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首页> 外文期刊>Проблемы прочностиПроблемы прочности: на рус.укр.и анг.языках >Fatigue Strength and Life Prediction of a MAR-M247 Nickel-Base Superalloy Gas Turbine Blade with Multiple Carbide Inclusions
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Fatigue Strength and Life Prediction of a MAR-M247 Nickel-Base Superalloy Gas Turbine Blade with Multiple Carbide Inclusions

机译:具有多种碳化物夹杂物的MAR-M247镍基超合金燃气轮机燃气涡轮机的疲劳强度和寿命预测

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摘要

Casting of a gas turbine blade from MAR-M247 nickel-base superalloy is followed by multiple carbide precipitates as a result of solidification. The microstructure of carbide was established with scanning electron microscopy and energy spectrum analysis. A finite element model simulating the blade with a random carbide precipitate is constructed using ANSYS software, and stress-strain evaluation is performed. The blade operation conditions are realized in a vibratory-tensile combined test setup with stress measurements using strain gauges arranged on different parts of the blade. The respective von Mises equivalent stresses obtained in simulation and test measurements are found to be comparable and can be used to assess the blade fatigue life based on the available fatigue curves and Palmgren - Miner rule of damage accumulation. Simulation and experimental results are the basis for plotting the relationship between the volumetric ratio of precipitates in the blade and its fatigue life. The results obtained at room temperature can; be extrapolated to the elevated ones to provide more reliable prediction of the superalloy blade fatigue and creep-fatigue life values.
机译:从MA-M247镍基超合金铸造燃气轮机叶片,然后是凝固的多个碳化物沉淀物。建立了碳化物的微观结构,用扫描电子显微镜和能谱分析建立。使用ANSYS软件构建模拟随机碳化物沉淀的叶片的有限元模型,并进行应力 - 应变评估。叶片操作条件在振动 - 拉伸组合测试设置中实现,使用布置在刀片的不同部分上的应变仪的应力测量。发现在模拟和测试测量中获得的各自的von误判等效应力是可比的,可用于评估基于可用疲劳曲线和掌握损伤积累的叶片疲劳寿命的叶片疲劳寿命。模拟和实验结果是绘制叶片中沉淀物的体积比与其疲劳寿命之间的关系的基础。在室温下可以获得的结果;将其外推到升高的,以提供更可靠地预测超合金叶片疲劳和蠕变 - 疲劳寿命值。

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