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Line Scan Versus Flash Thermography: Comparative Study on Reinforced Carbon-Carbon

机译:线扫描与闪光热成像:增强碳-碳的比较研究

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Thermographic inspection techniques fundamentally vary by method of heat deposition. Some systems use a short burst of energy from a flash lamp while others control the motion of a quartz lamp over the material. Both techniques have had a history of successful inspections on aircraft and boiler tubes, for example. Historically, the system used for inspections was determined by the thermographic equipment available to the researcher. This paper will compare the flash and line scan thermographic systems on Reinforced Carbon-Carbon. Reinforced Carbon-Carbon (RCC) is a brittle composite material that is found on the Space Shuttle's nose section, wing leading edges, and chin panel. It is used to protect the orbiter's aluminum frame from superheated air during flight. In the time since the Columbia accident, impact tests on RCC panels have been ongoing. Flash thermography has been successfully used to scan the impact site for delaminations. While the system has proven effective, it is not without limitations. A single scan yields only that section of material that is in the field of view of the infrared camera. Additionally, delaminations deep within the material may not be resolved as well as with quartz heating. A comparative study was conducted using a RCC panel with flat-bottom holes varying in diameter and depth. The panel was scanned with the Thermal Line Scanner, the Thermal Photocopier, and the Echotherm® from Thermal Wave Imaging. Signal to noise ratios were calculated for the defects and used to compare the three systems. This paper will discuss the details of the study and show the results obtained from each of the three systems.
机译:热像检查技术从根本上根据热沉积方法而有所不同。一些系统使用闪光灯发出的短暂能量,而另一些系统则控制石英灯在材料上的运动。例如,这两种技术都有成功检查飞机和锅炉管的历史。从历史上看,用于检查的系统是由研究人员可以使用的热成像设备确定的。本文将比较增强碳-碳上的闪光和线扫描热成像系统。增强碳碳(RCC)是一种脆性复合材料,可以在航天飞机的机头部分,机翼前缘和下巴板上找到。它用于在飞行过程中保护轨道器的铝制框架免受过热空气的侵害。自哥伦比亚事故以来,一直在进行RCC面板的冲击测试。闪光灯热成像技术已成功用于扫描冲击部位是否有分层。尽管该系统已被证明是有效的,但它并非没有局限性。一次扫描仅产生红外摄像机视野内的那部分材料。此外,与石英加热一样,材料内部的分层可能无法解决。使用带有直径和深度变化的平底孔的RCC面板进行了比较研究。用热线扫描仪,热复印机和热波成像公司的Echotherm®扫描面板。计算出缺陷的信噪比,并用于比较这三个系统。本文将讨论这项研究的细节,并展示从这三个系统中获得的结果。

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