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超声红外热成像技术在航空发动机叶片裂纹的对比研究
引用本文:习小文,苏清风,袁雅妮,江海军,陈力,魏益兵. 超声红外热成像技术在航空发动机叶片裂纹的对比研究[J]. 红外技术, 2021, 43(2): 186-191
作者姓名:习小文  苏清风  袁雅妮  江海军  陈力  魏益兵
作者单位:中国南方航空工业有限公司,湖南株洲 412002;南京诺威尔光电系统有限公司,江苏南京 210046
摘    要:由于航空发动机叶片具有复杂的曲面结构,对服役过程中形成的微小裂纹检测带来了困难,文中采用超声红外热成像技术对航空发动机叶片裂纹实施检测,开展了超声红外热成像技术研究,搭建了超声红外热成像实验平台,并对实际服役过程中产生裂纹的航空发动机工作叶片进行检测.超声红外热成像结果与渗透检测、金相检测进行了对比;实验结果表明,对于...

关 键 词:超声红外热成像  渗透检测  金相检测  裂纹检测
收稿时间:2020-08-07

Comparative Study of Using Ultrasonic Infrared Thermography for Detecting Aeroengine Blade Cracks
Affiliation:1.AEEC South Industry Co. Ltd., Zhuzhou 412002, China2.Novelteq Ltd., Nanjing 210046, China
Abstract:Owing to the complex curved surface structure of aeroengine blades, it is difficult to detect tiny cracks formed during servicing. In this study, ultrasonic infrared thermography technology was used to detect the blade cracks of an aero engine. Ultrasonic infrared thermal imaging technology was studied, and an experimental platform for ultrasonic infrared thermal imaging was built. In addition, the working blade of an aero engine with cracks arising from actual servicing was detected. The results of ultrasonic infrared thermography were compared with those of osmotic detection and metallographic detection. Experimental results show that in the working blade of the aero engine, ultrasonic infrared thermography technology detected two crack defects and one opening defect, whereas only one crack defect is detected by penetrant testing and two crack defects are detected by a metallographic microscope.The widths are approximately 15 μm and 0.5 μm, respectively, which are consistent with the detection results of ultrasonic infrared thermography. The results show that ultrasonic infrared thermography technology can effectively detect crack defects in aeroengine blades with complex curved surfaces.
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