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Flutter Failure Risk Assessment for Damage-Tolerant Composite Aircraft Structures

机译:耐损伤复合材料飞机结构颤振失效风险评估

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University of Washington, Seattle, Washington 98195-2400;University of Washington, Seattle, Washington 98195-2400;University of Washington, Seattle, Washington 98195-2400;University of Washington, Seattle, Washington 98195-2400;%The quantitative assessment of the effects of damage and material degradation on the dynamic aeroelastic reliability of composite aircraft has become more challenging in recent years due to the increased use of composites in main structural components of passenger aircraft This paper presents a method for quantifying the flutter reliability of aircraft composite structures in the presence of multiple uncertainties. Automated rapid simulation tools for predicting flutter speeds of composite airframes subject to multiple uncertainties serve a key role and are used in Monte Carlo simulations. A thorough discussion is presented of the flutter uncertainty of composite aircraft covering material degradation, damage, repair, and design and certification practices, as well as maintenance procedures. The effectiveness of the method and its potential are illustrated using a composite tail/rudder structure representing a typical passenger aircraft structure. Conclusions are drawn and recommendations for future work are made.
机译:华盛顿大学西雅图华盛顿分校98195-2400;华盛顿大学西雅图华盛顿分校98195-2400;华盛顿大学西雅图华盛顿分校98195-2400;华盛顿大学西雅图华盛顿分校98195-2400;%近年来,由于客机主要结构部件中复合材料的使用增加,损坏和材料退化对复合材料飞机动态气动弹性可靠性的影响变得越来越具有挑战性。本文提出了一种量化飞机复合结构颤振可靠性的方法。存在多个不确定性。用于预测受多种不确定因素影响的复合机体扑动速度的自动快速仿真工具发挥了关键作用,并在蒙特卡洛仿真中使用。全面讨论了复合材料飞机的颤动不确定性,包括材料退化,损坏,维修,设计和认证实践以及维护程序。使用代表典型客机结构的复合尾翼/方向舵结构说明了该方法的有效性及其潜力。得出结论并提出对未来工作的建议。

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