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Lumped parameter modelling of turbine blade packets for analysis of modal characteristics and identification of damage induced mistuning

机译:涡轮叶片包的集总参数建模,用于模态特征分析和损伤感应失灵识别

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Turbine blade vibration of packeted blade-disk system is generally studied on the assumption that all the blades are identical and tuned together geometrically as well as structurally. However in practice, blade to blade variations exist and sometimes the variation may be introduced by the onset of a local damage or a crack. It has been shown that even a small mistuning can lead to stress build up through mode localisation under forced vibration. There have been many analytical and FEM based studies for response prediction and stress localisation under mistuned conditions but few have attempted identification of damage from the blade-disk vibration response. Present work has two parts; in the first part tuned blade packet is analysed using lumped parameter model and eigen value problem is formulated involving special Ja-cobi matrices. Modal spectrum is characterised as a function of number of blades in the packet and lacing wire to blade stiffness ratio and it is demonstrated that the ratio can be estimated from the modal spectrum. In the second part mistuning in the blade packet is considered due to both blade damage and lacing wire damage and representative modal characteristics are investigated. It is mathematically shown that in case of lacing wire damage, fundamental sub-modal natural frequency does not change, whereas it changes for the blade damage. This fact is exploited for the damage identification and further investigations are made for determination of possible location of the damage from the measured modal spectrum.
机译:通常,在所有叶片都相同并且在几何和结构上都调谐在一起的假设下,研究分组叶片盘系统的涡轮叶片振动。但是在实践中,叶片之间存在差异,有时该差异可能是由于局部损坏或裂缝的出现而引起的。已经表明,即使是很小的失谐也会在强制振动下通过模式局部化导致应力建立。有许多基于分析和基于FEM的研究用于在模糊条件下进行响应预测和应力局部化,但是很少有人尝试确定刀片-磁盘振动响应造成的损坏。目前的工作分为两个部分。在第一部分中,使用集总参数模型分析了调谐叶片包,并提出了涉及特殊Ja-cobi矩阵的特征值问题。模态光谱的特征是包装袋中的刀片数量和束线与刀片刚度之比的函数,并且证明了可以从模态光谱中估计该比率。在第二部分中,考虑到由于刀片损坏和带束线损坏造成的刀片包中的不均匀,并研究了典型的模态特征。数学上显示出,在带束线损坏的情况下,基本的子模态固有频率不会改变,而对于叶片损坏会改变。利用这一事实来进行损伤识别,并进行进一步的研究以从测得的模态光谱中确定损伤的可能位置。

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