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首页> 外文期刊>Journal of Nondestructive Evaluation >X-ray Diffraction Based Residual Stress Measurements for Assessment of Fatigue Damage and Rejuvenation Process for Undercarriages of Aircrafts
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X-ray Diffraction Based Residual Stress Measurements for Assessment of Fatigue Damage and Rejuvenation Process for Undercarriages of Aircrafts

机译:基于X射线衍射的残余应力测量,用于评估飞机起落架的疲劳损伤和复兴过程

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摘要

Assessment of fatigue damage during the service life of any component is important to ensure its continued integrity and predict the remnant life of the component. This is important to reduce the overall life cycle cost of the components. A component undergoing fluctuating stresses experiences fatigue damage and this is one of the major causesof failure of engineering components. Accumulation of fatigue damage takes place in undercarriages of aircrafts due to fluctuating stresses experienced after each landing. The accumulated fatigue damage has been assessed by carrying out residual stress measurements at stress critical regions of the undercarriages using X-ray diffraction technique. In the undercarriages, high compressive residual stresses are introduced as part of fabrication process, to enhance the fatigue resistance. These compressive residual stresses get redistributed due to the localized plastic deformation and become tensile with the increase in number of landings. The life of the undercarriages is extended by employing a rejuvenation treatment to overcome the surface tensile residual stresses, by first removing the material from stress critical regions, followed by shot peening treatment which introduces surface compressive stresses, thus enabling continued use of the undercarriages. The additional thickness provided at the design stage enables removal of fatigue damaged surface layers without affecting the overall structural integrity. The residual stress redistribution in stress critical regions of the struts of the undercarriages was measured and found to match qualitatively well with the values predicted from FEM based simulations.
机译:评估任何组件使用寿命期间的疲劳损伤对于确保其持续完整性和预测组件的剩余寿命非常重要。这对于减少组件的整个生命周期成本很重要。承受波动应力的组件会遭受疲劳破坏,这是工程组件失效的主要原因之一。由于每次着陆后承受的波动应力,飞机起落架中会累积疲劳损伤。通过使用X射线衍射技术在底盘的应力关键区域进行残余应力测量,可以评估累积的疲劳损伤。在底盘系统中,作为制造过程的一部分引入了高压缩残余应力,以增强抗疲劳性。这些压缩残余应力由于局部塑性变形而重新分布,并随着平台数量的增加而变得张拉。通过采用回春处理来克服表面张力残余应力,延长起落架的使用寿命,方法是先从应力关键区域去除材料,然后进行喷丸处理,以引入表面压缩应力,从而可以继续使用起落架。在设计阶段提供的附加厚度可以去除疲劳损坏的表面层,而不会影响整体结构的完整性。测量了起落架支杆应力关键区域中的残余应力再分布,并发现其与基于FEM的模拟预测的值在质量上非常匹配。

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