...
首页> 外文期刊>Shock and vibration >The influence of a mistuned blade's staggle angle on the vibration and stability of a shaft-disk-blade assembly
【24h】

The influence of a mistuned blade's staggle angle on the vibration and stability of a shaft-disk-blade assembly

机译:雾化叶片的凸角对轴-盘-叶片组件的振动和稳定性的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The influence on coupling vibrations and stability among shaft-torsion, disk-transverse and blade-bending of a rotor system with a mistuned blade's staggle angle was investigated analytically. A shaft-disk-blade system has been found existing two types of coupling vibrations, disk-blade (DB), and blade-blade (BB) modes when the shaft was assumed rigid. If the shaft's torsional flexibility was taken into account, an additional type of coupling modes, shaft-disk-blade (SDB), appeared. When an angle-mistuned blade existed, the blades periodicity was destroyed and it was found to change not only the natural frequencies but also the types of modes. Due to blade's mistune, the shaft torsion had to participate to balance such that DB modes vanished and replaced by SDB modes. A mistuned staggle angle was numerically found to alter the natural frequencies in an almost linear trend. At last, the rotational effects were found to merge frequency loci and eventually reached an instability point. Very interestingly, a mistuned blade diminished the possible instability caused by blade-dominating modes, which existed in a perfect and periodic rotor. In words, the rotor might benefit from a mistuned blade from the stability viewpoint. The shaft-dominating mode, yet, was unaffected by the mistune and retained a possible instability.
机译:分析研究了叶片错步角对转子系统的轴扭,盘横,叶片弯曲对耦合振动和稳定性的影响。当轴被假定为刚性时,已经发现轴-磁盘-叶片系统存在两种类型的耦合振动,即磁盘-叶片(DB)和叶片-叶片(BB)模式。如果考虑到轴的扭转挠性,则会出现另一种类型的耦合模式,即轴-盘-叶片(SDB)。当存在角度失调的叶片时,叶片的周期性被破坏,不仅改变了固有频率,而且改变了模式类型。由于叶片的失调,轴扭转必须参与以达到平衡,以使DB模式消失并被SDB模式取代。在数值上发现了不均匀的滞止角会以几乎线性的趋势改变固有频率。最后,发现旋转效应会合并频率轨迹并最终达到不稳定性点。很有意思的是,雾化的叶片减少了在理想且周期性的转子中存在的叶片主导模式可能引起的不稳定性。换句话说,从稳定性的角度来看,转子可能会受益于雾化的叶片。然而,轴支配模式不受失调的影响,并保持了可能的不稳定性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号