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Three-dimensional imaging of subsurface delamination in carbon fiber reinforced plastic using photoacoustic wave method

机译:碳纤维增强塑料表面下分层的三维声光成像

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Ultrasonic wave generated by interaction of the material with pulsed lasers is known as photoacoustic (PA) wave. In this study, the PA imaging is applied to the nondestructive testing for carbon fiber reinforced plastic (CFRP). When subsurface flaws are in CFRP, the detection of the flaws is sometimes challenging because the trailing signal from the surface interferes with the scattered signal from the flaws. Here, we developed a PA microscopy (PAM) to reconstruct the location and shape of the subsurface flaws. The PAM employs a confocal arrangement of optical and acoustic lens to maximize the intensity of generated PA waves. To enhance the lateral resolution of the image, we introduced the synthetic aperture focusing technique (SAFT). In the SAFT, it is necessary to consider direction-dependent group velocities due to the strong anisotropy in CFRP. The performance of the PA imaging combined with the SAFT was checked with artificial delaminations in a cross-ply CFRP specimen. It was shown that the PA wave had a wide frequency band and our method offered a high spatial resolution image.
机译:由材料与脉冲激光相互作用产生的超声波称为光声(PA)波。在这项研究中,PA成像用于碳纤维增强塑料(CFRP)的无损检测。当CFRP中存在地下缺陷时,有时很难进行缺陷检测,因为来自表面的拖尾信号会干扰来自缺陷的散射信号。在这里,我们开发了PA显微镜(PAM)来重建表面缺陷的位置和形状。 PAM采用光学和声学透镜的共焦布置,以最大化所产生的PA波的强度。为了提高图像的横向分辨率,我们引入了合成孔径聚焦技术(SAFT)。在SAFT中,由于CFRP中的强各向异性,必须考虑与方向相关的组速度。在多层CFRP样品中通过人工分层检查了PA成像与SAFT结合的性能。结果表明,PA波具有较宽的频带,我们的方法提供了高空间分辨率的图像。

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