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核电汽轮机转子在低周疲劳与高周疲劳交互作用下裂纹扩展寿命的研究
引用本文:史进渊.核电汽轮机转子在低周疲劳与高周疲劳交互作用下裂纹扩展寿命的研究[J].机械工程学报,2015,51(22):152-158.
作者姓名:史进渊
作者单位:上海发电设备成套设计研究院上海200240
基金项目:国家重大专项研究课题资助项目(2013ZX06005007)
摘    要:提出核电汽轮机转子在低周疲劳与高周疲劳交互作用下裂纹扩展寿命的计算与评定方法。介绍核电汽轮机转子的低周疲劳与高周疲劳的应力幅与应力范围、低周疲劳裂纹扩展寿命与高周疲劳扩展寿命的计算方法。给出了核电汽轮机转子在低周疲劳与高周疲劳交互作用下裂纹扩展日历寿命的计算与评定方法,以及1 000 MW级核电汽轮机焊接低压转子疲劳裂纹扩展日历寿命的计算与改进的应用实例。结果表明,高周疲劳对汽轮机转子疲劳裂纹扩展日历寿命有比较大的影响,新研制核电汽轮机的转子结构设计和在役核电汽轮机的转子安全性评定,需要评估转子在低周疲劳与高周疲劳交互作用下裂纹扩展 寿命。

关 键 词:低周疲劳  高周疲劳  核电汽轮机  裂纹扩展寿命  转子  
收稿时间:2015-01-13

Study on Crack Propagation Life under Low Cycle Fatigue and High Cycle Fatigue of Nuclear Steam Turbine Rotors
SHI Jinyuan.Study on Crack Propagation Life under Low Cycle Fatigue and High Cycle Fatigue of Nuclear Steam Turbine Rotors[J].Chinese Journal of Mechanical Engineering,2015,51(22):152-158.
Authors:SHI Jinyuan
Affiliation:Shanghai Power Equipment Research Institute, Shanghai 200240
Abstract:The calculation and assessment methods for the crack propagation life under low cycle fatigue and high cycle fatigue of nuclear steam turbine rotors is presented. The low high fatigue cycle stress amplitude and stress range as well as the crack propagation life calculation methods for low cycle fatigue and high cycle fatigue of nuclear steam turbine rotors are introduced. The calculation and assessment methods for the crack propagation calendar life under low cycle fatigue and high cycle fatigue of nuclear steam turbine rotors are given together with an application example for calculation and improvement of the fatigue crack propagation calendar life of a low pressure welded rotor for 1 000 MW nuclear steam turbines. The example results indicate that effect of the high cycle fatigue on the fatigue crack propagation calendar life of nuclear steam turbine rotors is bigger, it is necessary that assessment for the crack propagation life under low cycle fatigue and high cycle fatigue of rotors in the rotor structure design of new development for nuclear steam turbine and the rotor safety assessment for operation steam turbine for nuclear power plants.
Keywords:crack propagation life  high cycle fatigue  low cycle fatigue  nuclear steam turbine  rotor  
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