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Investigation of the combined effects of intentional mistuning, damping and coupling on the forced response of bladed disks

机译:研究有意雾化,阻尼和耦合对叶片盘强制响应的综合影响

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摘要

Blade-to-blade mistuning is always inevitable in bladed disk assemblies due to imperfections in the manufacturing progress as well as wear during operation. As a result, the forced response of a mistuned bladed disk may be drastically larger than that of the nominal or tuned design. The attendant increase in stress can lead to premature high cycle fatigue (HCF) of the blades. Therefore, it is of great importance to predict and, ultimately, to reduce the blade forced response levels caused by mistuning. In this paper, intentional and random mistuning is introduced into a simplified 12-bladed disk model by varying the stiffness of the blades. The combined effects of intentional mistuning, damping and coupling are examined. The numerical results indicate that there is some threshold value of intentional mistuning and coupling that leads to maximum mistuning effects and certain relations among intentional mistuning strength, integer harmonics, damping and coupling can suppress the response levels of bladed disks with random mistuning, which provides useful guidelines for safe and reliable designs of bladed disk systems.
机译:由于制造过程的不完善以及操作过程中的磨损,在刀片式磁盘组件中总是不可避免地出现刀片间刮擦的现象。结果,雾化的叶片盘的强制响应可能会大大大于标称或调整设计的强制响应。随之而来的应力增加会导致叶片过早的高周疲劳(HCF)。因此,预测并最终降低由模糊引起的叶片受力响应水平非常重要。在本文中,通过改变叶片的刚度,将有意和随机的失谐引入到简化的12叶片盘模型中。研究了有意雾化,阻尼和耦合的综合作用。数值结果表明,存在一定的故意失谐耦合阈值,从而导致最大的失谐效应;故意失谐强度,整数谐波,阻尼和耦合之间的一定关系可以抑制随机失谐叶片盘的响应水平,提供了有益的参考。刀片式磁盘系统安全可靠设计指南。

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