首页> 外文会议>Conference on Thermosense XXIII Apr 16-19, 2001, Orlando, USA >Thermal investigation of real aircraft components
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Thermal investigation of real aircraft components

机译:实际飞机部件的热研究

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Composite materials are prone to various damages, particularly if used for aeronautic fuselage components. These parts are increasingly used for civil and military aircraft. Internal defects, invisible on the surface, are detectable by means of different NDT methods, having individual advantages and drawbacks. Here, potentialities of IR Thermography are explored to detect and characterize delaminations and internal cracks on an aircraft door made of composite materials. The non-planar surface of the component has a varying thickness. A detailed study of the defect maps given by different data reduction algorithms is oriented to the design of a fast procedure suitable for an in situ application. In particular, the critical parts of the doors are tested on both sides in reflection and transparent mode. The reliability and quality of results is evaluated comparing thermography with data obtained by different methods as Ultrasounds and Mechanical Impedance. Experimental results show great effectiveness of thermography especially using pulsed techniques and phase analysis.
机译:复合材料容易受到各种损坏,特别是如果用于航空机身组件。这些零件越来越多地用于民用和军用飞机。表面上看不见的内部缺陷可以通过不同的NDT方法进行检测,具有各自的优点和缺点。在这里,探索了红外热成像的潜力,以检测和表征由复合材料制成的飞机机门上的分层和内部裂缝。组件的非平面表面具有变化的厚度。由不同的数据约简算法给出的缺陷图的详细研究旨在针对适合原位应用的快速过程的设计。特别是,门的关键部分在反射和透明模式下都在两侧进行了测试。比较热成像和通过不同方法(如超声和机械阻抗)获得的数据,评估结果的可靠性和质量。实验结果表明,特别是使用脉冲技术和相位分析时,热成像技术非常有效。

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