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Corrosion Fatigue Life Prediction of Aircraft Structure Based on Fuzzy Reliability Approach

机译:基于模糊可靠性方法的飞机结构腐蚀疲劳寿命预测

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Material performance of LY12CZ aluminum is greatly degraded because of corrosion and corrosion fatigue, which severely affect the integrity and safety of aircraft structure, especially those of the navy aircraft structure. The corrosion and corrosion fatigue failure process of aircraft structure are directly concerned with many factors, such as load, material characteristics, corrosive environment and so on. The damage mechanism is very complicated, and there are both randomness and fuzziness in the failure process. With consideration of the limitation of those conventional probabilistic approaches for prediction of corrosion fatigue life of aircraft structure at present, and based on the operational load spectrum obtained through investigating service status of the aircraft in naval aviation force, a fuzzy reliability approach is proposed, which is more reasonable and closer to the fact. The effects of the pit aspect ratio, the crack aspect ratio and all fuzzy factors on corrosion fatigue life of aircraft structure are discussed. The results demonstrate that the approach can be applied to predict the corrosion fatigue life of aircraft structure.
机译:LY12CZ铝的材料性能由于腐蚀和腐蚀疲劳而大大降低,这严重影响了飞机结构,特别是海军飞机结构的完整性和安全性。飞机结构的腐蚀和腐蚀疲劳破坏过程与载荷,材料特性,腐蚀环境等诸多因素直接相关。损坏机制非常复杂,并且在故障过程中同时存在随机性和模糊性。鉴于目前传统的概率方法在预测飞机结构腐蚀疲劳寿命方面的局限性,并基于调查海军航空兵飞机服役状况而获得的运行负荷谱,提出了一种模糊可靠性方法,更合理,更接近事实。讨论了凹坑长宽比,裂纹长宽比和所有模糊因素对飞机结构腐蚀疲劳寿命的影响。结果表明,该方法可用于预测飞机结构的腐蚀疲劳寿命。

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