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Service fatigue cracking in an aircraft bulkhead exposed to a corrosive environment

机译:暴露在腐蚀性环境中的飞机舱壁的服务疲劳裂纹

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It has been postulated that for combat aircraft corrosion generally occurs whilst the aircraft is on the ground, while fatigue damage in the form of cracking (if any) grows as result of operational loading which mainly occurs in flight where the conditions are cold and dry and the loading rates are high. This would suggest that (in general) for combat aircraft the effects of the environmental degradation and any fatigue crack growth are decoupled. From a damage prediction viewpoint, this will significantly simplify assessment of such problems (i.e. the growth of fatigue cracks in these aircraft types is not environmentally assisted). This paper presents a supporting case study that examines fatigue cracks that were detected in an F/A-18 Hornet bulkhead during post-service testing and teardown. The in-service phase of the cracking had significant evidence of oxidation on their surfaces which indicated an exposure to a mildly corrosive environment. Both the service and lab- oratory phases of the cracking were the subject of quantitative fractography and estimates of the crack growth rates were made. A comparison of the in-service and the in-test phases of crack growth indicated that no notable effect on the service part of the fatigue crack could be attributed to its exposure to the service environment.
机译:据推测,对于战斗飞机,腐蚀通常发生在飞机在地面上的时候,而由于运行载荷而导致的裂纹(如果有的话)形式的疲劳损伤会增加,这种载荷主要发生在寒冷,干燥和寒冷的飞行条件下。加载率很高。这将表明,(通常)对于战斗机,环境退化的影响与任何疲劳裂纹的增长是分离的。从损坏预测的角度来看,这将大大简化对此类问题的评估(即,这些飞机类型中的疲劳裂纹的增长不受环境的帮助)。本文提供了一个支持案例研究,该案例研究了在役后测试和拆卸期间在F / A-18大黄蜂舱壁中检测到的疲劳裂纹。裂纹的使用阶段具有明显的表面氧化迹象,表明已暴露于轻度腐蚀环境。裂纹的服务阶段和实验室阶段都是定量形貌分析的主题,并估计了裂纹的扩展速率。裂纹扩展的在役阶段和在役阶段的比较表明,对疲劳裂纹的服役部分没有显着影响可归因于其暴露于服役环境。

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