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首页> 外文期刊>Journal of Nondestructive Evaluation >Quantitative Detection of Shallow Subsurface Defects by Using Mode-Converted Waves in Time-of-Flight Diffraction Technique
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Quantitative Detection of Shallow Subsurface Defects by Using Mode-Converted Waves in Time-of-Flight Diffraction Technique

机译:使用模式转换波在飞行时间衍射技术中的模式转换缺陷的定量检测

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摘要

An easy-to-implement method based on mode-converted waves was proposed for quantitatively detecting shallow subsurface defects using the ultrasonic time-of-flight diffraction (TOFD) technique. First, an isotropic model with a shallow subsurface defect was established to analyze the ray path of the mode-converted wave in TOFD B-scan image. The mode-converted wave with the shortest travel time and highest amplitude was identified to calculate the flaw depth via Snell's law. Subsequently, the quantitative expression of flaw depth was corrected by introducing the travel time of mode-converted wave, improving the measurement accuracy of the flaw height. Simulated results showed that the depth of the dead zone in carbon steel was reduced from 5.5 to 2.4 mm. The measurement error of shallow subsurface cracks was no more than 0.02 mm when the crack height was greater than or equal to 0.7 mm. Finally, three shallow subsurface defects were experimentally detected with the mode-converted waves in B-scan image. The quantitative errors of the measured heights were within 8.5% of the actual values, verifying the validity of the proposed method. This method is appropriate for the quantitative detection of shallow subsurface defects in thick-walled components.
机译:提出了一种基于模式转换波的易于实现的方法,用于使用超声飞行时间衍射(TOFD)技术定量检测浅地下缺陷。首先,建立具有浅层缺陷的各向同性模型,以分析TOFD B扫描图像中的模式转换波的光线路径。识别出具有最短旅行时间和最高幅度的模式转换波以通过Snell定律计算漏洞深度。随后,通过引入模式转换波的行进时间来校正漏洞深度的定量表达,提高了缺陷高度的测量精度。模拟结果表明,碳钢中死区的深度从5.5降至2.4毫米。当裂缝高度大于或等于0.7mm时,浅层地下裂缝的测量误差不大于0.02mm。最后,用B扫描图像中的模式转换波实验检测三个浅地下表面缺陷。测量高度的定量误差在实际值的8.5%以内,验证所提出的方法的有效性。该方法适用于厚壁部件中的浅层缺陷的定量检测。

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