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Non-destructive evaluation of metal and composite targets using an infrared line-scanning technique

机译:使用红外线扫描技术对金属和复合材料目标进行无损评估

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A thermal, non-destructive evaluation (NDE) technique has been employed by ThermTech Services, Inc. in cooperation with NASA Langley Research Center that allows for quantitative measurements of wall thickness in steam boilers. By determining the thickness of the walls, one can easily determine how much thinning has occurred due to corrosion. This type of NDE can be applied to the inspection of wings and fuselages on aircraft and spaceflight vehicles including the shuttle. The NDE technique employs the linear movement of a heat source (lamp) and an infrared imager that is situated at a fixed distance behind the heat source. The instruments are aligned on a platform that moves up and down across the outer surface of a test sample. By analyzing the induced surface temperature variations, and processing images collected with the infrared imager, it can be determined where material loss of the tubes has occurred. After an image sequence has been collected, a line-by-line subtraction methodology is utilized to discard irrelevant information so that defects are displayed in a re-created image. The overall goal of this project is to provide a proof of concept for a portable, hand-operated thermographic line scanner that would provide an alternative to the existing mass- and power-intensive instrument that utilizes a cooled infrared imager. In this project, two different microbolometers are first analyzed using different metal- and carbon epoxy-based targets to determine which provides better resolution for detection of subsurface, manufactured defects. The feasibility of using uncooled bolometer technology to support the development of a portable instrument to conduct this type of NDE technique was proven.
机译:ThermTech Services,Inc.与NASA Langley研究中心合作采用了一种热非破坏性评估(NDE)技术,该技术可以对蒸汽锅炉的壁厚进行定量测量。通过确定壁的厚度,可以轻松确定由于腐蚀而发生的减薄程度。这种类型的NDE可用于检查飞机和航天飞机(包括航天飞机)的机翼和机身。 NDE技术采用热源(灯)和位于热源后方固定距离处的红外成像仪的线性运动。仪器在平台上对齐,该平台可在测试样品的外表面上上下移动。通过分析引起的表面温度变化并处理用红外成像仪收集的图像,可以确定发生管子材料损失的位置。收集完图像序列后,将使用逐行减法方法丢弃无关的信息,以便在重新创建的图像中显示缺陷。该项目的总体目标是为便携式手动热成像线扫描仪提供概念验证,这将为使用冷却的红外成像仪的现有质量和功率密集型仪器提供替代方案。在该项目中,首先使用基于金属和碳环氧化物的不同目标对两种不同的测微辐射热计进行分析,以确定哪种可以提供更好的分辨率来检测地下,制造出来的缺陷。事实证明,使用非冷却测辐射热计技术来支持便携式仪器的开发以进行这种NDE技术是可行的。

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