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Analysis of Constraint State and Frequency of an Axial-Flow Compressor Blade

机译:轴流压气机叶片的约束状态和频率分析

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The constrain condition and frequency characteristic of the blade of an axial-flow compressor are researched. Firstly, the effect of spin softening and stress stiffening on dynamic frequency is analyzed from the theoretical. Under considering the effect of spin softening and stress stiffening, the dynamic eigen-frequency of the blade are calculated, and the results show that the stress stiffening effect have significant impact on all order natural frequency, but low natural frequencies are mainly influenced by the spin softening effect. The constraints of circumferential direction and tooth surface are analyzed, according to the structure and installations of the blade. Clamping force in circumferential direction are simulated using spring element and different stiffness. The influence of different bracing rigidity on the natural frequency are analyzed, the results show that different bracing rigidity have significant impact on the natural frequency of blade, especially to the high frequencies. The size of the clamping force should be strictly controlled during the blade installation.
机译:研究了轴流压缩机叶片的约束条件和频率特性。首先,从理论上分析了自旋软化和应力刚化对动态频率的影响。在考虑自旋软化和应力加劲的影响后,计算了叶片的动态本征频率,结果表明,应力加劲效果对所有阶次固有频率都有显着影响,但低频固有频率主要受自旋影响软化效果。根据叶片的结构和安装情况,分析了圆周方向和齿面的约束。使用弹簧元件和不同的刚度模拟圆周方向的夹紧力。分析了不同的支撑刚度对固有频率的影响,结果表明,不同的支撑刚度对叶片的固有频率,尤其是高频具有显着影响。在刀片安装过程中,应严格控制夹紧力的大小。

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