• CN:11-2187/TH
  • ISSN:0577-6686

›› 2006, Vol. 42 ›› Issue (2): 63-67.

• 论文 • 上一篇    下一篇

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飞机多层结构中裂纹的定量检测及分类识别

杨宾峰;罗飞路;张玉华;曹雄恒   

  1. 国防科技大学机电工程与自动化学院
  • 发布日期:2006-02-15

QUANTIFICATION AND CLASSIFICATION OF CRACKS IN AIRCRAFT MULTI-LAYERED STRUCTURE

YANG Binfeng;LUO Feilu;ZHANG Yuhua;CAO Xiongheng   

  1. College of Mechantronic Engineering and Automation, National University of Defense Technology
  • Published:2006-02-15

摘要: 对飞机机身多层结构中的缺陷进行定量检测是无损检测领域的一个难点,脉冲涡流是目前有效的能对这种类型缺陷进行定量检测的技术。采用时频分析的方法实现了对飞机结构中出现的裂纹的定量检测。针对脉冲涡流在裂纹分类中存在的识别正确率较低的问题,提出一种新的称为频谱分离点的缺陷识别方法,提高了缺陷分类识别的正确率,理论分析与试验结果相一致,验证了所采用方法的正确性。

关键词: 定量检测, 飞机结构, 裂纹, 缺陷分类, 扫描脉冲涡流, 泵控缸, 单出杆液压缸, 非对称泵, 挖掘机斗杆

Abstract: It is difficult to detect flaws in multi-layered structures of aircraft fuselage lap splices. Pulsed eddy current (PEC) is the effective method that has been demonstrated to be capable of quantifying this defect. Time frequency analysis techniques are used to quantify cracks appearing in aircraft structure. With the purpose of overcoming the problem of low accuracy of PEC in the cracks classification, a new feature, termed as frequency spectrum separating point, is proposed to enhance the accuracy in classification of defects. The agreement between theory and experiment shows that the present method is correct.

Key words: Crack, Aircraft structure, Defect classification, Quantification, Scanned pulsed eddy current, asymmetric pump, excavator arm, single rod cylinder, pump controlled cylinder

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