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Non-destructive inspection of aircraft composite materials using triple IR imaging

机译:使用三重红外成像对飞机复合材料进行无损检查

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摘要

Abstract: The wide use of composite materials in a number of industrial sectors has necessitated the development of new nondestructive inspection techniques for both manufacturing quality assurance and in-service damage testing. This paper discusses the development of a new holistic inspection system for aircraft composite materials that is composed of three thermographic cameras (operating at different wavelengths such as Near-infrared, Mid-Wave and Long-Wave) placed on the head of a robotic arm. Different setups were investigated in order to achieve optimal settings for a variety of influencing parameters including camera distance from the surface under investigation, excitation source type and power. Experiments were also conducted to define the effectiveness of each thermographic camera towards a variety of defect types. Advanced image processing algorithms were further developed and deployed to enhance the inspection capabilities of the three cameras and improve the interpretation of the collected thermal images. Future work on validating fusion and machine learning tools, their integration as well as on-site inspections has been planned.
机译:摘要:复合材料在许多工业领域中的广泛使用已要求开发用于制造质量保证和在役损伤测试的新型无损检测技术。本文讨论了一种新型的航空器复合材料整体检查系统的开发,该系统由三个热像仪(以不同波长操作,例如近红外,中波和长波)安装在机械臂的头部。为了达到各种影响参数的最佳设置,包括不同的设置参数,包括相机与被测表面的距离,激发源类型和功率,对不同的设置进行了研究。还进行了实验以定义每个热像仪对各种缺陷类型的有效性。进一步开发和部署了先进的图像处理算法,以增强三个摄像机的检查能力并改善对所收集热图像的解释。计划在验证融合和机器学习工具,它们的集成以及现场检查方面进行进一步的工作。

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