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STRESS ANALYSIS OF FAN BLADES SUBJECTED TO HAIL IMPACT

机译:对冰雹撞击的风扇叶片的应力分析

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The rapid development of modern aircraft technology is increasingly demanding aero-engines. It not only requires aeroengines to ignite and take off under suitable conditions, but also faces various severe weather and foreign object impact tests during flight. The stress variation caused by the impact of an aero-engine fan blade is studied. Because the compressor guide vane has a small solidity, the hail may not only hit the vane when striking the blade, but also may hit the first-stage rotor blade. The effects of hail impact on the vanes and rotor blades, especially the impact on the blade strength, were studied. Firstly, the UG software is used for geometric modeling based on the existing vane and rotor geometry data. Secondly, the ANSYS/LSDYNA software is used to simulate the process when the hail hits different positions of the blade and rotor at different speeds. To explore the influence of hail impact on the blade. It is found that when the hail hits the guide vane, the maximum effective stress of the vane does not exceed the yield stress of the material. When the hail hits the rotor, the maximum effective stress of the rotor is closely related to the rotor speed, the hail incident velocity, and the relative position of the rotor and the hail. When the impact is severe, the maximum effective stress will exceed the yield stress of the material, and even the blade may be bent and pitted, which has an important impact on the strength and life of the blade.
机译:现代飞机技术的快速发展越来越苛刻的航空发动机。它不仅需要航空发动机在适当的条件下点燃和起飞,而且在飞行期间也面临各种恶劣天气和异物影响试验。研究了气动发动机风扇叶片的影响引起的应力变化。因为压缩机导向叶片具有小的稳定性,所以彼此可能不仅在撞击刀片时撞击叶片,而且还可以击中第一级转子叶片。研究了冰雹影响对叶片和转子叶片的影响,尤其是对叶片强度的影响。首先,UG软件用于基于现有叶片和转子几何数据的几何建模。其次,ANSYS / LSDYNA软件用于模拟当冰雹以不同速度击中刀片和转子的不同位置时的过程。探索冰雹影响对刀片的影响。发现当冰雹击中导向叶片时,叶片的最大有效应力不会超过材料的屈服应力。当冰雹击中转子时,转子的最大有效应力与转子速度,冰雹入射速度和转子和冰雹的相对位置密切相关。当冲击严重时,最大有效应力将超过材料的屈服应力,甚至叶片也可以弯曲和凹陷,这对叶片的强度和寿命具有重要影响。

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