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Enhancing the Accuracy of Off-Axis Flaw Sizing and Positioning in TOFD D-scans Using Mode-Converted Waves

机译:使用模式转换波提高TOFD D-Scans中的离轴缺陷尺寸和定位的准确性

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Despite the recent popularity of ultrasonic time-of-flight diffraction (TOFD) as a reliable non-destructive testing technique for the inspection of weld defects in steel structures, the critical stages of data processing and interpretation are still performed manually. This depends heavily on the skill, experience, alertness and consistency of a trained operator, and is subject to inevitable human errors due to reduced alertness arising from operator fatigue and visual strain when processing large volumes of data. This paper presents techniques developed for enhancing the accuracy of sizing and positioning of off-axis weld flaws in TOFD D-scan data as an essential stage in a comprehensive TOFD inspection and interpretation system to aid the operator by automating some aspects of the processing and interpretation. Data manipulation and post-processing techniques have been specifically developed for the sizing of off-axis weld defects in TOFD data, significantly reducing the sizing and positioning errors. The mode-converted waves are utilised to enhance positional accuracy of flaws. The results achieved so far have been promising in terms of accuracy, consistency and reliability.
机译:尽管近期超声波飞行时间衍射(TOFD)的普及作为钢结构中的焊接缺陷检查的可靠的非破坏性测试技术,但仍然手动执行数据处理和解释的关键阶段。这大量取决于训练有素的操作员的技能,经验,警觉和一致性,并且由于在处理大量数据时,由于操作员疲劳和视觉应变而导致的警觉性降低,因此受不可避免的人类错误。本文介绍了为提高TOFD D扫描数据中的轴焊缺陷的尺寸和定位精度,作为综合TOFD检测和解释系统中的基本阶段,以帮助操作员通过自动化处理和解释来帮助操作阶段的基本阶段。已经专门开发了数据操作和后处理技术,用于在TOFD数据中的轴外焊缝缺陷的尺寸,显着降低尺寸和定位误差。模式转换的波用于增强缺陷的位置精度。到目前为止所取得的结果在准确性,一致性和可靠性方面一直很有希望。

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