Enhancement of Damage Detectability in Aircraft Structures Using the Fusion of NDT Results

Q4 Engineering
Marcin Zapłotny, A. Katunin, K. Dragan
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引用次数: 1

Abstract

Abstract Following the damage tolerance philosophy in aircraft design and operation, one of the most significant stages of maintenance is non-destructive testing of structures. It is, therefore, essential to use testing methods sensitive to particular damage types occurring in aircraft structures during operation. In this paper, the authors present a study on selection and comparison of methods of information fusion applied to testing the results of inspection of composite structures used in aircraft elements, obtained using various ultrasonic methods. The presented approach of fusion of ultrasonic scans allows for enhancement of damage detection and identification due to the presence of different parts of information about detected damage obtained from different initial information sources in a single resulting set. Such an approach can be helpful at the decision-making stage during inspection of aircraft elements and structures. Besides the methodology, the GUI-based software for performing fusion of various types of ultrasonic data is presented.
利用无损检测结果的融合提高飞机结构的损伤检测能力
摘要在飞机设计和运行中遵循损伤容限原则,结构的无损检测是飞机维修中最重要的阶段之一。因此,使用对飞机结构在运行过程中发生的特定损伤类型敏感的测试方法是必要的。本文研究了不同超声检测方法对飞机部件复合材料结构检测结果的信息融合检测方法的选择和比较。由于在单个结果集中从不同初始信息源获得的关于检测损伤的不同部分的信息存在,所提出的超声扫描融合方法允许增强损伤检测和识别。这种方法可以在飞机部件和结构检验的决策阶段提供帮助。此外,本文还介绍了基于图形界面的超声数据融合软件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Fatigue of Aircraft Structures
Fatigue of Aircraft Structures Engineering-Safety, Risk, Reliability and Quality
CiteScore
0.40
自引率
0.00%
发文量
0
期刊介绍: The publication focuses on problems of aeronautical fatigue and structural integrity. The preferred topics include: full-scale fatigue testing of aircraft and aircraft structural components, fatigue of materials and structures, advanced materials and innovative structural concepts, damage tolerant design of aircraft structure, life extension and management of ageing fleets, structural health monitoring and loads, fatigue crack growth and life prediction methods, NDT inspections, airworthiness considerations.
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