首页> 外文会议>ICAS 2012 >INVESTIGATION OF AN IN-SERVICE CRACK SUBJECTED TO AERODYNAMIC BUFFET AND MANOEUVRE LOADS AND EXPOSED TO A CORROSIVE ENVIRONMENT
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INVESTIGATION OF AN IN-SERVICE CRACK SUBJECTED TO AERODYNAMIC BUFFET AND MANOEUVRE LOADS AND EXPOSED TO A CORROSIVE ENVIRONMENT

机译:对空气动力学自助餐和机动载荷进行的服务中裂缝的调查,并暴露于腐蚀性环境

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During routine inspection of a vertical tail attachment stub former from a combat aircraft, cracking was found about an attachment bolt. This former was replaced and was made available for examination. The cause of the cracking was found to be fatigue. The stub had experienced both aerodynamic buffeting and manoeuvre loads (often in combination) and these had produced many prominent fatigue progression markings on the crack surface, and by assuming that these marks were caused by similar events evenly distributed across the service life of the stub a crack growth curve was derived. During the life of the aircraft, significant down-time periods for maintenance had occurred and evidence of corrosion was found in discrete areas of the fatigue crack's surface that suggested that they were the result of these periods of inactivity. By assuming that the corrosion occurred whilst the aircraft was on the ground it was possible to correlate the crack growth curve to known flight hours.
机译:在从战斗机的垂直尾部附接存根成员的常规检查期间,发现了附件螺栓的开裂。这位前者被替换,并获得了考试。发现裂缝的原因是疲劳的。该存根经历了空气动力学和机动载荷(通常组合),这些裂缝表面上产生了许多显着的疲劳进展标记,并且假设这些标记是由均匀分布在存根的使用寿命的类似事件引起的衍生裂纹生长曲线。在飞机的生命期间,已经发生了维护的重要停机时间,并且在疲劳裂纹表面的离散区域中发现了腐蚀的证​​据,表明它们是这些不活跃的结果。通过假设飞机上发生腐蚀而发生腐蚀,可以将裂缝生长曲线与已知的飞行时间相关联。

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