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Design and Strength Analysis of Curved-Root Concept for Compressor Rotor Blade in Gas Turbine

机译:燃气轮机压气机转子叶片弧根概念的设计与强度分析

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The motivation of the article is fatigue and fretting issue of the compressor rotor blades and disks. These phenomena can be caused by high contact pressures leading to fretting occurring on contact faces in the lock (blade-disk connection, attachment of the blade to the disk). Additionally, geometrical notches and high cyclic loading can initiate cracks and lead to engine failures. The paper presents finite element static and modal analyses of the axial compressor 3rd rotor stage (disk and blades) of the K-15 turbine engine. The analyses were performed for the original trapezoidal/dovetail lock geometry and its two modifications (new lock concepts) to optimize the stress state of the disk-blade assembly. The cyclic symmetry formulation was used to reduce modelling and computational effort.
机译:该文章的动机是压缩机转子叶片和盘的疲劳和微动问题。这些现象可能是由于较高的接触压力导致在锁的接触面上发生微动(刀片与磁盘的连接,刀片与磁盘的连接)引起的。此外,几何缺口和高周期性载荷会引发裂纹并导致发动机故障。本文介绍了K-15涡轮发动机的轴向压缩机第三转子级(盘和叶片)的有限元静态和模态分析。对原始梯形/燕尾锁几何形状及其两个修改形式(新的锁紧概念)进行了分析,以优化磁盘叶片组件的应力状态。循环对称公式用于减少建模和计算量。

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