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Increasing Allowable Flight Loads by Improved Structural Modeling

机译:通过改进的结构模型增加允许的飞行载荷

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摘要

The tradeoffs of allowable flight loads and safety of aerospace structures via deterministic and probabilistic design methodologies are analyzed. The methodologies are illustrated by performing allowable flight load calculation of a sandwich panel used in aerospace structures. The effect of using a more accurate prediction technique for interfacial fracture toughness that combines interfacial fracture toughness with mode mixity instead of using the traditional model that disregards mode mixity is explored. It was found that by utilizing this more accurate model with the change in B-basis properties, the deterministic approach allows a 13.1 % increase in the allowable flight load and a reduction of probability of failure by a factor of five. The probabilistic approach allows a 26.5% increase in allowable flight load, while maintaining the original probability of failure.
机译:通过确定性和概率性设计方法,分析了允许飞行载荷与航空航天结构安全之间的权衡。通过对航空航天结构中使用的夹芯板执行允许的飞行载荷计算来说明这些方法。探索了使用更准确的界面断裂韧性预测技术(将界面断裂韧性与众数混合性相结合)而不是使用不考虑众数混合性的传统模型的效果。已经发现,通过利用这种具有B基础特性变化的更精确的模型,确定性方法可以使可允许的飞行载荷增加13.1%,并将故障概率降低五分之一。概率方法允许在允许的飞行载荷增加26.5%的同时保持最初的故障概率。

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