHT CRACKS BY USING LASER-ULTRASONICS

机译:使用激光超声波施加小表面破裂的紧密裂缝

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On the nondestructive testing, not only detection but also sizing of crack is desirable because the crack depth is one of the most important parameter to evaluate the impact of the crack to the material, to estimate crack growth and ultimately to predict lifetime of the component. Moreover, accurate measurement of the crack depth optimizes countermeasures and timing of repairs, and eventually reduces total cost for plant maintenance. Laser-ultrasonic is a technique that uses two laser beams; one with a short pulse for the generation of ultrasound and another one, long pulse or continuous, coupled to an optical interferometer for detection. The technique features a large detection bandwidth, which is important for small defect inspection. Another feature of laser-ultrasonics is the remote optical scanning of generation and detection points, which enables to inspect components in narrow space and/or having complex shapes. A purpose of this paper is to describe the performance of a laser-ultrasonic testing (LUT) system on stress corrosion cracking (SCC) inspection. We have developed a new technique for sizing shallow cracks, say 0.5-1.5mm, based on the laser-induced surface wave and its frequency analysis. First, sizing capability of the system will be demonstrated by using an artificial surface-breaking slot having depth of 0-2mm in a stainless steel plate. Evaluated depths show good agreement with the machined slot depths within the accuracy of about a few hundred micrometers. Then, SCCs in a stainless steel plate are examined by using the system. Depth of SCC is evaluated every 0.2mm over the crack aperture length. The evaluated depths are compared with the depths measured by the destructive testing.
机译:在非破坏性测试上,不仅检测而且还需要裂缝的尺寸,因为裂缝深度是评估裂缝对材料的影响的最重要参数之一,以估计裂缝生长,最终预测组件的寿命。此外,精确测量裂缝深度优化了维修的对策和时间,最终降低了植物维护的总成本。激光超声波是一种使用两个激光束的技术;一种具有短脉冲的超声波,另一个,长脉冲或连续,耦合到光学干涉仪进行检测。该技术具有大的检测带宽,这对于小缺陷检查很重要。激光超声波的另一个特征是生成和检测点的远程光学扫描,这使得能够在窄空间和/或具有复杂形状中检查部件。本文的目的是描述激光超声波检测(LUT)系统对应力腐蚀裂纹(SCC)检查的性能。我们开发了一种尺寸尺寸浅裂缝的新技术,如5-1.5mm,基于激光诱导的表面波及其频率分析。首先,将通过使用在不锈钢板中具有0-2mm深度的人工表面破碎槽来证明系统的尺寸尺寸。评估深度与机加工的槽深度达成良好的一致性,精度约为几百微米。然后,通过使用该系统检查不锈钢板中的SCC。在裂缝孔径长度上每0.2mm评估SCC的深度。将评估的深度与通过破坏性测试测量的深度进行比较。

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