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Surface roughness evaluation via ultrasonic scanning

机译:通过超声波扫描评估表面粗糙度

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摘要

Despite extensive applications of ultrasonic waves to various nondestructive testing and evaluation of materials, scattering of focused ultrasonic waves due to surface roughness has not been fully investigated. This paper presents an analytical and experimental evaluation of surface roughness measurement using focused ultrasonic beams. The characteristics of focused ultrasonic waves are analyzed by using the impulse response method with a sine-modulated Gaussian pulse as source. First, the beam profile in the focal plane of the focused ultrasonic transducer is analyzed both numerically and experimentally. Second, peak amplitude distribution and reflected waveforms from a flat surface with various incident angles are analytically generated and compared with experimental results. Then, the peak amplitudes of the ultrasonic waves reflected from cusped surfaces which are easily found among machined surfaces are analyzed and compared with experimental data for the first time. The analysis shows good agreement between analytical and experimental results. The excellent correlation between the measurements using a profilometer and the proposed ultrasonic system demonstrates a good potential for surface roughness measurement by ultrasonic sensing.
机译:尽管超声波在材料的各种非破坏性测试和评估中得到了广泛的应用,但是由于表面粗糙度导致的聚焦超声波的散射尚未得到充分研究。本文介绍了使用聚焦超声束测量表面粗糙度的分析和实验评估。通过使用正弦调制高斯脉冲作为源的脉冲响应方法分析聚焦超声波的特性。首先,在数值和实验上分析了聚焦超声换能器的焦平面中的光束轮廓。其次,解析地产生峰值振幅分布和来自具有各种入射角的平坦表面的反射波形,并将其与实验结果进行比较。然后,首次分析了在机械加工表面中容易发现的从尖峰表面反射的超声波的峰值幅度,并将其与实验数据进行了首次比较。分析表明分析结果与实验结果吻合良好。使用轮廓仪和所建议的超声系统进行的测量之间的极佳相关性证明了通过超声感应进行表面粗糙度测量的良好潜力。

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