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Numerical Simulation and Experimental Investigation of the Failure of a Gas Turbine Compressor Blade

机译:燃气轮机压气机叶片失效的数值模拟与实验研究

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This paper is concerned with the premature failures occurred in the high pressure compressor section of the gas turbine of HESA power plant in Iran. Metallurgical and mechanical properties of the blade alloy were evaluated. Fractography investigations were carried out on the fracture surface of the blade roots using scanning electron microscopy. Stress and fracture simulations were conducted using ANSYS software in both 2D and 3D dimensions under centrifugal, aerodynamic and contact forces. The aerodynamic forces were evaluated using FLUENT software. The results showed no metallurgical and mechanical deviations for the blade material from standards. SEM fractography showed different aspects of fretting fatigue including multiple crack initiation sites, fatigue beach marks, debris particles, and a high surface roughness on the edge of contact (EOC). The simulation results showed that there was a high stress gradient at the EOC of the blade which is one of the most significant characteristics of the fretting fatigue. Another analysis was performed to simulate the fracture by creating an initial crack on the EOC. The stress fields and stress intensity factors for modes I, II and III were evaluated along the crack front. The results indicated a strong stress intensity factor for mode I at the EOC.
机译:本文涉及伊朗HESA电厂燃气轮机的高压压缩机部分中发生的过早故障。评估了叶片合金的冶金和机械性能。使用扫描电子显微镜对叶片根部的断裂表面进行了断口扫描研究。使用ANSYS软件在离心力,空气动力和接触力的作用下,分别在2D和3D尺寸上进行了应力和断裂模拟。使用FLUENT软件评估空气动力。结果表明叶片材料与标准没有冶金和机械偏差。 SEM断层扫描显示微动疲劳的不同方面,包括多个裂纹萌生部位,疲劳海滩痕迹,碎屑颗粒以及接触边缘(EOC)的高表面粗糙度。仿真结果表明,叶片的EOC处存在较高的应力梯度,这是微动疲劳的最重要特征之一。通过在EOC上产生初始裂纹,进行了另一次分析以模拟断裂。沿裂纹前沿评估了模式I,II和III的应力场和应力强度因子。结果表明,在EOC处,模式I具有很强的应力强度因子。

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