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Terahertz NDE for Metallic Surface Roughness Evaluation

机译:用于金属表面粗糙度评估的太赫兹NDE

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摘要

Metallic surface roughness in a nominally smooth surface is a potential indication of material degradation or damage. When the surface is coated or covered with an opaque dielectric material, such as paint or insulation, then inspecting for surface changes becomes almost impossible. Terahertz NDE is a method capable of penetrating the coating and inspecting the metallic surface. The terahertz frequency regime is between 100 GHz and 10 THz and has a free space wavelength of 300 micrometers at 1 THz. Pulsed terahertz radiation, can be generated and detected using optical excitation of biased semiconductors with femtosecond laser pulses. The resulting time domain signal is 320 picoseconds in duration. In this application, samples are inspected with a commercial terahertz NDE system that scans the sample and generates a set of time-domain signals that are a function of the signal reflected from the metallic surface. Post processing is then performed in the time and frequency domains to generate C-scan type images that show scattering effects due to surface non-uniformity.
机译:标称光滑表面中的金属表面粗糙度是材料退化或损坏的潜在指示。当表面被不透明的介电材料(例如油漆或绝缘材料)覆盖或覆盖时,几乎不可能检查表面变化。太赫兹NDE是一种能够穿透涂层并检查金属表面的方法。太赫兹频率范围在100 GHz和10 THz之间,在1 THz处具有300微米的自由空间波长。脉冲太赫兹辐射可以通过使用飞秒激光脉冲对偏置的半导体进行光激发来生成和检测。所得的时域信号持续时间为320皮秒。在此应用中,使用商用太赫兹NDE系统检查样品,该系统扫描样品并生成一组时域信号,该信号是从金属表面反射的信号的函数。然后在时域和频域中执行后处理,以生成C扫描类型的图像,这些图像显示由于表面不均匀而产生的散射效应。

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