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Thermo-mechanical fatigue characteristics of CMSX-4 applied to the high-pressure turbine first-stage single-crystal rotor blade

机译:CMSX-4的热机械疲劳特性施加到高压涡轮机第一级单晶转子叶片

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摘要

To increase efficiency and reduce greenhouse gas emissions, the operating temperatures of combined power plants have increased. As a result, high-pressure turbine (HPT) blades are subjected to increasingly harsh operating conditions, which cause thermo-mechanical fatigue (TMF) damage and reduce the lifetimes of the gas turbine blades. Therefore, accurate analysis of the TMF characteristics caused by various strain and temperature conditions is needed to ensure the integrity and provide accurate lifetime assessments of the components of gas turbines. However, there have been few studies on the TMF characteristics of single crystal Ni-based superalloys, particularly CMSX-4. In this study, the TMF characteristics of a oriented single crystal Ni-based superalloy CMSX-4, which is used for HPT first-stage rotor blades, were investigated via strain-controlled TMF tests and the fatigue fractogra-phy was observed using scanning electron microscopy. Additionally, the relationship between the fatigue lifetimes of CMSX-4 and IN738LC was evaluated, and the tensile properties and microstructures at different temperature were investigated. Such TMF test results can be useful for analyzing the thermo-mechanical behavior and predicting the lifetimes of blades.
机译:为了提高效率,减少温室气体排放,综合发电厂的工作温度增加。结果,高压涡轮机(HPT)叶片经受越来越苛刻的操作条件,这导致热机械疲劳(TMF)损坏并减少燃气涡轮叶片的寿命。因此,需要精确地分析由各种应变和温度条件引起的TMF特性,以确保完整性并提供对燃气轮机组件的准确寿命评估。然而,关于单晶Ni基超合金的TMF特性,特别是CMSX-4的研究。在该研究中,通过应变控制的TMF试验研究了用于HPT第一阶段转子叶片的定向单晶Ni基超合金CMSX-4的TMF特性,并使用扫描电子观察疲劳乳腺素PHY。显微镜。另外,评价CMSX-4和IN738LC的疲劳寿命之间的关系,并研究了不同温度下的拉伸性能和微观结构。这种TMF测试结果可用于分析热机械行为并预测叶片的寿命。

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