气动弹性
空气动力学
直升机旋翼
有限元法
结构工程
刀(考古)
转子(电动)
理论(学习稳定性)
叶片单元动量理论
纤维增强塑料
叶片单元理论
复合数
工程类
计算机科学
材料科学
机械工程
航空航天工程
涡轮叶片
复合材料
机器学习
涡轮机
作者
A. Chellil,A. T. Settet,S. Lecheb,Abdelkader Nour,Azzedine Yahiaoui,Hocine Kébir
标识
DOI:10.1109/icmsao.2013.6552604
摘要
This work presents a coupled motion of a helicopter rotor blade and stability analysis response in the hovering flight condition reinforced by GFRP fiber. The search for increasingly high performances in the field of the helicopters brings to the development of materials having higher rigidities and specific resistances. The use of the composite material blades which are not sensitive to corrosion, offers a good aeroelastic Stability. On the basis of aerodynamic model, the use of the finite element method makes it possible to develop a three dimensional model of the blade and to establish dynamic equations of the movement. Numerical calculations of the model developed with a three dimensional beam type, taking into account the aeroelastic interaction, prove that the composites offer better results compared to ordinary materials.
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