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Thickness Gaging of Thin Plates by Multi-Peak Frequency Decomposition of Lamb Wave Signals

机译:兰姆波信号多峰频率分解的薄板厚度计

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In the present work ultrasonic Lamb wave testing has been applied for thickness gaging of thin aluminum plates with 2,3, and 4-mm thickness. Angle probes operated in pulse-echo arrangement with 0.98 MHz central frequency and 7°, 12°, and 20° incident angles were utilized for investigations. High order modes (A_1, S_1, A_2, and S_2) were selected and evaluated for measurements and a fast Fourier transform was utilized for frequency decomposition. The variation with thickness and frequency of the phase velocity was the basis of measurement. Two methods were proposed for thickness gaging: (1) a probe with 6000-8000 m/s phase velocity and one or two other probes with higher than 10 000 m/s phase velocity were utilized simultaneously to inspect each test area and the peak frequency with the highest amplitude excited by each probe was evaluated, and (2) a single probe was utilized and all visible peak frequencies were evaluated. These methods overcome the limitations of the previous research, which applied a peak frequency shift method for corrosion monitoring of plates only for a known mode and known initial thickness and low thickness reductions. The second method is more practical and accurate and has potential for on-line automatic thickness gaging of rolled plates.
机译:在当前的工作中,超声波兰姆波测试已经应用于厚度为2、3和4毫米的薄铝板的厚度测量。脉冲探头以中心频率为0.98 MHz的入射角和7°,12°和20°入射角进行操作,用于研究。选择高阶模式(A_1,S_1,A_2和S_2)并对其进行评估以进行测量,并使用快速傅里叶变换进行频率分解。相速度随厚度和频率的变化是测量的基础。提出了两种测量厚度的方法:(1)同时使用一个相速度为6000-8000 m / s的探头和一个或两个其他相速度高于10000 m / s的探头来检查每个测试区域和峰值频率用每个探针激发的最大振幅进行评估,并且(2)使用单个探针并评估所有可见峰频率。这些方法克服了先前研究的局限性,后者仅在已知模式,已知初始厚度和低厚度减小的情况下将峰值频移方法应用于板的腐蚀监测。第二种方法更实用,更精确,并且具有在线自动测量轧制板厚度的潜力。

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