中国机械工程 ›› 2012, Vol. 23 ›› Issue (16): 1920-1924,1961.

• 机械基础工程 • 上一篇    下一篇

不同冠间配合叶盘系统振动响应局部化问题研究

王艾伦;曹旭辉;孙渤海   

  1. 中南大学高性能复杂制造国家重点实验室,长沙,410083
  • 出版日期:2012-08-25 发布日期:2017-05-27
  • 基金资助:
    国家重点基础研究发展计划(973计划)资助项目(2007CB707706);中南大学研究生学位论文创新项目 
    National Program on Key Basic Research Project (973 Program)(No. 2007CB707706)

#br# Vibration Response Localization of  Bladed Disk with Different Shrouded Fit Modes

Wang Ailun;Cao Xuhui;Sun Bohai   

  1. Key Laboratory of High Performance and Complex Manufacturing,Central South University,Changsha,410083
  • Online:2012-08-25 Published:2017-05-27
  • Supported by:
     
    National Program on Key Basic Research Project (973 Program)(No. 2007CB707706)

摘要:

建立了考虑冠间配合形式的自带冠叶盘系统连续参数模型,对比分析了谐调和随机失谐两种状态下冠间紧配合和松配合叶盘系统振动局部化特征,揭示了不同冠间配合叶盘系统的振动规律。研究发现,谐调状态下,冠间松配合自带冠叶盘系统不会出现振动局部化现象,而冠顶摩擦导致冠间紧配合自带冠叶盘系统
亚谐振动的发生,并且出现了较弱的振动局部化现象;叶片随机失谐状态下,冠间松配合叶盘系统将不再具备严格的单周期振动特征,冠间紧配合叶盘系统不再出现严格的亚谐振动,振动响应局部化的复杂性增加;与紧配合自带冠叶盘系统相比,松配合自带冠叶盘系统的振动响应局部化对随机失谐更敏感。

关键词: 冠间配合形式, 叶盘系统, 随机失谐, 振动响应局部化

Abstract:

A continuous parameter model with different shrouded fit modes was established.The characteristics of vibration localization of bladed disk under different conditions were compared,and the vibration discipline of different bladed disks was researched.The results show that the vibration localization will not appear in bladed disk with loose fit under tuned conditions,and the sub-tuned vibration and faint vibration localization will appear in bladed disk with tight fit under tuned conditions due to frictional factors,
while the vibration localization will appear in bladed disk with loose fit under random mistuned conditions,and the sub-tuned periodic vibration will not appear in bladed disk with tight fit under random mistuned conditions,and the vibration response localization is more complicated.The vibration localization of bladed disk with loose fit is more sensitive to random mistuning than the vibration localization of bladed disk with tight fit.

Key words: shrouded fit mode, bladed disk, random mistuning, vibration response localization

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