工程设计学报
工程設計學報
공정설계학보
JOURNAL OF ENGINEERING DESIGN
2015年
2期
129-136
,共8页
组合转子%疲劳微裂纹%退化量%接触界面刚度
組閤轉子%疲勞微裂紋%退化量%接觸界麵剛度
조합전자%피로미렬문%퇴화량%접촉계면강도
combined rotor%fatigue crack%degradation degree%contact interface stiffness
燃气轮机的性能下降很大程度上是由于燃机的核心部件———组合转子的退化导致的,因此,非常有必要重点研究组合转子的性能退化规律。组合转子局部结构的损伤,必将导致整体性能的下降。从该角度出发,建立组合转子的有限元模型,对组合转子拉杆裂纹进行扩展计算,定义组合转子性能退化量,分析了不同尺寸的拉杆裂纹对转子性能退化的影响。研究结果表明:随着裂纹尺寸的逐渐增加,组合转子的退化速率逐渐加快;不同微裂纹拉杆的分布形式对组合转子退化程度影响不同,当微裂纹拉杆相邻分布时组合转子退化速率最快,裂纹拉杆180°分布时组合转子退化速率最慢。
燃氣輪機的性能下降很大程度上是由于燃機的覈心部件———組閤轉子的退化導緻的,因此,非常有必要重點研究組閤轉子的性能退化規律。組閤轉子跼部結構的損傷,必將導緻整體性能的下降。從該角度齣髮,建立組閤轉子的有限元模型,對組閤轉子拉桿裂紋進行擴展計算,定義組閤轉子性能退化量,分析瞭不同呎吋的拉桿裂紋對轉子性能退化的影響。研究結果錶明:隨著裂紋呎吋的逐漸增加,組閤轉子的退化速率逐漸加快;不同微裂紋拉桿的分佈形式對組閤轉子退化程度影響不同,噹微裂紋拉桿相鄰分佈時組閤轉子退化速率最快,裂紋拉桿180°分佈時組閤轉子退化速率最慢。
연기륜궤적성능하강흔대정도상시유우연궤적핵심부건———조합전자적퇴화도치적,인차,비상유필요중점연구조합전자적성능퇴화규률。조합전자국부결구적손상,필장도치정체성능적하강。종해각도출발,건립조합전자적유한원모형,대조합전자랍간렬문진행확전계산,정의조합전자성능퇴화량,분석료불동척촌적랍간렬문대전자성능퇴화적영향。연구결과표명:수착렬문척촌적축점증가,조합전자적퇴화속솔축점가쾌;불동미렬문랍간적분포형식대조합전자퇴화정도영향불동,당미렬문랍간상린분포시조합전자퇴화속솔최쾌,렬문랍간180°분포시조합전자퇴화속솔최만。
The degradation of combined rotor ,the core parts of the gas turbine ,decreases the per‐formance of gas turbine in a large extent .In view of this ,it is particularly important to research the performance degradation of the combined rotor .The performance degradation characteristics of combined rotor were discussed ,from the perspective view of performance degradation caused by rod crack .The finite element model of the combined rotor was established .The crack exten‐sion rate of the rod was gotten by using the finite element model .Then ,the measurement of per‐formance degradation which was caused by micro cracks was put forward ,and the assessment of performance degradation was completed as well .The results showed that the micro crack exten‐sion rate got faster when the size of crack increased ;the microcrack tie rod with different distri‐bution form did make a difference to the degradation of the combined rotor as the adjacent microc‐rack tie rods led to the fastest degradation rate and the 180° distributed microcrack tie rods led to the slowest degradation rate .