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定向凝固涡轮叶片高温低周疲劳的破坏特点
引用本文:孙瑞杰,闫晓军,聂景旭.定向凝固涡轮叶片高温低周疲劳的破坏特点[J].航空学报,2011,32(2):337-343.
作者姓名:孙瑞杰  闫晓军  聂景旭
作者单位:北京航空航天大学能源与动力工程学院,北京,100191
基金项目:国家自然科学基金,航空科学基金,教育部"新世纪优秀人才支持计划"
摘    要:针对几何形状完全相同但材料不同的两种涡轮叶片,采用相同的试验方法进行高温低周疲劳试验,普通铸造K403合金叶片和定向凝固DZ22B合金叶片却在不同的部位破坏,K403合金叶片在试验考核的榫齿部位断裂,而DZ22B合金叶片的榫齿在叶身根部断裂前均未出现裂纹.为了解释上述试验结果,展开了两类叶片试验条件应力场的有限元分析和...

关 键 词:涡轮叶片  定向凝固  低周疲劳  有限元方法  晶粒

Failure Characteristics of Directional Solidification Turbine Blade Under High Temperature Low Cycle Fatigue Load
SUN Ruijie,YAN Xiaojun,NIE Jingxu.Failure Characteristics of Directional Solidification Turbine Blade Under High Temperature Low Cycle Fatigue Load[J].Acta Aeronautica et Astronautica Sinica,2011,32(2):337-343.
Authors:SUN Ruijie  YAN Xiaojun  NIE Jingxu
Institution:School of Jet Propulsion,Beijing University of Aeronautics and Astronautics,Beijing 100191,China
Abstract:Under high temperature low cycle fatigue (LCF) loads, directional solidification (DS) turbine blades present quite different failure features as compared with equiaxed (EQ) turbine blades with identical geometry and similar stress distribution. All the EQ blade specimens fractured in the key section located at the serration part of the blade. However, this part of the DS blade specimens exhibited no microcrack before the fracture in the root of the blade body. Obviously, the damage characteristic of the DS blade is different from that of the conventional EQ blade, which fractures at the highest stress point. Further theoretical investigation indicates that grain structure of the DS blade has a significant impact on both the properties of the material and its subsequent load capacity. For the DS blade, the LCF damage is not only related to its stress field, but also affected by the microstructure of various parts.
Keywords:turbine blade  directional solidification  low cycle fatigue  finite element method  grain
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