首页> 外文期刊>Composite Structures >Simultaneous external and internal inspection of a cylindrical CFRP lattice-skin structure based on rotational ultrasonic propagation imaging and laser displacement sensing
【24h】

Simultaneous external and internal inspection of a cylindrical CFRP lattice-skin structure based on rotational ultrasonic propagation imaging and laser displacement sensing

机译:基于旋转超声波传播成像和激光位移传感的圆柱CFRP晶格 - 皮肤结构的外部和内部检查

获取原文
获取原文并翻译 | 示例

摘要

Composite lattice-skin structures have been widely used in the aerospace industry to reduce structure weight and fabrication cost. The filament winding technique can be used to manufacture them automatically. However, several defects can occur in every manufacturing step, such as outward dimples (in which the skin swells during the curing process) and de-bonding (in which the rib and skin detach). They drastically reduce the buckling strength under compression and should be evaluated before operation. In this study, we simultaneously inspected the outside and inside of a cylindrical composite lattice-skin structure and visualized external and internal defects based on laser displacement sensing and rotational ultrasonic propagation imaging. An external inspection algorithm that used a laser displacement sensor was added to a previously developed internal inspection algorithm. Then, the accuracy of the laser displacement sensor was confirmed by measuring the groove depth of the composite brake disk. Thereafter, external and internal inspection was simultaneously performed on the composite lattice-skin structure. This system can clearly visualize not only external defects (dimples) using laser displacement sensing with 2D median filtering and 2D fast-Fourier transform but also internal defects (debonding) using ultrasonic propagation imaging.
机译:复合格子皮肤结构已广泛应用于航空航天工业,以减少结构重量和制造成本。灯丝绕组技术可用于自动制造它们。然而,在每个制造步骤中可能发生几种缺陷,例如向外凹坑(在固化过程中皮肤膨胀)和去粘合(其中肋和皮肤分离)。它们在压缩下大大降低了屈曲强度,并在操作前进行评估。在这项研究中,我们同时检查了圆柱形复合晶格 - 皮肤结构的外部和内部,并基于激光置换传感和旋转超声波传播成像可视化外部和内部缺陷。将使用激光位移传感器的外部检查算法添加到先前显影的内部检查算法中。然后,通过测量复合制动盘的槽深度来确认激光位移传感器的精度。此后,在复合晶格皮肤结构上同时进行外部和内部检查。该系统不仅可以使用具有2D中值滤波和2D快速傅里叶变换的激光位移感测而且使用超声波传播成像的内部缺陷(剥离),该系统不仅可以明确可视化外部缺陷(凹坑)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号