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The investigation of the coupled vibration in a flexible-disk blades system considering the influence of shaft bending vibration

机译:考虑轴弯曲振动影响的软盘叶片系统耦合振动研究

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摘要

The continuum model of flexible shaft-disk-blades coupling system is established to investigate the coupling vibration among shaft-bending, shaft-torsion, disk-transverse and blade-bending. The influence of shaft bending rigidity, disk transverse rigidity and rotational speed on natural frequencies and mode shapes are particularly researched. The present paper discovers that when shaft bending is negligible, there are three types of coupling modes, shaft torsion-disk transverse-blade bending (TDB), disk transverse-blade bending (DB) and blade bending-blade bending (BB). As shaft goes further flexible, the shaft bending-disk bending-blade bending (SDB) mode occurs. What’s more important is that shaft bending only couples with disk’s 1-nodal diameter mode. Then the influence of disk transverse on coupling vibration is studied. With the decrease of disk’s transverse rigidity, the repeated BB modes bifurcate into BB and DB modes, TB (shaft torsion-blade bending) and SB (shaft bending-blade bending) modes shift to TDB and SDB modes, respectively. Besides, disk’s n-nodal (n ≥ 2) diameter modes always couples with blade bending whenβ ≠ 0°. At last, the effect of rotational speed on the frequencies is investigated, concluding that shaft flexibility and disk flexibility can significantly affect the critical speeds of the system.
机译:建立了挠性轴-盘-叶片耦合系统的连续模型,研究了轴弯曲,轴扭转,盘横向和叶片弯曲之间的耦合振动。特别研究了轴弯曲刚度,圆盘横向刚度和转速对固有频率和振型的影响。本文发现,当轴弯曲可忽略不计时,存在三种类型的耦合模式:轴扭力盘横向叶片弯曲(TDB),盘横向叶片弯曲(DB)和叶片弯曲叶片弯曲(BB)。随着轴变得更加柔软,轴弯曲盘弯曲叶片弯曲(SDB)模式就会出现。更重要的是,轴弯曲仅与圆盘的1节点直径模式耦合。然后研究了圆盘横向对耦合振动的影响。随着圆盘横向刚度的降低,重复的BB模式分为BB模式和DB模式,TB(轴扭转叶片弯曲)和SB(轴弯曲叶片弯曲)模式分别转换为TDB和SDB模式。此外,当β≠0°时,圆盘的n节点(n≥2)直径模式始终与叶片弯曲耦合。最后,研究了转速对频率的影响,认为轴的柔韧性和盘的柔韧性会严重影响系统的临界转速。

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