Kostroun Tomáš, Dvořák Milan
Department of Aerospace Engineering, Faculty of Mechanical Engineering, Czech Technical University in Prague, Technická 4, 160 00 Praha 6, Czech Republic.
Department of Mechanics, Biomechanics and Mechatronics, Faculty of Mechanical Engineering, Czech Technical University in Prague, Technická 4, 160 00 Praha 6, Czech Republic.
Materials (Basel). 2021 Jan 22;14(3):533. doi: 10.3390/ma14030533.
In this article, we examine the possibility of using active infrared thermography as a nontraditional, nondestructive evaluation method (NDE) for the testing of adhesive joints. Attention was focused on the load-bearing wing structure and related structural joints, specifically the adhesive joints of the wing spar caps and the skins on the wing demonstrator of a small sport aircraft made mainly of a carbon composite. The Pulse Thermography (PT) method, using flash lamps for optical excitation, was tested. The Modified Differential Absolute Contrast (MDAC) method was used to process the measured data to reduce the effect of the heat source's inhomogeneity and surface emissivity. This method demonstrated a very high ability to detect defects in the adhesive joints. The achieved results are easy to interpret and use for both qualitative and quantitative evaluation of the adhesive joints of thin composite parts.
在本文中,我们研究了使用主动红外热成像技术作为一种非传统的无损评估方法(NDE)来测试胶接接头的可能性。研究重点是承载机翼结构及相关结构接头,特别是一架主要由碳复合材料制成的小型运动飞机机翼验证机上翼梁帽与蒙皮的胶接接头。对使用闪光灯进行光学激发的脉冲热成像(PT)方法进行了测试。采用改进的差分绝对对比度(MDAC)方法处理测量数据,以降低热源不均匀性和表面发射率的影响。该方法在检测胶接接头缺陷方面表现出很高的能力。所取得的结果易于解释,可用于对薄复合材料部件胶接接头进行定性和定量评估。