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Residual lifetime prediction in aerospace structures using wholefield laser strain techniques

机译:使用全场激光应变技术预测航空航天结构中的剩余寿命

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The manufacture of aircraft components requires quality control procedures and mechanisms to identify potentially defective units during manufacture, testing stages as well as during service life. Defects can be formed due to random or systematic errors within the manufacturing process and comprise of tiny fatigue fractures within the wheel structure. Use of such defective wheel and tyre units by an aircraft operator could for example lead to growth of these fractures, which in turn can generate sudden unexpected catastrophic failure on landing. Qualification and approval of all wheel units is mandatory under UK Civil Aviation Authority (CAA) and US Federal Aviation Authority America (FAA) regulations as well in the aircraft manufacturer's standards. The regulatory authorities and manufacturers were requesting improvement in testing and traceability of, analysis methods during manufacture and during routine in service maintenance checks. They were thus considering alternative technologies. Speckle shearing interferometry is a non-contact wholefield sensor system used primarily within the aerospace industry, for analysis of defects in composite materials, including the analysis of manufacturing defects in aircraft tyres. This methodology has traditionally been used qualitatively to identify the location of faults such as disbonds. Through laser technology and image processing technology advances, it has become more common for this type of instrumentation to deliver quantitative data. However there has been concern about data integrity, data quality and issues of defects being missed due to instrument sensitivity.
机译:飞机部件的制造需要质量控制程序和机制,以在制造,测试阶段以及使用寿命期间识别潜在的有缺陷的单元。可能由于制造过程中的随机或系统错误而形成缺陷,并且缺陷包括车轮结构内的微小疲劳断裂。飞机操作员使用这种有缺陷的车轮和轮胎装置可能会导致这些断裂的发展,进而导致飞机着陆时突然发生意外的灾难性故障。根据英国民航局(CAA)和美国美国联邦航空局(FAA)法规以及飞机制造商的标准,必须对所有轮单元进行资格鉴定和批准。监管机构和制造商要求在制造过程中以及日常维护保养检查过程中改进测试方法的可追溯性。因此,他们正在考虑替代技术。斑点剪切干涉术是一种非接触式全场传感器系统,主要用于航空航天工业,用于分析复合材料中的缺陷,包括分析飞机轮胎的制造缺陷。传统上,这种方法被定性地用于确定诸如脱胶之类的故障的位置。随着激光技术和图像处理技术的发展,这种类型的仪器传递定量数据已变得越来越普遍。但是,人们一直担心数据完整性,数据质量以及由于仪器灵敏度而遗漏的缺陷问题。

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