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Numerical investigation of impact-induced damage of auxiliary composite fuel tanks on Korean Utility Helicopter

机译:韩国实用直升机对辅助复合燃料箱的冲击损伤数值研究

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摘要

This study analysed the impact-induced damage on the auxiliary composite fuel tank of a Korean Utility Helicopter. A coupled Eulerian-Lagrangian method was applied to consider the sloshing of fuel inside the tank. The composite damage modes were contemporarily considered by applying the Hashin failure criteria. We found that the degraded area due to the large and global deformation of the fuel tank generally decreases as the amount of fuel increases. However, the completely failed area due to the large and global deformation was altered by the strengths dominantly reflected into Hashin failure criteria. Meanwhile, the local damage and failure near the impact point generally increase due to the repulsive force induced by the inertia of the fuel as the amount of fuel increases. Accordingly, the impact behavior and damage according to the amount of the fuel will be used to build the basic data for bird strike tests and safety assessment of liquid-filled composite tanks.
机译:这项研究分析了韩国实用直升机对复合燃料油箱的撞击造成的损坏。应用了耦合的欧拉-拉格朗日方法来考虑油箱内燃料的晃动。通过应用Hashin破坏准则,可以同时考虑复合损伤模式。我们发现,由于燃料箱大而整体变形而导致的退化区域通常随着燃料量的增加而减少。但是,由于大而整体变形而导致的完全失效区域被Hashin失效准则中主要反映的强度所改变。同时,随着燃料量的增加,在冲击点附近的局部损坏和故障通常由于由燃料的惯性引起的排斥力而增加。因此,根据燃料量的冲击行为和破坏将用于建立鸟击试验和充液复合罐安全评估的基本数据。

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